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Detecting The Effect Of Genetic Diversity On Brain Composition In An Alzheimer's Disease Mouse Model., Brianna Gurdon, Sharon C Yates, Gergely Csucs, Nicolaas E Groeneboom, Niran Hadad, Maria Telpoukhovskaia, Andrew R Ouellette, Tionna Ouellette, Kristen M S O'Connell, Surjeet Singh, Thomas J Murdy, Erin Merchant, Ingvild Bjerke, Heidi Kleven, Ulrike Schlegel, Trygve B Leergaard, Maja A Puchades, Jan G Bjaalie, Catherine C Kaczorowski May 2024

Detecting The Effect Of Genetic Diversity On Brain Composition In An Alzheimer's Disease Mouse Model., Brianna Gurdon, Sharon C Yates, Gergely Csucs, Nicolaas E Groeneboom, Niran Hadad, Maria Telpoukhovskaia, Andrew R Ouellette, Tionna Ouellette, Kristen M S O'Connell, Surjeet Singh, Thomas J Murdy, Erin Merchant, Ingvild Bjerke, Heidi Kleven, Ulrike Schlegel, Trygve B Leergaard, Maja A Puchades, Jan G Bjaalie, Catherine C Kaczorowski

Faculty Research 2024

Alzheimer's disease (AD) is broadly characterized by neurodegeneration, pathology accumulation, and cognitive decline. There is considerable variation in the progression of clinical symptoms and pathology in humans, highlighting the importance of genetic diversity in the study of AD. To address this, we analyze cell composition and amyloid-beta deposition of 6- and 14-month-old AD-BXD mouse brains. We utilize the analytical QUINT workflow- a suite of software designed to support atlas-based quantification, which we expand to deliver a highly effective method for registering and quantifying cell and pathology changes in diverse disease models. In applying the expanded QUINT workflow, we quantify near-global …


Systemic Inflammatory Markers Of Persistent Cerebral Edema After Aneurysmal Subarachnoid Hemorrhage, Nadia Khan, Magdalena Kurnik-Łucka, Gniewomir Latacz, Krzysztof Gil May 2024

Systemic Inflammatory Markers Of Persistent Cerebral Edema After Aneurysmal Subarachnoid Hemorrhage, Nadia Khan, Magdalena Kurnik-Łucka, Gniewomir Latacz, Krzysztof Gil

Faculty, Staff and Student Publications

In the first part of this article, the role of intestinal epithelial tight junctions (TJs), together with gastrointestinal dopaminergic and renin-angiotensin systems, are narratively reviewed to provide sufficient background. In the second part, the current experimental data on the interplay between gastrointestinal (GI) dopaminergic and renin-angiotensin systems in the regulation of intestinal epithelial permeability are reviewed in a systematic manner using the PRISMA methodology. Experimental data confirmed the copresence of DOPA decarboxylase (DDC) and angiotensin converting enzyme 2 (ACE2) in human and rodent enterocytes. The intestinal barrier structure and integrity can be altered by angiotensin (1-7) and dopamine (DA). Both …


Il-2-Free Tumor-Infiltrating Lymphocyte Therapy With Pd-1 Blockade Demonstrates Potent Efficacy In Advanced Gynecologic Cancer, Jing Guo, Chunyan Wang, Ning Luo, Yuliang Wu, Wei Huang, Jihui Zhu, Weihui Shi, Jinye Ding, Yao Ge, Chunhong Liu, Zhen Lu, Robert C Bast, Guihai Ai, Weihong Yang, Rui Wang, Caixia Li, Rong Chen, Shupeng Liu, Huajun Jin, Binghui Zhao, Zhongping Cheng May 2024

Il-2-Free Tumor-Infiltrating Lymphocyte Therapy With Pd-1 Blockade Demonstrates Potent Efficacy In Advanced Gynecologic Cancer, Jing Guo, Chunyan Wang, Ning Luo, Yuliang Wu, Wei Huang, Jihui Zhu, Weihui Shi, Jinye Ding, Yao Ge, Chunhong Liu, Zhen Lu, Robert C Bast, Guihai Ai, Weihong Yang, Rui Wang, Caixia Li, Rong Chen, Shupeng Liu, Huajun Jin, Binghui Zhao, Zhongping Cheng

Faculty, Staff and Student Publications

BACKGROUND: Tumor-infiltrating lymphocyte (TIL) therapy has been restricted by intensive lymphodepletion and high-dose intravenous interleukin-2 (IL-2) administration. To address these limitations, we conducted preclinical and clinical studies to evaluate the safety, antitumor activity, and pharmacokinetics of an innovative modified regimen in patients with advanced gynecologic cancer.

