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Gestational Diabetes Augments Group B Streptococcus Infection By Disrupting Maternal Immunity And The Vaginal Microbiota, Vicki Mercado-Evans, Marlyd E Mejia, Jacob J Zulk, Samantha Ottinger, Zainab A Hameed, Camille Serchejian, Madelynn G Marunde, Clare M Robertson, Mallory B Ballard, Simone H Ruano, Natalia Korotkova, Anthony R Flores, Kathleen A Pennington, Kathryn A Patras Feb 2024

Gestational Diabetes Augments Group B Streptococcus Infection By Disrupting Maternal Immunity And The Vaginal Microbiota, Vicki Mercado-Evans, Marlyd E Mejia, Jacob J Zulk, Samantha Ottinger, Zainab A Hameed, Camille Serchejian, Madelynn G Marunde, Clare M Robertson, Mallory B Ballard, Simone H Ruano, Natalia Korotkova, Anthony R Flores, Kathleen A Pennington, Kathryn A Patras

Faculty, Staff and Student Publications

Group B Streptococcus (GBS) is a pervasive perinatal pathogen, yet factors driving GBS dissemination in utero are poorly defined. Gestational diabetes mellitus (GDM), a complication marked by dysregulated immunity and maternal microbial dysbiosis, increases risk for GBS perinatal disease. Using a murine GDM model of GBS colonization and perinatal transmission, we find that GDM mice display greater GBS in utero dissemination and subsequently worse neonatal outcomes. Dual-RNA sequencing reveals differential GBS adaptation to the GDM reproductive tract, including a putative glycosyltransferase (yfhO), and altered host responses. GDM immune disruptions include reduced uterine natural killer cell activation, impaired recruitment to placentae, …


Targeting Alk Averts Ribonuclease 1-Induced Immunosuppression And Enhances Antitumor Immunity In Hepatocellular Carcinoma, Chunxiao Liu, Chenhao Zhou, Weiya Xia, Yifan Zhou, Yufan Qiu, Jialei Weng, Qiang Zhou, Wanyong Chen, Ying-Nai Wang, Heng-Huan Lee, Shao-Chun Wang, Ming Kuang, Dihua Yu, Ning Ren, Mien-Chie Hung Feb 2024

Targeting Alk Averts Ribonuclease 1-Induced Immunosuppression And Enhances Antitumor Immunity In Hepatocellular Carcinoma, Chunxiao Liu, Chenhao Zhou, Weiya Xia, Yifan Zhou, Yufan Qiu, Jialei Weng, Qiang Zhou, Wanyong Chen, Ying-Nai Wang, Heng-Huan Lee, Shao-Chun Wang, Ming Kuang, Dihua Yu, Ning Ren, Mien-Chie Hung

Faculty, Staff and Student Publications

Tumor-secreted factors contribute to the development of a microenvironment that facilitates the escape of cancer cells from immunotherapy. In this study, we conduct a retrospective comparison of the proteins secreted by hepatocellular carcinoma (HCC) cells in responders and non-responders among a cohort of ten patients who received Nivolumab (anti-PD-1 antibody). Our findings indicate that non-responders have a high abundance of secreted RNase1, which is associated with a poor prognosis in various cancer types. Furthermore, mice implanted with HCC cells that overexpress RNase1 exhibit immunosuppressive tumor microenvironments and diminished response to anti-PD-1 therapy. RNase1 induces the polarization of macrophages towards a …


Tumor-Specific Polycistronic Mirna Delivered By Engineered Exosomes For The Treatment Of Glioblastoma, Malcolm F Mcdonald, Anwar Hossain, Eric N Momin, Irtiza Hasan, Sanjay Singh, Satoshi Adachi, Joy Gumin, Daniel Ledbetter, Jing Yang, Lihong Long, Marc Daou, Sricharan Gopakumar, Lynette M Phillips, Brittany Parker Kerrigan, Frederick F Lang Feb 2024

Tumor-Specific Polycistronic Mirna Delivered By Engineered Exosomes For The Treatment Of Glioblastoma, Malcolm F Mcdonald, Anwar Hossain, Eric N Momin, Irtiza Hasan, Sanjay Singh, Satoshi Adachi, Joy Gumin, Daniel Ledbetter, Jing Yang, Lihong Long, Marc Daou, Sricharan Gopakumar, Lynette M Phillips, Brittany Parker Kerrigan, Frederick F Lang

Faculty, Staff and Student Publications

Background: Glioblastoma (GBM) has poor prognosis due to ineffective agents and poor delivery methods. MicroRNAs (miRs) have been explored as novel therapeutics for GBM, but the optimal miRs and the ideal delivery strategy remain unresolved. In this study, we sought to identify the most effective pan-subtype anti-GBM miRs and to develop an improved delivery system for these miRs.

Methods: We conducted an unbiased screen of over 600 miRs against 7 glioma stem cell (GSC) lines representing all GBM subtypes to identify a set of pan-subtype-specific anti-GBM miRs and then used available TCGA GBM patient outcomes and miR expression data to …


Targeting Prostate Tumor Low-Molecular Weight Tyrosine Phosphatase For Oxidation-Sensitizing Therapy, Stephanie M Stanford, Tiffany P Nguyen, Joseph Chang, Zixuan Zhao, G Lavender Hackman, Eugenio Santelli, Colton M Sanders, Madhusudhanarao Katiki, Eleonora Dondossola, Brooke L Brauer, Michael A Diaz, Yuan Zhan, Sterling H Ramsey, Philip A Watson, Banumathi Sankaran, Claudia Paindelli, Vanessa Parietti, Antonios G Mikos, Alessia Lodi, Aditya Bagrodia, Andrew Elliott, Rana R Mckay, Ramachandran Murali, Stefano Tiziani, Arminja N Kettenbach, Nunzio Bottini Feb 2024

Targeting Prostate Tumor Low-Molecular Weight Tyrosine Phosphatase For Oxidation-Sensitizing Therapy, Stephanie M Stanford, Tiffany P Nguyen, Joseph Chang, Zixuan Zhao, G Lavender Hackman, Eugenio Santelli, Colton M Sanders, Madhusudhanarao Katiki, Eleonora Dondossola, Brooke L Brauer, Michael A Diaz, Yuan Zhan, Sterling H Ramsey, Philip A Watson, Banumathi Sankaran, Claudia Paindelli, Vanessa Parietti, Antonios G Mikos, Alessia Lodi, Aditya Bagrodia, Andrew Elliott, Rana R Mckay, Ramachandran Murali, Stefano Tiziani, Arminja N Kettenbach, Nunzio Bottini

Faculty, Staff and Student Publications

Protein tyrosine phosphatases (PTPs) play major roles in cancer and are emerging as therapeutic targets. Recent reports suggest low-molecular weight PTP (LMPTP)-encoded by the ACP1 gene-is overexpressed in prostate tumors. We found ACP1 up-regulated in human prostate tumors and ACP1 expression inversely correlated with overall survival. Using CRISPR-Cas9-generated LMPTP knockout C4-2B and MyC-CaP cells, we identified LMPTP as a critical promoter of prostate cancer (PCa) growth and bone metastasis. Through metabolomics, we found that LMPTP promotes PCa cell glutathione synthesis by dephosphorylating glutathione synthetase on inhibitory Tyr270. PCa cells lacking LMPTP showed reduced glutathione, enhanced activation of eukaryotic initiation factor …


The Ddhd2-Stxbp1 Interaction Mediates Long-Term Memory Via Generation Of Saturated Free Fatty Acids, Isaac O Akefe, Saber H Saber, Benjamin Matthews, Bharat G Venkatesh, Rachel S Gormal, Daniel G Blackmore, Suzy Alexander, Emma Sieriecki, Yann Gambin, Jesus Bertran-Gonzalez, Nicolas Vitale, Yann Humeau, Arnaud Gaudin, Sevannah A Ellis, Alysee A Michaels, Mingshan Xue, Benjamin Cravatt, Merja Joensuu, Tristan P Wallis, Frédéric A Meunier Feb 2024

The Ddhd2-Stxbp1 Interaction Mediates Long-Term Memory Via Generation Of Saturated Free Fatty Acids, Isaac O Akefe, Saber H Saber, Benjamin Matthews, Bharat G Venkatesh, Rachel S Gormal, Daniel G Blackmore, Suzy Alexander, Emma Sieriecki, Yann Gambin, Jesus Bertran-Gonzalez, Nicolas Vitale, Yann Humeau, Arnaud Gaudin, Sevannah A Ellis, Alysee A Michaels, Mingshan Xue, Benjamin Cravatt, Merja Joensuu, Tristan P Wallis, Frédéric A Meunier

Faculty, Staff and Students Publications

The phospholipid and free fatty acid (FFA) composition of neuronal membranes plays a crucial role in learning and memory, but the mechanisms through which neuronal activity affects the brain's lipid landscape remain largely unexplored. The levels of saturated FFAs, particularly of myristic acid (C14:0), strongly increase during neuronal stimulation and memory acquisition, suggesting the involvement of phospholipase A1 (PLA1) activity in synaptic plasticity. Here, we show that genetic ablation of the PLA1 isoform DDHD2 in mice dramatically reduces saturated FFA responses to memory acquisition across the brain. Furthermore, DDHD2 loss also decreases memory performance in reward-based learning and spatial memory …


Shape Anisotropy-Governed High-Performance Nanomagnetosol For In Vivo Magnetic Particle Imaging Of Lungs, Saumya Nigam, Jeotikanta Mohapatra, Ashley V Makela, Hanaan Hayat, Jessi Mercedes Rodriguez, Aixia Sun, Elizabeth Kenyon, Nathan A Redman, Dana Spence, George Jabin, Bin Gu, Mohamed Ashry, Lorenzo F Sempere, Arijit Mitra, Jinxing Li, Jiahui Chen, Guo-Wei Wei, Steven Bolin, Brett Etchebarne, J Ping Liu, Christopher H Contag, Ping Wang Feb 2024

Shape Anisotropy-Governed High-Performance Nanomagnetosol For In Vivo Magnetic Particle Imaging Of Lungs, Saumya Nigam, Jeotikanta Mohapatra, Ashley V Makela, Hanaan Hayat, Jessi Mercedes Rodriguez, Aixia Sun, Elizabeth Kenyon, Nathan A Redman, Dana Spence, George Jabin, Bin Gu, Mohamed Ashry, Lorenzo F Sempere, Arijit Mitra, Jinxing Li, Jiahui Chen, Guo-Wei Wei, Steven Bolin, Brett Etchebarne, J Ping Liu, Christopher H Contag, Ping Wang

Faculty, Staff and Student Publications

Caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), coronavirus disease 2019 (COVID-19) has shown extensive lung manifestations in vulnerable individuals, putting lung imaging and monitoring at the forefront of early detection and treatment. Magnetic particle imaging (MPI) is an imaging modality, which can bring excellent contrast, sensitivity, and signal-to-noise ratios to lung imaging for the development of new theranostic approaches for respiratory diseases. Advances in MPI tracers would offer additional improvements and increase the potential for clinical translation of MPI. Here, a high-performance nanotracer based on shape anisotropy of magnetic nanoparticles is developed and its use in MPI imaging …


Development Of Resistance To Type Ii Jak2 Inhibitors In Mpn Depends On Axl Kinase And Is Targetable, Tamara Codilupi, Jakub Szybinski, Stefanie Arunasalam, Sarah Jungius, Andrew C Dunbar, Simona Stivala, Sime Brkic, Camille Albrecht, Lenka Vokalova, Julie L Yang, Katarzyna Buczak, Nilabh Ghosh, Jakob R Passweg, Alicia Rovo, Anne Angelillo-Scherrer, Dmitry Pankov, Stefan Dirnhofer, Ross L Levine, Richard Koche, Sara C Meyer Feb 2024

Development Of Resistance To Type Ii Jak2 Inhibitors In Mpn Depends On Axl Kinase And Is Targetable, Tamara Codilupi, Jakub Szybinski, Stefanie Arunasalam, Sarah Jungius, Andrew C Dunbar, Simona Stivala, Sime Brkic, Camille Albrecht, Lenka Vokalova, Julie L Yang, Katarzyna Buczak, Nilabh Ghosh, Jakob R Passweg, Alicia Rovo, Anne Angelillo-Scherrer, Dmitry Pankov, Stefan Dirnhofer, Ross L Levine, Richard Koche, Sara C Meyer

Faculty, Staff and Student Publications

PURPOSE: Myeloproliferative neoplasms (MPN) dysregulate JAK2 signaling. Because clinical JAK2 inhibitors have limited disease-modifying effects, type II JAK2 inhibitors such as CHZ868 stabilizing inactive JAK2 and reducing MPN clones, gain interest. We studied whether MPN cells escape from type ll inhibition.