METHODS: Patient-derived xenografts (PDX) were established from a local recurrent cervical cancer patient. TILs were expanded ex vivo from minced tumors without feeder cells in the modified TIL therapy regimen. Patients underwent low-dose cyclophosphamide lymphodepletion followed by TIL infusion without intravenous IL-2. The primary endpoint was safety; the secondary endpoints included objective response rate, …


Animals In Prison: Is There Value In Inmate-Animal Rehabilitation Programs?, I. H. C. May 2024

Animals In Prison: Is There Value In Inmate-Animal Rehabilitation Programs?, I. H. C.

Tredway Library Prize for First-Year Research

This paper demonstrates the benefits of animal rehabilitation programs in alleviating the mental harm of incarceration and improving outcomes for individuals upon their release. I.H.C. details the overwhelming mental health crises and conditions that inmates face in prison, arguing to redefine rehabilitation to center both practical preparations and on healing the underlying traumas and mental health concerns before release. His numerous examples drawn from prisons around the world thoroughly uphold the evidence that animal rehabilitation programs improve inmate wellbeing, decrease violent incidents in prison, enhance vocational and employment opportunities post-incarceration, and overall change inmates’ behavior – all benefits that ultimately …


Developing A Membrane-Proximal Cd33-Targeting Car T Cell, Ruby Freeman, Sanam Shahid, Abdul G Khan, Serena C Mathew, Sydney Souness, Erin R Burns, Jasmine S Um, Kento Tanaka, Winson Cai, Sarah Yoo, Andrew Dunbar, Young Park, Devin Mcavoy, Kinga K Hosszu, Ross L Levine, Jaap Jan Boelens, Ivo C Lorenz, Renier J Brentjens, Anthony F Daniyan May 2024

Developing A Membrane-Proximal Cd33-Targeting Car T Cell, Ruby Freeman, Sanam Shahid, Abdul G Khan, Serena C Mathew, Sydney Souness, Erin R Burns, Jasmine S Um, Kento Tanaka, Winson Cai, Sarah Yoo, Andrew Dunbar, Young Park, Devin Mcavoy, Kinga K Hosszu, Ross L Levine, Jaap Jan Boelens, Ivo C Lorenz, Renier J Brentjens, Anthony F Daniyan

Faculty, Staff and Student Publications

BACKGROUND: CD33 is a tractable target in acute myeloid leukemia (AML) for chimeric antigen receptor (CAR) T cell therapy, but clinical success is lacking.

METHODS: We developed 3P14HLh28Z, a novel CD33-directed CD28/CD3Z-based CAR T cell derived from a high-affinity binder obtained through membrane-proximal fragment immunization in humanized mice.

RESULTS: We found that immunization exclusively with the membrane-proximal domain of CD33 is necessary for identification of membrane-proximal binders in humanized mice. Compared with clinically validated lintuzumab-based CAR T cells targeting distal CD33 epitopes, 3P14HLh28Z showed enhanced in vitro functionality as well as superior tumor control and increased overall survival in both …


3-Hydroxyanthranilic Acid Delays Paralysis In Caenorhabditis Elegans Models Of Amyloid-Beta And Polyglutamine Proteotoxicity, Bradford T Hull, Kayla M Miller, Caroline Corban, Grant Backer, Susan Sheehan, Ron Korstanje, George L. Sutphin May 2024

3-Hydroxyanthranilic Acid Delays Paralysis In Caenorhabditis Elegans Models Of Amyloid-Beta And Polyglutamine Proteotoxicity, Bradford T Hull, Kayla M Miller, Caroline Corban, Grant Backer, Susan Sheehan, Ron Korstanje, George L. Sutphin

Faculty Research 2024

Age is the primary risk factor for neurodegenerative diseases such as Alzheimer’s and Huntington’s disease. Alzheimer’s disease is the most common form of dementia and a leading cause of death in the elderly population of the United States. No effective treatments for these diseases currently exist. Identifying effective treatments for Alzheimer’s, Huntington’s, and other neurodegenerative diseases is a major current focus of national scientific resources, and there is a critical need for novel therapeutic strategies. Here, we investigate the potential for targeting the kynurenine pathway metabolite 3-hydroxyanthranilic acid (3HAA) using Caenorhabditis elegans expressing amyloid-beta or a polyglutamine peptide in body …


Common Single-Base Insertions In The Vntr Of The Carboxyl Ester Lipase (Cel) Gene Are Benign And Also Likely To Arise Somatically In The Exocrine Pancreas, Ranveig S Brekke, Anny Gravdal, Khadija El Jellas, Grace E Curry, Jianguo Lin, Steven J Wilhelm, Solrun J Steine, Eric Mas, Stefan Johansson, Mark E Lowe, Bente B Johansson, Xunjun Xiao, Karianne Fjeld, Anders Molven May 2024

Common Single-Base Insertions In The Vntr Of The Carboxyl Ester Lipase (Cel) Gene Are Benign And Also Likely To Arise Somatically In The Exocrine Pancreas, Ranveig S Brekke, Anny Gravdal, Khadija El Jellas, Grace E Curry, Jianguo Lin, Steven J Wilhelm, Solrun J Steine, Eric Mas, Stefan Johansson, Mark E Lowe, Bente B Johansson, Xunjun Xiao, Karianne Fjeld, Anders Molven

2020-Current year OA Pubs

The CEL gene encodes carboxyl ester lipase, a pancreatic digestive enzyme. CEL is extremely polymorphic due to a variable number tandem repeat (VNTR) located in the last exon. Single-base deletions within this VNTR cause the inherited disorder MODY8, whereas little is known about VNTR single-base insertions in pancreatic disease. We therefore mapped CEL insertion variants (CEL-INS) in 200 Norwegian patients with pancreatic neoplastic disorders. Twenty-eight samples (14.0%) carried CEL-INS alleles. Most common were insertions in repeat 9 (9.5%), which always associated with a VNTR length of 13 repeats. The combined INS allele frequency (0.078) was similar to that observed in …


Gpatch8 Modulates Mutant Sf3b1 Mis-Splicing And Pathogenicity In Hematologic Malignancies., Salima Benbarche, Jose Mario Bello Pineda, Laura Baquero Galvis, Jeetayu Biswas, Bo Liu, Eric Wang, Qian Zhang, Simon J Hogg, Kadeen Lyttle, Ariana Dahi, Alexander M Lewis, Martina Sarchi, Jahan Rahman, Nina Fox, Yuxi Ai, Sanjoy Mehta, Ralph Garippa, Juliana Ortiz-Pacheco, Zhuoning Li, Mara Monetti, Robert F Stanley, Sergei Doulatov, Robert K Bradley, Omar Abdel-Wahab May 2024

Gpatch8 Modulates Mutant Sf3b1 Mis-Splicing And Pathogenicity In Hematologic Malignancies., Salima Benbarche, Jose Mario Bello Pineda, Laura Baquero Galvis, Jeetayu Biswas, Bo Liu, Eric Wang, Qian Zhang, Simon J Hogg, Kadeen Lyttle, Ariana Dahi, Alexander M Lewis, Martina Sarchi, Jahan Rahman, Nina Fox, Yuxi Ai, Sanjoy Mehta, Ralph Garippa, Juliana Ortiz-Pacheco, Zhuoning Li, Mara Monetti, Robert F Stanley, Sergei Doulatov, Robert K Bradley, Omar Abdel-Wahab

Faculty Research 2024

Mutations in the RNA splicing factor gene SF3B1 are common across hematologic and solid cancers and result in widespread alterations in splicing, yet there is currently no therapeutic means to correct this mis-splicing. Here, we utilize synthetic introns uniquely responsive to mutant SF3B1 to identify trans factors required for aberrant mutant SF3B1 splicing activity. This revealed the G-patch domain-containing protein GPATCH8 as required for mutant SF3B1-induced splicing alterations and impaired hematopoiesis. GPATCH8 is involved in quality control of branchpoint selection, interacts with the RNA helicase DHX15, and functionally opposes SURP and G-patch domain containing 1 (SUGP1), a G-patch protein recently …


Unraveling Etc Complex I Function In Ferroptosis Reveals A Potential Ferroptosis-Inducing Therapeutic Strategy For Lkb1-Deficient Cancers, Chao Mao, Guang Lei, Amber Horbath, Min Wang, Zhengze Lu, Yuelong Yan, Xiaoguang Liu, Lavanya Kondiparthi, Xiong Chen, Jun Cheng, Qidong Li, Zhihao Xu, Li Zhuang, Bingliang Fang, Joseph R Marszalek, Masha V Poyurovsky, Kellen Olszewski, Boyi Gan May 2024

Unraveling Etc Complex I Function In Ferroptosis Reveals A Potential Ferroptosis-Inducing Therapeutic Strategy For Lkb1-Deficient Cancers, Chao Mao, Guang Lei, Amber Horbath, Min Wang, Zhengze Lu, Yuelong Yan, Xiaoguang Liu, Lavanya Kondiparthi, Xiong Chen, Jun Cheng, Qidong Li, Zhihao Xu, Li Zhuang, Bingliang Fang, Joseph R Marszalek, Masha V Poyurovsky, Kellen Olszewski, Boyi Gan