EXPERIMENTAL DESIGN: MPN cells were continuously exposed to CHZ868. We used phosphoproteomic analyses and ATAC/RNA sequencing to characterize acquired resistance to type II JAK2 inhibition, and targeted candidate mediators in MPN cells and mice.

RESULTS: MPN cells showed increased IC50 and reduced apoptosis upon CHZ868 reflecting acquired resistance to JAK2 inhibition. Among >2,500 differential phospho-sites, MAPK pathway activation was …


Txnrd1 Drives The Innate Immune Response In Senescent Cells With Implications For Age-Associated Inflammation, Xue Hao, Bo Zhao, Martina Towers, Liping Liao, Edgar Luzete Monteiro, Xin Xu, Christina Freeman, Hongzhuang Peng, Hsin-Yao Tang, Aaron Havas, Andrew V Kossenkov, Shelley L Berger, Peter D Adams, David W Speicher, David Schultz, Ronen Marmorstein, Kenneth S Zaret, Rugang Zhang Feb 2024

Txnrd1 Drives The Innate Immune Response In Senescent Cells With Implications For Age-Associated Inflammation, Xue Hao, Bo Zhao, Martina Towers, Liping Liao, Edgar Luzete Monteiro, Xin Xu, Christina Freeman, Hongzhuang Peng, Hsin-Yao Tang, Aaron Havas, Andrew V Kossenkov, Shelley L Berger, Peter D Adams, David W Speicher, David Schultz, Ronen Marmorstein, Kenneth S Zaret, Rugang Zhang

Faculty, Staff and Student Publications

Sterile inflammation, also known as 'inflammaging', is a hallmark of tissue aging. Cellular senescence contributes to tissue aging, in part, through the secretion of proinflammatory factors collectively known as the senescence-associated secretory phenotype (SASP). The genetic variability of thioredoxin reductase 1 (TXNRD1) is associated with aging and age-associated phenotypes such as late-life survival, activity of daily living and physical performance in old age. TXNRD1's role in regulating tissue aging has been attributed to its enzymatic role in cellular redox regulation. Here, we show that TXNRD1 drives the SASP and inflammaging through the cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) …


Enhancing Anti-Aml Activity Of Venetoclax By Isoflavone Me-344 Through Suppression Of Oxphos And/Or Purine Biosynthesis In Vitro, Katie H Hurrish, Yongwei Su, Shraddha Patel, Cassandra L Ramage, Jianlei Zhao, Brianna R Temby, Jenna L Carter, Holly Edwards, Steven A Buck, Sandra E Wiley, Maik Hüttemann, Lisa Polin, Juiwanna Kushner, Sijana H Dzinic, Kathryn White, Xun Bao, Jing Li, Jay Yang, Julie Boerner, Zhanjun Hou, Gheath Al-Atrash, Sergej N Konoplev, Jonathan Busquets, Stefano Tiziani, Larry H Matherly, Jeffrey W Taub, Marina Konopleva, Yubin Ge, Natalia Baran Feb 2024

Enhancing Anti-Aml Activity Of Venetoclax By Isoflavone Me-344 Through Suppression Of Oxphos And/Or Purine Biosynthesis In Vitro, Katie H Hurrish, Yongwei Su, Shraddha Patel, Cassandra L Ramage, Jianlei Zhao, Brianna R Temby, Jenna L Carter, Holly Edwards, Steven A Buck, Sandra E Wiley, Maik Hüttemann, Lisa Polin, Juiwanna Kushner, Sijana H Dzinic, Kathryn White, Xun Bao, Jing Li, Jay Yang, Julie Boerner, Zhanjun Hou, Gheath Al-Atrash, Sergej N Konoplev, Jonathan Busquets, Stefano Tiziani, Larry H Matherly, Jeffrey W Taub, Marina Konopleva, Yubin Ge, Natalia Baran

Faculty, Staff and Student Publications

Venetoclax (VEN), in combination with low dose cytarabine (AraC) or a hypomethylating agent, is FDA approved to treat acute myeloid leukemia (AML) in patients who are over the age of 75 or cannot tolerate standard chemotherapy. Despite high response rates to these therapies, most patients succumb to the disease due to relapse and/or drug resistance, providing an unmet clinical need for novel therapies to improve AML patient survival. ME-344 is a potent isoflavone with demonstrated inhibitory activity toward oxidative phosphorylation (OXPHOS) and clinical activity in solid tumors. Given that OXPHOS inhibition enhances VEN antileukemic activity against AML, we hypothesized that …


Age-Associated Disparity In Phagocytic Clearance Affects The Efficacy Of Cancer Nanotherapeutics, Yifan Wang, Weiye Deng, Daeyong Lee, Long Yan, Yifei Lu, Shiyan Dong, Kristin Huntoon, Abin Antony, Xuefeng Li, Rui Ye, Yan Zhao, Feiyan Zhao, Benjamin R Schrank, Jonghoon Ha, Minjeong Kang, Mingming Yang, Ping Gong, Philip L Lorenzi, Lin Tan, Thomas D Gallup, Sarah K Tang, Zhaogang Yang, Jing Li, Nina N Sanford, Hongmei Wang, Betty Y S Kim, Wen Jiang Feb 2024

Age-Associated Disparity In Phagocytic Clearance Affects The Efficacy Of Cancer Nanotherapeutics, Yifan Wang, Weiye Deng, Daeyong Lee, Long Yan, Yifei Lu, Shiyan Dong, Kristin Huntoon, Abin Antony, Xuefeng Li, Rui Ye, Yan Zhao, Feiyan Zhao, Benjamin R Schrank, Jonghoon Ha, Minjeong Kang, Mingming Yang, Ping Gong, Philip L Lorenzi, Lin Tan, Thomas D Gallup, Sarah K Tang, Zhaogang Yang, Jing Li, Nina N Sanford, Hongmei Wang, Betty Y S Kim, Wen Jiang

Faculty, Staff and Student Publications

Nanomedicines have been approved to treat multiple human diseases. However, clinical adoption of nanoformulated agents is often hindered by concerns about hepatic uptake and clearance, a process that is not fully understood. Here we show that the antitumour efficacy of cancer nanomedicine exhibits an age-associated disparity. Tumour delivery and treatment outcomes are superior in old versus young mice, probably due to an age-related decline in the ability of hepatic phagocytes to take up and remove nanoparticles. Transcriptomic- and protein-level analysis at the single-cell and bulk levels reveals an age-associated decrease in the numbers of hepatic macrophages that express the scavenger …


Activation Of Testosterone-Androgen Receptor Mediates Cerebrovascular Protection By Photobiomodulation Treatment In Photothrombosis-Induced Stroke Rats, Yu Feng, Zhihai Huang, Xiaohui Ma, Xuemei Zong, Celeste Yin-Chieh Wu, Reggie Hui-Chao Lee, Hung Wen Lin, Michael R Hamblin, Quanguang Zhang Feb 2024

Activation Of Testosterone-Androgen Receptor Mediates Cerebrovascular Protection By Photobiomodulation Treatment In Photothrombosis-Induced Stroke Rats, Yu Feng, Zhihai Huang, Xiaohui Ma, Xuemei Zong, Celeste Yin-Chieh Wu, Reggie Hui-Chao Lee, Hung Wen Lin, Michael R Hamblin, Quanguang Zhang

Faculty, Staff and Student Publications

RATIONALE: Numerous epidemiological studies have reported a link between low testosterone levels and an increased risk of cerebrovascular disease in men. However, there is ongoing controversy surrounding testosterone replacement therapy due to potential side effects. PBMT has been demonstrated to improve cerebrovascular function and promote testosterone synthesis in peripheral tissues. Despite this, the molecular mechanisms that could connect PBMT with testosterone and vascular function in the brain of photothrombosis (PT)-induced stroke rats remain largely unknown.

METHODS: We measured behavioral performance, cerebral blood flow (CBF), vascular permeability, and the expression of vascular-associated and apoptotic proteins in PT-induced stroke rats treated with …


Sirt1 Safeguards Adipogenic Differentiation By Orchestrating Anti-Oxidative Responses And Suppressing Cellular Senescence, An Yu, Ruofan Yu, Haiying Liu, Chenliang Ge, Weiwei Dang Feb 2024

Sirt1 Safeguards Adipogenic Differentiation By Orchestrating Anti-Oxidative Responses And Suppressing Cellular Senescence, An Yu, Ruofan Yu, Haiying Liu, Chenliang Ge, Weiwei Dang

Faculty, Staff and Students Publications

Adipose tissue is an important endocrine organ that regulates metabolism, immune response and aging in mammals. Healthy adipocytes promote tissue homeostasis and longevity. SIRT1, a conserved NAD+-dependent deacetylase, negatively regulates adipogenic differentiation by deacetylating and inhibiting PPAR-γ. However, knocking out SIRT1 in mesenchymal stem cells (MSCs) in mice not only causes defects in osteogenesis, but also results in the loss of adipose tissues, suggesting that SIRT1 is also important for adipogenic differentiation.

Here, we report that severe impairment of SIRT1 function in MSCs caused significant defects and cellular senescence during adipogenic differentiation. These were observed only when inhibiting …


Safety, Immunogenicity, And Mechanism Of A Rotavirus Mrna-Lnp Vaccine In Mice, Chenxing Lu, Yan Li, Rong Chen, Xiaoqing Hu, Qingmei Leng, Xiaopeng Song, Xiaochen Lin, Jun Ye, Jinlan Wang, Jinmei Li, Lida Yao, Xianqiong Tang, Xiangjun Kuang, Guangming Zhang, Maosheng Sun, Yan Zhou, Hongjun Li Jan 2024

Safety, Immunogenicity, And Mechanism Of A Rotavirus Mrna-Lnp Vaccine In Mice, Chenxing Lu, Yan Li, Rong Chen, Xiaoqing Hu, Qingmei Leng, Xiaopeng Song, Xiaochen Lin, Jun Ye, Jinlan Wang, Jinmei Li, Lida Yao, Xianqiong Tang, Xiangjun Kuang, Guangming Zhang, Maosheng Sun, Yan Zhou, Hongjun Li

Faculty, Staff and Student Publications

Rotaviruses (RVs) are a major cause of diarrhea in young children worldwide. The currently available and licensed vaccines contain live attenuated RVs. Optimization of live attenuated RV vaccines or developing non-replicating RV (e.g., mRNA) vaccines is crucial for reducing the morbidity and mortality from RV infections. Herein, a nucleoside-modified mRNA vaccine encapsulated in lipid nanoparticles (LNP) and encoding the VP7 protein from the G1 type of RV was developed. The 5' untranslated region of an isolated human RV was utilized for the mRNA vaccine. After undergoing quality inspection, the VP7-mRNA vaccine was injected by subcutaneous or intramuscular routes into mice. …


Myd88 In Myofibroblasts Enhances Nonalcoholic Fatty Liver Disease-Related Hepatocarcinogenesis Via Promoting Macrophage M2 Polarization, Yu Liu, Haiqiang Chen, Xuanxuan Yan, Jie Zhang, Zhenzhong Deng, Maosheng Huang, Jianchun Gu, Jinhua Zhang Jan 2024

Myd88 In Myofibroblasts Enhances Nonalcoholic Fatty Liver Disease-Related Hepatocarcinogenesis Via Promoting Macrophage M2 Polarization, Yu Liu, Haiqiang Chen, Xuanxuan Yan, Jie Zhang, Zhenzhong Deng, Maosheng Huang, Jianchun Gu, Jinhua Zhang

Faculty, Staff and Student Publications

Background: Nonalcoholic fatty liver disease (NAFLD) is a major cause of chronic liver diseases and has emerged as the leading factor in the pathogenesis of hepatocellular carcinoma (HCC). MyD88 contributes to the development of HCC. However, the underlying mechanism by which MyD88 in myofibroblasts regulates NAFLD-associated liver cancer development remains unknown.