Faculty, Staff and Student Publications

The role of the mitochondrial electron transport chain (ETC) in regulating ferroptosis is not fully elucidated. Here, we reveal that pharmacological inhibition of the ETC complex I reduces ubiquinol levels while decreasing ATP levels and activating AMP-activated protein kinase (AMPK), the two effects known for their roles in promoting and suppressing ferroptosis, respectively. Consequently, the impact of complex I inhibitors on ferroptosis induced by glutathione peroxidase 4 (GPX4) inhibition is limited. The pharmacological inhibition of complex I in LKB1-AMPK-inactivated cells, or genetic ablation of complex I (which does not trigger apparent AMPK activation), abrogates the AMPK-mediated ferroptosis-suppressive effect and sensitizes …


Enhancer Switching In Cell Lineage Priming Is Linked To Erna, Brg1’S At-Hook, And Swi/Snf Recruitment, Dhurjhoti Saha, Srinivas Animireddy, Junwoo Lee, Anna Thommen, Mckenzie M Murvin, Yue Lu, J Mauro Calabrese, Blaine Bartholomew May 2024

Enhancer Switching In Cell Lineage Priming Is Linked To Erna, Brg1’S At-Hook, And Swi/Snf Recruitment, Dhurjhoti Saha, Srinivas Animireddy, Junwoo Lee, Anna Thommen, Mckenzie M Murvin, Yue Lu, J Mauro Calabrese, Blaine Bartholomew

Faculty, Staff and Student Publications

RNA transcribed from enhancers, i.e., eRNA, has been suggested to directly activate transcription by recruiting transcription factors and co-activators. Although there have been specific examples of eRNA functioning in this way, it is not clear how general this may be. We find that the AT-hook of SWI/SNF preferentially binds RNA and, as part of the esBAF complex, associates with eRNA transcribed from intronic and intergenic regions. Our data suggest that SWI/SNF is globally recruited in cis by eRNA to cell-type-specific enhancers, representative of two distinct stages that mimic early mammalian development, and not at enhancers that are shared between the …


Localization Of Rnas To The Mitochondria-Mechanisms And Functions, Surbhi Sharma, Furqan M Fazal May 2024

Localization Of Rnas To The Mitochondria-Mechanisms And Functions, Surbhi Sharma, Furqan M Fazal

Faculty, Staff and Students Publications

The mammalian mitochondrial proteome comprises over 1000 proteins, with the majority translated from nuclear-encoded messenger RNAs (mRNAs). Mounting evidence suggests many of these mRNAs are localized to the outer mitochondrial membrane (OMM) in a pre- or cotranslational state. Upon reaching the mitochondrial surface, these mRNAs are locally translated to produce proteins that are cotranslationally imported into mitochondria. Here, we summarize various mechanisms cells use to localize RNAs, including transfer RNAs (tRNAs), to the OMM and recent technological advancements in the field to study these processes. While most early studies in the field were carried out in yeast, recent studies reveal …


Brg1/Brm Inhibitor Targets Aml Stem Cells And Exerts Superior Preclinical Efficacy Combined With Bet Or Menin Inhibitor, Warren Fiskus, Jessica Piel, Mike Collins, Murphy Hentemann, Branko Cuglievan, Christopher P Mill, Christine E Birdwell, Kaberi Das, John A Davis, Hanxi Hou, Antrix Jain, Anna Malovannaya, Tapan M Kadia, Naval Daver, Koji Sasaki, Koichi Takahashi, Danielle Hammond, Patrick K Reville, Jian Wang, Sanam Loghavi, Rwik Sen, Xinjia Ruan, Xiaoping Su, Lauren B Flores, Courtney D Dinardo, Kapil N Bhalla May 2024

Brg1/Brm Inhibitor Targets Aml Stem Cells And Exerts Superior Preclinical Efficacy Combined With Bet Or Menin Inhibitor, Warren Fiskus, Jessica Piel, Mike Collins, Murphy Hentemann, Branko Cuglievan, Christopher P Mill, Christine E Birdwell, Kaberi Das, John A Davis, Hanxi Hou, Antrix Jain, Anna Malovannaya, Tapan M Kadia, Naval Daver, Koji Sasaki, Koichi Takahashi, Danielle Hammond, Patrick K Reville, Jian Wang, Sanam Loghavi, Rwik Sen, Xinjia Ruan, Xiaoping Su, Lauren B Flores, Courtney D Dinardo, Kapil N Bhalla

Faculty, Staff and Student Publications

BRG1 (SMARCA4) and BRM (SMARCA2) are the mutually exclusive core ATPases of the chromatin remodeling BAF (BRG1/BRM-associated factor) complexes. They enable transcription factors/cofactors to access enhancers/promoter and modulate gene expressions responsible for cell growth and differentiation of acute myeloid leukemia (AML) stem/progenitor cells. In AML with MLL1 rearrangement (MLL1r) or mutant NPM1 (mtNPM1), although menin inhibitor (MI) treatment induces clinical remissions, most patients either fail to respond or relapse, some harboring menin mutations. FHD-286 is an orally bioavailable, selective inhibitor of BRG1/BRM under clinical development in AML. Present studies show that FHD-286 induces differentiation and lethality in AML cells with …


Age-Related Brain Atrophy And The Positive Effects Of Behavioral Enrichment In Middle-Aged Beagles., Jessica A Noche, Hamsanandini Radhakrishnan, Margo F. Ubele, Kathy Boaz, Jennifer L Mefford, Erin D Jones, Hollie Y Van Rooyen, Jessica A Perpich, Katie Mccarty, Beverly Meacham, Jeffrey R. Smiley, Stasia A Bembenek Bailey, László G Puskás, David K. Powell, Lorena Sordo, Michael J Phelan, Christopher M. Norris, Elizabeth Head, Craig E L Stark May 2024

Age-Related Brain Atrophy And The Positive Effects Of Behavioral Enrichment In Middle-Aged Beagles., Jessica A Noche, Hamsanandini Radhakrishnan, Margo F. Ubele, Kathy Boaz, Jennifer L Mefford, Erin D Jones, Hollie Y Van Rooyen, Jessica A Perpich, Katie Mccarty, Beverly Meacham, Jeffrey R. Smiley, Stasia A Bembenek Bailey, László G Puskás, David K. Powell, Lorena Sordo, Michael J Phelan, Christopher M. Norris, Elizabeth Head, Craig E L Stark

Neuroscience Faculty Publications

Aging dogs serve as a valuable preclinical model for Alzheimer's disease (AD) due to their natural age-related development of β-amyloid (Aβ) plaques, human-like metabolism, and large brains that are ideal for studying structural brain aging trajectories from serial neuroimaging. Here we examined the effects of chronic treatment with the calcineurin inhibitor (CNI) tacrolimus or the nuclear factor of activated T cells (NFAT)-inhibiting compound Q134R on age-related canine brain atrophy from a longitudinal study in middle-aged beagles (36 females, 7 males) undergoing behavioral enrichment. Annual MRI was analyzed using modern, automated techniques for region-of-interest-based and voxel-based volumetric assessments. We found that …


Ataxia-Telangiectasia Mutated Loss-Of-Function Displays Variant And Tissue-Specific Differences Across Tumor Types, Patrick G Pilié, Virginia Giuliani, Wei-Lien Wang, Daniel J Mcgrail, Christopher A Bristow, Natalie Y L Ngoi, Keith Kyewalabye, Khalida M Wani, Hung Le, Erick Campbell, Nora S Sanchez, Dong Yang, Jinesh S Gheeya, Rohit Vivek Goswamy, Vijaykumar Holla, Kenna Rael Shaw, Funda Meric-Bernstam, Chiu-Yi Liu, Xiaoyan Ma, Ningping Feng, Annette A Machado, Jennifer P Bardenhagen, Christopher P Vellano, Joseph R Marszalek, Eeson Rajendra, Desiree Piscitello, Timothy I Johnson, Maria Likhatcheva, Elias Elinati, Jayesh Majithiya, Joana Neves, Vera Grinkevich, Marco Ranzani, Marina Roy Luzarraga, Marie Boursier, Lucy Armstrong, Lerin Geo, Giorgia Lillo, Wai Yiu Tse, Alexander J Lazar, Scott E Kopetz, Mary K Geck Do, Sarah Lively, Michael G Johnson, Helen M R Robinson, Graeme C M Smith, Christopher L Carroll, M Emilia Di Francesco, Philip Jones, Timothy P Heffernan, Timothy A Yap May 2024

Ataxia-Telangiectasia Mutated Loss-Of-Function Displays Variant And Tissue-Specific Differences Across Tumor Types, Patrick G Pilié, Virginia Giuliani, Wei-Lien Wang, Daniel J Mcgrail, Christopher A Bristow, Natalie Y L Ngoi, Keith Kyewalabye, Khalida M Wani, Hung Le, Erick Campbell, Nora S Sanchez, Dong Yang, Jinesh S Gheeya, Rohit Vivek Goswamy, Vijaykumar Holla, Kenna Rael Shaw, Funda Meric-Bernstam, Chiu-Yi Liu, Xiaoyan Ma, Ningping Feng, Annette A Machado, Jennifer P Bardenhagen, Christopher P Vellano, Joseph R Marszalek, Eeson Rajendra, Desiree Piscitello, Timothy I Johnson, Maria Likhatcheva, Elias Elinati, Jayesh Majithiya, Joana Neves, Vera Grinkevich, Marco Ranzani, Marina Roy Luzarraga, Marie Boursier, Lucy Armstrong, Lerin Geo, Giorgia Lillo, Wai Yiu Tse, Alexander J Lazar, Scott E Kopetz, Mary K Geck Do, Sarah Lively, Michael G Johnson, Helen M R Robinson, Graeme C M Smith, Christopher L Carroll, M Emilia Di Francesco, Philip Jones, Timothy P Heffernan, Timothy A Yap

Faculty, Staff and Student Publications

PURPOSE: Mutations in the ATM gene are common in multiple cancers, but clinical studies of therapies targeting ATM-aberrant cancers have yielded mixed results. Refinement of ATM loss of function (LOF) as a predictive biomarker of response is urgently needed.