Results: Myofibroblast MyD88-deficient (SMAMyD88-/-) mice were protected from diet-induced obesity and developed fewer and smaller liver tumors. MyD88 deficiency in myofibroblasts attenuated macrophage M2 polarization and fat accumulation in HCC tissues. Mechanistically, MyD88 signaling in myofibroblasts enhanced CCL9 secretion, thereby promoting macrophage M2 polarization. This process may depend on …


Single-Cell Multiomics Decodes Regulatory Programs For Mouse Secondary Palate Development, Fangfang Yan, Akiko Suzuki, Chihiro Iwaya, Guangsheng Pei, Xian Chen, Hiroki Yoshioka, Meifang Yu, Lukas M Simon, Junichi Iwata, Zhongming Zhao Jan 2024

Single-Cell Multiomics Decodes Regulatory Programs For Mouse Secondary Palate Development, Fangfang Yan, Akiko Suzuki, Chihiro Iwaya, Guangsheng Pei, Xian Chen, Hiroki Yoshioka, Meifang Yu, Lukas M Simon, Junichi Iwata, Zhongming Zhao

Faculty, Staff and Student Publications

Perturbations in gene regulation during palatogenesis can lead to cleft palate, which is among the most common congenital birth defects. Here, we perform single-cell multiome sequencing and profile chromatin accessibility and gene expression simultaneously within the same cells (n = 36,154) isolated from mouse secondary palate across embryonic days (E) 12.5, E13.5, E14.0, and E14.5. We construct five trajectories representing continuous differentiation of cranial neural crest-derived multipotent cells into distinct lineages. By linking open chromatin signals to gene expression changes, we characterize the underlying lineage-determining transcription factors. In silico perturbation analysis identifies transcription factors SHOX2 and MEOX2 as important regulators …


Hedgehog Activation Promotes Osteogenic Fates Of Growth Plate Resting Zone Chondrocytes Through Transient Clonal Competency, Shion Orikasa, Yuki Matsushita, Hiroaki Manabe, Michael Fogge, Zachary Lee, Koji Mizuhashi, Naoko Sakagami, Wanida Ono, Noriaki Ono Jan 2024

Hedgehog Activation Promotes Osteogenic Fates Of Growth Plate Resting Zone Chondrocytes Through Transient Clonal Competency, Shion Orikasa, Yuki Matsushita, Hiroaki Manabe, Michael Fogge, Zachary Lee, Koji Mizuhashi, Naoko Sakagami, Wanida Ono, Noriaki Ono

Faculty, Staff and Student Publications

The resting zone of the postnatal growth plate is organized by slow-cycling chondrocytes expressing parathyroid hormone-related protein (PTHrP), which include a subgroup of skeletal stem cells that contribute to the formation of columnar chondrocytes. The PTHrP-Indian hedgehog feedback regulation is essential for sustaining growth plate activities; however, molecular mechanisms regulating cell fates of PTHrP+ resting chondrocytes and their eventual transformation into osteoblasts remain largely undefined. Here, in a mouse model, we specifically activated Hedgehog signaling in PTHrP+ resting chondrocytes and traced the fate of their descendants using a tamoxifen-inducible Pthrp-creER line with patched-1-floxed and tdTomato reporter alleles. Hedgehog-activated PTHrP+ chondrocytes …


Trex2 Deficiency Suppresses Spontaneous And Genotoxin-Associated Mutagenesis, Teresa Marple, Mi Young Son, Xiaodong Cheng, Jun Ho Ko, Patrick Sung, Paul Hasty Jan 2024

Trex2 Deficiency Suppresses Spontaneous And Genotoxin-Associated Mutagenesis, Teresa Marple, Mi Young Son, Xiaodong Cheng, Jun Ho Ko, Patrick Sung, Paul Hasty

Faculty, Staff and Student Publications

TREX2, a 3'-5' exonuclease, is a part of the DNA damage tolerance (DDT) pathway that stabilizes replication forks (RFs) by ubiquitinating PCNA along with the ubiquitin E3 ligase RAD18 and other DDT factors. Mismatch repair (MMR) corrects DNA polymerase errors, including base mismatches and slippage. Here we demonstrate that TREX2 deletion reduces mutations in cells upon exposure to genotoxins, including those that cause base lesions and DNA polymerase slippage. Importantly, we show that TREX2 generates most of the spontaneous mutations in MMR-mutant cells derived from mice and people. TREX2-induced mutagenesis is dependent on the nuclease and DNA-binding attributes of TREX2. …


Non-Canonical Hedgehog Signaling Mediates Profibrotic Hematopoiesis-Stroma Crosstalk In Myeloproliferative Neoplasms, Jessica E Pritchard, Juliette E Pearce, Inge A M Snoeren, Stijn N R Fuchs, Katrin Götz, Fabian Peisker, Silke Wagner, Adam Benabid, Niklas Lutterbach, Vanessa Klöker, James S Nagai, Monica T Hannani, Anna K Galyga, Ellen Sistemich, Bella Banjanin, Niclas Flosdorf, Eric Bindels, Kathrin Olschok, Katharina Biaesch, Nicolas Chatain, Neha Bhagwat, Andrew Dunbar, Rita Sarkis, Olaia Naveiras, Marie-Luise Berres, Steffen Koschmieder, Ross L Levine, Ivan G Costa, Hélène F E Gleitz, Rafael Kramann, Rebekka K Schneider Jan 2024

Non-Canonical Hedgehog Signaling Mediates Profibrotic Hematopoiesis-Stroma Crosstalk In Myeloproliferative Neoplasms, Jessica E Pritchard, Juliette E Pearce, Inge A M Snoeren, Stijn N R Fuchs, Katrin Götz, Fabian Peisker, Silke Wagner, Adam Benabid, Niklas Lutterbach, Vanessa Klöker, James S Nagai, Monica T Hannani, Anna K Galyga, Ellen Sistemich, Bella Banjanin, Niclas Flosdorf, Eric Bindels, Kathrin Olschok, Katharina Biaesch, Nicolas Chatain, Neha Bhagwat, Andrew Dunbar, Rita Sarkis, Olaia Naveiras, Marie-Luise Berres, Steffen Koschmieder, Ross L Levine, Ivan G Costa, Hélène F E Gleitz, Rafael Kramann, Rebekka K Schneider

Faculty, Staff and Student Publications

The role of hematopoietic Hedgehog signaling in myeloproliferative neoplasms (MPNs) remains incompletely understood despite data suggesting that Hedgehog (Hh) pathway inhibitors have therapeutic activity in patients. We aim to systematically interrogate the role of canonical vs. non-canonical Hh signaling in MPNs. We show that Gli1 protein levels in patient peripheral blood mononuclear cells (PBMCs) mark fibrotic progression and that, in murine MPN models, absence of hematopoietic Gli1, but not Gli2 or Smo, significantly reduces MPN phenotype and fibrosis, indicating that GLI1 in the MPN clone can be activated in a non-canonical fashion. Additionally, we establish that hematopoietic Gli1 has a …


Intratumoral Biosynthesis Of Gold Nanoclusters By Pancreatic Cancer To Overcome Delivery Barriers To Radiosensitization, Aaron S Schwartz-Duval, Yuri Mackeyev, Iqbal Mahmud, Philip L Lorenzi, Mihai Gagea, Sunil Krishnan, Konstantin V Sokolov Jan 2024