EXPERIMENTAL DESIGN: We present the first disclosure and preclinical development of a novel, selective ATR inhibitor, ART0380, and test its antitumor activity in multiple preclinical cancer models. To refine ATM LOF as a predictive biomarker, we performed a comprehensive pan-cancer analysis of ATM variants in patient tumors and then assessed the ATM variant-to-protein relationship. Finally, we assessed a novel ATM LOF …


Targeting Ccl2/Ccr2 Signaling Overcomes Mek Inhibitor Resistance In Acute Myeloid Leukemia, Rucha V Modak, Katia G De Oliveira Rebola, John Mcclatchy, Mona Mohammadhosseini, Alisa Damnernsawad, Stephen E Kurtz, Christopher A Eide, Guanming Wu, Ted Laderas, Tamilla Nechiporuk, Marina A Gritsenko, Joshua R Hansen, Chelsea Hutchinson, Sara J C Gosline, Paul Piehowski, Daniel Bottomly, Nicholas Short, Karin Rodland, Shannon K Mcweeney, Jeffrey W Tyner, Anupriya Agarwal May 2024

Targeting Ccl2/Ccr2 Signaling Overcomes Mek Inhibitor Resistance In Acute Myeloid Leukemia, Rucha V Modak, Katia G De Oliveira Rebola, John Mcclatchy, Mona Mohammadhosseini, Alisa Damnernsawad, Stephen E Kurtz, Christopher A Eide, Guanming Wu, Ted Laderas, Tamilla Nechiporuk, Marina A Gritsenko, Joshua R Hansen, Chelsea Hutchinson, Sara J C Gosline, Paul Piehowski, Daniel Bottomly, Nicholas Short, Karin Rodland, Shannon K Mcweeney, Jeffrey W Tyner, Anupriya Agarwal

Faculty, Staff and Student Publications

Purpose: Emerging evidence underscores the critical role of extrinsic factors within the microenvironment in protecting leukemia cells from therapeutic interventions, driving disease progression, and promoting drug resistance in acute myeloid leukemia (AML). This finding emphasizes the need for the identification of targeted therapies that inhibit intrinsic and extrinsic signaling to overcome drug resistance in AML.

Experimental design: We performed a comprehensive analysis utilizing a cohort of ∼300 AML patient samples. This analysis encompassed the evaluation of secreted cytokines/growth factors, gene expression, and ex vivo drug sensitivity to small molecules. Our investigation pinpointed a notable association between elevated levels of CCL2 …


Integrative Molecular Analyses Of The Md Anderson Prostate Cancer Patient-Derived Xenograft (Mda Pca Pdx) Series, Nicolas Anselmino, Estefania Labanca, Peter D A Shepherd, Jiabin Dong, Jun Yang, Xiaofei Song, Subhiksha Nandakumar, Ritika Kundra, Cindy Lee, Nikolaus Schultz, Jianhua Zhang, John C Araujo, Ana M Aparicio, Sumit K Subudhi, Paul G Corn, Louis L Pisters, John F Ward, John W Davis, Elba S Vazquez, Geraldine Gueron, Christopher J Logothetis, Andrew Futreal, Patricia Troncoso, Yu Chen, Nora M Navone May 2024

Integrative Molecular Analyses Of The Md Anderson Prostate Cancer Patient-Derived Xenograft (Mda Pca Pdx) Series, Nicolas Anselmino, Estefania Labanca, Peter D A Shepherd, Jiabin Dong, Jun Yang, Xiaofei Song, Subhiksha Nandakumar, Ritika Kundra, Cindy Lee, Nikolaus Schultz, Jianhua Zhang, John C Araujo, Ana M Aparicio, Sumit K Subudhi, Paul G Corn, Louis L Pisters, John F Ward, John W Davis, Elba S Vazquez, Geraldine Gueron, Christopher J Logothetis, Andrew Futreal, Patricia Troncoso, Yu Chen, Nora M Navone

Faculty, Staff and Student Publications

PURPOSE: Develop and deploy a robust discovery platform that encompasses heterogeneity, clinical annotation, and molecular characterization and overcomes the limited availability of prostate cancer models. This initiative builds on the rich MD Anderson (MDA) prostate cancer (PCa) patient-derived xenograft (PDX) resource to complement existing publicly available databases by addressing gaps in clinically annotated models reflecting the heterogeneity of potentially lethal and lethal prostate cancer.