Intratumoral Biosynthesis Of Gold Nanoclusters By Pancreatic Cancer To Overcome Delivery Barriers To Radiosensitization, Aaron S Schwartz-Duval, Yuri Mackeyev, Iqbal Mahmud, Philip L Lorenzi, Mihai Gagea, Sunil Krishnan, Konstantin V Sokolov

Faculty, Staff and Student Publications

Nanoparticle delivery to solid tumors is a prime challenge in nanomedicine. Here, we approach this challenge through the lens of biogeochemistry, the field that studies the flow of chemical elements within ecosystems as manipulated by living cellular organisms and their environments. We leverage biogeochemistry concepts related to gold cycling against pancreatic cancer, considering mammalian organisms as drivers for gold nanoparticle biosynthesis. Sequestration of gold nanoparticles within tumors has been demonstrated as an effective strategy to enhance radiotherapy; however, the desmoplasia of pancreatic cancer impedes nanoparticle delivery. Our strategy overcomes this barrier by applying an atomic-scale agent, ionic gold, for intratumoral …


Cdk4/6 Inhibition Sensitizes Intracranial Tumors To Pd-1 Blockade In Preclinical Models Of Brain Metastasis, Naema Nayyar, Magali A De Sauvage, Jane Chuprin, Emily M Sullivan, Mohini Singh, Consuelo Torrini, Britney S Zhang, Sushobhana Bandyopadhyay, Keith A Daniels, Christopher Alvarez-Breckenridge, Ashish Dahal, Michael A Brehm, Priscilla K Brastianos Jan 2024

Cdk4/6 Inhibition Sensitizes Intracranial Tumors To Pd-1 Blockade In Preclinical Models Of Brain Metastasis, Naema Nayyar, Magali A De Sauvage, Jane Chuprin, Emily M Sullivan, Mohini Singh, Consuelo Torrini, Britney S Zhang, Sushobhana Bandyopadhyay, Keith A Daniels, Christopher Alvarez-Breckenridge, Ashish Dahal, Michael A Brehm, Priscilla K Brastianos

Faculty, Staff and Student Publications

PURPOSE: Brain metastases are associated with high morbidity and are often resistant to immune checkpoint inhibitors. We evaluated whether CDK4/6 inhibitor (CDKi) abemaciclib can sensitize intracranial tumors to programmed cell death protein 1 (PD-1) inhibition in mouse models of melanoma and breast cancer brain metastasis.

EXPERIMENTAL DESIGN: Treatment response was evaluated in vivo using immunocompetent mouse models of brain metastasis bearing concurrent intracranial and extracranial tumors. Treatment effect on intracranial and extracranial tumor-immune microenvironments (TIME) was evaluated using immunofluorescence, multiplex immunoassays, high-parameter flow cytometry, and T-cell receptor profiling. Mice with humanized immune systems were evaluated using flow cytometry to study …


The Respiratory Enzyme Complex Rnf Is Vital For Metabolic Adaptation And Virulence In Fusobacterium Nucleatum, Timmie A Britton, Chenggang Wu, Yi-Wei Chen, Dana Franklin, Yimin Chen, Martha I Camacho, Truc T Luong, Asis Das, Hung Ton-That Jan 2024

The Respiratory Enzyme Complex Rnf Is Vital For Metabolic Adaptation And Virulence In Fusobacterium Nucleatum, Timmie A Britton, Chenggang Wu, Yi-Wei Chen, Dana Franklin, Yimin Chen, Martha I Camacho, Truc T Luong, Asis Das, Hung Ton-That

Faculty, Staff and Student Publications

The Gram-negative oral pathobiont Fusobacterium nucleatum can traverse to extra-oral sites such as placenta and colon, promoting adverse pregnancy outcomes and colorectal cancer, respectively. How this anaerobe sustains many metabolically changing environments enabling its virulence potential remains unclear. Informed by our genome-wide transposon mutagenesis, we report here that the highly conserved Rhodobacter nitrogen-fixation (Rnf) complex, encoded by the rnfCDGEAB gene cluster, is key to fusobacterial metabolic adaptation and virulence. Genetic disruption of the Rnf complex via non-polar, in-frame deletion of rnfC (ΔrnfC) abrogates polymicrobial interaction (or coaggregation) associated with adhesin RadD and biofilm formation. The defect in coaggregation …


In-Patient Evolution Of A High-Persister Escherichia Coli Strain With Reduced In Vivo Antibiotic Susceptibility, Joshua B Parsons, Ashelyn E Sidders, Amanda Z Velez, Blake M Hanson, Michelle Angeles-Solano, Felicia Ruffin, Sarah E Rowe, Cesar A Arias, Vance G Fowler, Joshua T Thaden, Brian P Conlon Jan 2024

In-Patient Evolution Of A High-Persister Escherichia Coli Strain With Reduced In Vivo Antibiotic Susceptibility, Joshua B Parsons, Ashelyn E Sidders, Amanda Z Velez, Blake M Hanson, Michelle Angeles-Solano, Felicia Ruffin, Sarah E Rowe, Cesar A Arias, Vance G Fowler, Joshua T Thaden, Brian P Conlon

Faculty, Staff and Student Publications

Gram-negative bacterial bloodstream infections (GNB-BSI) are common and frequently lethal. Despite appropriate antibiotic treatment, relapse of GNB-BSI with the same bacterial strain is common and associated with poor clinical outcomes and high healthcare costs. The role of persister cells, which are sub-populations of bacteria that survive for prolonged periods in the presence of bactericidal antibiotics, in relapse of GNB-BSI is unclear. Using a cohort of patients with relapsed GNB-BSI, we aimed to determine how the pathogen evolves within the patient between the initial and subsequent episodes of GNB-BSI and how these changes impact persistence. Using


Novel Pan-Err Agonists Ameliorate Heart Failure Through Enhancing Cardiac Fatty Acid Metabolism And Mitochondrial Function, Weiyi Xu, Cyrielle Billon, Hui Li, Andrea Wilderman, Lei Qi, Andrea Graves, Jernie Rae Dela Cruz Rideb, Yuanbiao Zhao, Matthew Hayes, Keyang Yu, Mckenna Losby, Carissa S Hampton, Christiana M Adeyemi, Seok Jae Hong, Eleni Nasiotis, Chen Fu, Tae Gyu Oh, Weiwei Fan, Michael Downes, Ryan D Welch, Ronald M Evans, Aleksandar Milosavljevic, John K Walker, Brian C Jensen, Liming Pei, Thomas Burris, Lilei Zhang Jan 2024

Novel Pan-Err Agonists Ameliorate Heart Failure Through Enhancing Cardiac Fatty Acid Metabolism And Mitochondrial Function, Weiyi Xu, Cyrielle Billon, Hui Li, Andrea Wilderman, Lei Qi, Andrea Graves, Jernie Rae Dela Cruz Rideb, Yuanbiao Zhao, Matthew Hayes, Keyang Yu, Mckenna Losby, Carissa S Hampton, Christiana M Adeyemi, Seok Jae Hong, Eleni Nasiotis, Chen Fu, Tae Gyu Oh, Weiwei Fan, Michael Downes, Ryan D Welch, Ronald M Evans, Aleksandar Milosavljevic, John K Walker, Brian C Jensen, Liming Pei, Thomas Burris, Lilei Zhang

Faculty, Staff and Students Publications

BACKGROUND: Cardiac metabolic dysfunction is a hallmark of heart failure (HF). Estrogen-related receptors ERRα and ERRγ are essential regulators of cardiac metabolism. Therefore, activation of ERR could be a potential therapeutic intervention for HF. However, in vivo studies demonstrating the potential usefulness of ERR agonist for HF treatment are lacking, because compounds with pharmacokinetics appropriate for in vivo use have not been available.

METHODS: Using a structure-based design approach, we designed and synthesized 2 structurally distinct pan-ERR agonists, SLU-PP-332 and SLU-PP-915. We investigated the effect of ERR agonist on cardiac function in a pressure overload-induced HF model in vivo. We …


Gut Epithelial Interleukin-17 Receptor A Signaling Can Modulate Distant Tumors Growth Through Microbial Regulation, Vidhi Chandra, Le Li, Olivereen Le Roux, Yu Zhang, Rian M Howell, Dhwani N Rupani, Seyda Baydogan, Haiyan D Miller, Erick Riquelme, Joseph Petrosino, Michael P Kim, Krishna P L Bhat, James R White, Jay K Kolls, Yuliya Pylayeva-Gupta, Florencia Mcallister Jan 2024

Gut Epithelial Interleukin-17 Receptor A Signaling Can Modulate Distant Tumors Growth Through Microbial Regulation, Vidhi Chandra, Le Li, Olivereen Le Roux, Yu Zhang, Rian M Howell, Dhwani N Rupani, Seyda Baydogan, Haiyan D Miller, Erick Riquelme, Joseph Petrosino, Michael P Kim, Krishna P L Bhat, James R White, Jay K Kolls, Yuliya Pylayeva-Gupta, Florencia Mcallister

Faculty, Staff and Student Publications

Microbes influence cancer initiation, progression and therapy responsiveness. IL-17 signaling contributes to gut barrier immunity by regulating microbes but also drives tumor growth. A knowledge gap remains regarding the influence of enteric IL-17-IL-17RA signaling and their microbial regulation on the behavior of distant tumors. We demonstrate that gut dysbiosis induced by systemic or gut epithelial deletion of IL-17RA induces growth of pancreatic and brain tumors due to excessive development of Th17, primary source of IL-17 in human and mouse pancreatic ductal adenocarcinoma, as well as B cells that circulate to distant tumors. Microbial dependent IL-17 signaling increases DUOX2 signaling in …


Stemdriver: A Knowledgebase Of Gene Functions For Hematopoietic Stem Cell Fate Determination, Yangyang Luo, Jingjing Guo, Jianguo Wen, Weiling Zhao, Kexin Huang, Yang Liu, Grant Wang, Ruihan Luo, Ting Niu, Yuzhou Feng, Haixia Xu, Pora Kim, Xiaobo Zhou Jan 2024

Stemdriver: A Knowledgebase Of Gene Functions For Hematopoietic Stem Cell Fate Determination, Yangyang Luo, Jingjing Guo, Jianguo Wen, Weiling Zhao, Kexin Huang, Yang Liu, Grant Wang, Ruihan Luo, Ting Niu, Yuzhou Feng, Haixia Xu, Pora Kim, Xiaobo Zhou

Faculty, Staff and Student Publications

StemDriver is a comprehensive knowledgebase dedicated to the functional annotation of genes participating in the determination of hematopoietic stem cell fate, available at http://biomedbdc.wchscu.cn/StemDriver/. By utilizing single-cell RNA sequencing data, StemDriver has successfully assembled a comprehensive lineage map of hematopoiesis, capturing the entire continuum from the initial formation of hematopoietic stem cells to the fully developed mature cells. Extensive exploration and characterization were conducted on gene expression features corresponding to each lineage commitment. At the current version, StemDriver integrates data from 42 studies, encompassing a diverse range of 14 tissue types spanning from the embryonic phase to adulthood. In order …


Sirtuin 2 Inhibition Modulates Chromatin Landscapes Genome-Wide To Induce Senescence In Atrx-Deficient Malignant Glioma, Prit Benny Malgulwar, Carla Danussi, Sharvari Dharmaiah, William Johnson, Anand Singh, Kunal Rai, Arvind Rao, Jason T Huse Jan 2024

Sirtuin 2 Inhibition Modulates Chromatin Landscapes Genome-Wide To Induce Senescence In Atrx-Deficient Malignant Glioma, Prit Benny Malgulwar, Carla Danussi, Sharvari Dharmaiah, William Johnson, Anand Singh, Kunal Rai, Arvind Rao, Jason T Huse

Faculty, Staff and Student Publications

BACKGROUND: Functional inactivation of ATRX characterizes large subgroups of malignant gliomas in adults and children. ATRX deficiency in glioma induces widespread chromatin remodeling, driving transcriptional shifts and oncogenic phenotypes. Effective strategies to therapeutically target these broad epigenomic sequelae remain undeveloped.

METHODS: We utilized integrated multiomics and the Broad Institute Connectivity Map (CMAP) to identify drug candidates that could potentially revert ATRX-deficient transcriptional changes. We then employed disease-relevant experimental models to evaluate functional phenotypes, coupling these studies with epigenomic profiling to elucidate molecular mechanism(s).

RESULTS: CMAP analysis and transcriptional/epigenomic profiling implicated the Class III HDAC Sirtuin2 (SIRT2) as a central mediator …


Dimerization Of The 4ig Isoform Of B7-H3 In Tumor Cells Mediates Enhanced Proliferation And Tumorigenic Signaling, Margie N Sutton, Sarah E Glazer, Riccardo Muzzioli, Ping Yang, Seth T Gammon, David Piwnica-Worms Jan 2024

Dimerization Of The 4ig Isoform Of B7-H3 In Tumor Cells Mediates Enhanced Proliferation And Tumorigenic Signaling, Margie N Sutton, Sarah E Glazer, Riccardo Muzzioli, Ping Yang, Seth T Gammon, David Piwnica-Worms

Faculty, Staff and Student Publications

B7-H3 (CD276) has two isoforms (2Ig and 4Ig), no confirmed cognate receptor, and physiological functions that remain elusive. While differentially expressed on many solid tumors correlating with poor survival, mechanisms of how B7-H3 signals in cis (tumor cell) versus in trans (immune cell co-regulator) to elicit pro-tumorigenic phenotypes remain poorly defined. Herein, we characterized a tumorigenic and signaling role for tumor cell-expressed 4Ig-B7-H3, the dominant human isoform, in gynecological cancers that could be abrogated upon CRISPR/Cas9 knockout of B7-H3; tumorigenesis was rescued upon re-expression of 4Ig-B7-H3. Size exclusion chromatography revealed dimerization states for the extracellular domains of both human 4Ig- …


Targeting Dna Repair And Survival Signaling In Diffuse Intrinsic Pontine Gliomas To Prevent Tumor Recurrence, Monika Sharma, Ivana Barravecchia, Robert Teis, Jeanette Cruz, Rachel Mumby, Elizabeth K Ziemke, Carlos E Espinoza, Varunkumar Krishnamoorthy, Brian Magnuson, Mats Ljungman, Carl Koschmann, Joya Chandra, Christopher E Whitehead, Judith S Sebolt-Leopold, Stefanie Galban Jan 2024

Targeting Dna Repair And Survival Signaling In Diffuse Intrinsic Pontine Gliomas To Prevent Tumor Recurrence, Monika Sharma, Ivana Barravecchia, Robert Teis, Jeanette Cruz, Rachel Mumby, Elizabeth K Ziemke, Carlos E Espinoza, Varunkumar Krishnamoorthy, Brian Magnuson, Mats Ljungman, Carl Koschmann, Joya Chandra, Christopher E Whitehead, Judith S Sebolt-Leopold, Stefanie Galban

Faculty, Staff and Student Publications

Therapeutic resistance remains a major obstacle to successful clinical management of diffuse intrinsic pontine glioma (DIPG), a high-grade pediatric tumor of the brain stem. In nearly all patients, available therapies fail to prevent progression. Innovative combinatorial therapies that penetrate the blood-brain barrier and lead to long-term control of tumor growth are desperately needed. We identified mechanisms of resistance to radiotherapy, the standard of care for DIPG. On the basis of these findings, we rationally designed a brain-penetrant small molecule, MTX-241F, that is a highly selective inhibitor of EGFR and PI3 kinase family members, including the DNA repair protein DNA-PK. Preliminary …


Mir126-Targeted-Nanoparticles Combined With Pi3k/Akt Inhibitor As A New Strategy To Overcome Melanoma Resistance, Maria Beatrice Arasi, Gabriele De Luca, Laura Chronopoulou, Francesca Pedini, Eleonora Petrucci, Michela Flego, Annarita Stringaro, Marisa Colone, Luca Pasquini, Massimo Spada, Valentina Lulli, Maria Chiara Perrotta, George Adrian Calin, Cleofe Palocci, Mauro Biffoni, Federica Felicetti, Nadia Felli Jan 2024

Mir126-Targeted-Nanoparticles Combined With Pi3k/Akt Inhibitor As A New Strategy To Overcome Melanoma Resistance, Maria Beatrice Arasi, Gabriele De Luca, Laura Chronopoulou, Francesca Pedini, Eleonora Petrucci, Michela Flego, Annarita Stringaro, Marisa Colone, Luca Pasquini, Massimo Spada, Valentina Lulli, Maria Chiara Perrotta, George Adrian Calin, Cleofe Palocci, Mauro Biffoni, Federica Felicetti, Nadia Felli

Faculty, Staff and Student Publications

Metastatic melanoma poses significant challenges as a highly lethal disease. Despite the success of molecular targeting using BRAFV600E inhibitors (BRAFis) and immunotherapy, the emergence of early recurrence remains an issue and there is the need for novel therapeutic approaches. This study aimed at creating a targeted delivery system for the oncosuppressor microRNA 126 (miR126) and testing its effectiveness in combination with a phosphatidylinositol 3-kinase (PI3K)/ protein kinase B (AKT) inhibitor for treating metastatic melanoma resistant to BRAFis. To achieve this, we synthesized chitosan nanoparticles containing a chemically modified miR126 sequence. These nanoparticles were further functionalized with an antibody specific to …


Crispr-Cas9 Base Editing Of Pathogenic Camkiiδ Improves Cardiac Function In A Humanized Mouse Model, Simon Lebek, Xurde M Caravia, Leon G Straub, Damir Alzhanov, Wei Tan, Hui Li, John R Mcanally, Kenian Chen, Lin Xu, Philipp E Scherer, Ning Liu, Rhonda Bassel-Duby, Eric N Olson Jan 2024

Crispr-Cas9 Base Editing Of Pathogenic Camkiiδ Improves Cardiac Function In A Humanized Mouse Model, Simon Lebek, Xurde M Caravia, Leon G Straub, Damir Alzhanov, Wei Tan, Hui Li, John R Mcanally, Kenian Chen, Lin Xu, Philipp E Scherer, Ning Liu, Rhonda Bassel-Duby, Eric N Olson

Faculty, Staff and Student Publications

Cardiovascular diseases are the most common cause of worldwide morbidity and mortality, highlighting the necessity for advanced therapeutic strategies. Ca2+/calmodulin-dependent protein kinase IIδ (CaMKIIδ) is a prominent inducer of various cardiac disorders, which is mediated by 2 oxidation-sensitive methionine residues within the regulatory domain. We have previously shown that ablation of CaMKIIδ oxidation by CRISPR-Cas9 base editing enables the heart to recover function from otherwise severe damage following ischemia/reperfusion (IR) injury. Here, we extended this therapeutic concept toward potential clinical translation. We generated a humanized CAMK2D knockin mouse model in which the genomic sequence encoding the entire regulatory domain was …