EXPERIMENTAL DESIGN: We performed whole-genome, targeted, and RNA sequencing in representative samples of the same tumor from 44 PDXs derived from 38 patients linked to donor tumor metadata and corresponding organoids. The cohort includes models derived …


Ire1Α Determines Ferroptosis Sensitivity Through Regulation Of Glutathione Synthesis, Dadi Jiang, Youming Guo, Tianyu Wang, Liang Wang, Yuelong Yan, Ling Xia, Rakesh Bam, Zhifen Yang, Hyemin Lee, Takao Iwawaki, Boyi Gan, Albert C Koong May 2024

Ire1Α Determines Ferroptosis Sensitivity Through Regulation Of Glutathione Synthesis, Dadi Jiang, Youming Guo, Tianyu Wang, Liang Wang, Yuelong Yan, Ling Xia, Rakesh Bam, Zhifen Yang, Hyemin Lee, Takao Iwawaki, Boyi Gan, Albert C Koong

Faculty, Staff and Student Publications

Cellular sensitivity to ferroptosis is primarily regulated by mechanisms mediating lipid hydroperoxide detoxification. We show that inositol-requiring enzyme 1 (IRE1α), an endoplasmic reticulum (ER) resident protein critical for the unfolded protein response (UPR), also determines cellular sensitivity to ferroptosis. Cancer and normal cells depleted of IRE1α gain resistance to ferroptosis, while enhanced IRE1α expression promotes sensitivity to ferroptosis. Mechanistically, IRE1α's endoribonuclease activity cleaves and down-regulates the mRNA of key glutathione biosynthesis regulators glutamate-cysteine ligase catalytic subunit (GCLC) and solute carrier family 7 member 11 (SLC7A11). This activity of IRE1α is independent of its role in regulating the UPR and is …


Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin May 2024

Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin

Faculty, Staff and Students Publications

Neurulation is a highly synchronized biomechanical process leading to the formation of the brain and spinal cord, and its failure leads to neural tube defects (NTDs). Although we are rapidly learning the genetic mechanisms underlying NTDs, the biomechanical aspects are largely unknown. To understand the correlation between NTDs and tissue stiffness during neural tube closure (NTC), we imaged an NTD murine model using optical coherence tomography (OCT), Brillouin microscopy and confocal fluorescence microscopy. Here, we associate structural information from OCT with local stiffness from the Brillouin signal of embryos undergoing neurulation. The stiffness of neuroepithelial tissues in Mthfd1l null embryos …


Jag1/2 Maintain Esophageal Homeostasis And Suppress Foregut Tumorigenesis By Restricting The Basal Progenitor Cell Pool, Haidi Huang, Yu Jiang, Jiangying Liu, Dan Luo, Jianghong Yuan, Rongzi Mu, Xiang Yu, Donglei Sun, Jihong Lin, Qiyue Chen, Xinjing Li, Ming Jiang, Jianming Xu, Bo Chu, Chengqian Yin, Lei Zhang, Youqiong Ye, Bo Cao, Qiong Wang, Yongchun Zhang May 2024

Jag1/2 Maintain Esophageal Homeostasis And Suppress Foregut Tumorigenesis By Restricting The Basal Progenitor Cell Pool, Haidi Huang, Yu Jiang, Jiangying Liu, Dan Luo, Jianghong Yuan, Rongzi Mu, Xiang Yu, Donglei Sun, Jihong Lin, Qiyue Chen, Xinjing Li, Ming Jiang, Jianming Xu, Bo Chu, Chengqian Yin, Lei Zhang, Youqiong Ye, Bo Cao, Qiong Wang, Yongchun Zhang

Faculty, Staff and Students Publications

Basal progenitor cells are crucial for maintaining foregut (the esophagus and forestomach) homeostasis. When their function is dysregulated, it can promote inflammation and tumorigenesis. However, the mechanisms underlying these processes remain largely unclear. Here, we employ genetic mouse models to reveal that Jag1/2 regulate esophageal homeostasis and foregut tumorigenesis by modulating the function of basal progenitor cells. Deletion of Jag1/2 in mice disrupts esophageal and forestomach epithelial homeostasis. Mechanistically, Jag1/2 deficiency impairs activation of Notch signaling, leading to reduced squamous epithelial differentiation and expansion of basal progenitor cells. Moreover, Jag1/2 deficiency exacerbates the deoxycholic acid (DCA)-induced squamous epithelial injury and …


Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin May 2024

Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin

Faculty, Staff and Students Publications

Neurulation is a highly synchronized biomechanical process leading to the formation of the brain and spinal cord, and its failure leads to neural tube defects (NTDs). Although we are rapidly learning the genetic mechanisms underlying NTDs, the biomechanical aspects are largely unknown. To understand the correlation between NTDs and tissue stiffness during neural tube closure (NTC), we imaged an NTD murine model using optical coherence tomography (OCT), Brillouin microscopy and confocal fluorescence microscopy. Here, we associate structural information from OCT with local stiffness from the Brillouin signal of embryos undergoing neurulation. The stiffness of neuroepithelial tissues in Mthfd1l null embryos …


Quantitative T2 Mapping-Based Longitudinal Assessment Of Brain Injury And Therapeutic Rescue In The Rat Following Acute Organophosphate Intoxication, Alita Jesal D Almeida, Brad A Hobson, Naomi Saito, Donald A Bruun, Valerie A Porter, Danielle J Harvey, Joel R Garbow, Abhijit J Chaudhari, Pamela J Lein May 2024

Quantitative T2 Mapping-Based Longitudinal Assessment Of Brain Injury And Therapeutic Rescue In The Rat Following Acute Organophosphate Intoxication, Alita Jesal D Almeida, Brad A Hobson, Naomi Saito, Donald A Bruun, Valerie A Porter, Danielle J Harvey, Joel R Garbow, Abhijit J Chaudhari, Pamela J Lein

2020-Current year OA Pubs

Acute intoxication with organophosphate (OP) cholinesterase inhibitors poses a significant public health risk. While currently approved medical countermeasures can improve survival rates, they often fail to prevent chronic neurological damage. Therefore, there is need to develop effective therapies and quantitative metrics for assessing OP-induced brain injury and its rescue by these therapies. In this study we used a rat model of acute intoxication with the OP, diisopropylfluorophosphate (DFP), to test the hypothesis that T


Differential Gene Expression Analysis Of Spatial Transcriptomic Experiments Using Spatial Mixed Models., Oscar E. Ospina, Alex C. Soupir, Roberto Manjarres-Betancur, Guillermo Gonzalez-Calderon, Xiaoqing Yu, Brooke L. Fridley May 2024

Differential Gene Expression Analysis Of Spatial Transcriptomic Experiments Using Spatial Mixed Models., Oscar E. Ospina, Alex C. Soupir, Roberto Manjarres-Betancur, Guillermo Gonzalez-Calderon, Xiaoqing Yu, Brooke L. Fridley

Manuscripts, Articles, Book Chapters and Other Papers

Spatial transcriptomics (ST) assays represent a revolution in how the architecture of tissues is studied by allowing for the exploration of cells in their spatial context. A common element in the analysis is delineating tissue domains or "niches" followed by detecting differentially expressed genes to infer the biological identity of the tissue domains or cell types. However, many studies approach differential expression analysis by using statistical approaches often applied in the analysis of non-spatial scRNA data (e.g., two-sample t-tests, Wilcoxon's rank sum test), hence neglecting the spatial dependency observed in ST data. In this study, we show that applying linear …


C-Terminal Binding Protein 2 Is A Novel Tumor Suppressor Targeting The Myc-Irf4 Axis In Multiple Myeloma, Coty Hing Yau Cheung, Chi Keung Cheng, Kam Tong Leung, Chi Zhang, Chi Yan Ho, Xi Luo, Angel Yuet Fong Kam, Tian Xia, Thomas Shek Kong Wan, Herbert Augustus Pitts, Natalie Pui Ha Chan, Joyce Sin Cheung, Raymond Siu Ming Wong, Xiao-Bing Zhang, Margaret Heung Ling Ng May 2024

C-Terminal Binding Protein 2 Is A Novel Tumor Suppressor Targeting The Myc-Irf4 Axis In Multiple Myeloma, Coty Hing Yau Cheung, Chi Keung Cheng, Kam Tong Leung, Chi Zhang, Chi Yan Ho, Xi Luo, Angel Yuet Fong Kam, Tian Xia, Thomas Shek Kong Wan, Herbert Augustus Pitts, Natalie Pui Ha Chan, Joyce Sin Cheung, Raymond Siu Ming Wong, Xiao-Bing Zhang, Margaret Heung Ling Ng

Faculty, Staff and Student Publications

Multiple myeloma (MM) cells are addicted to MYC and its direct transactivation targets IRF4 for proliferation and survival. MYC and IRF4 are still considered "undruggable," as most small-molecule inhibitors suffer from low potency, suboptimal pharmacokinetic properties, and undesirable off-target effects. Indirect inhibition of MYC/IRF4 emerges as a therapeutic vulnerability in MM. Here, we uncovered an unappreciated tumor-suppressive role of C-terminal binding protein 2 (CTBP2) in MM via strong inhibition of the MYC-IRF4 axis. In contrast to epithelial cancers, CTBP2 is frequently downregulated in MM, in association with shortened survival, hyperproliferative features, and adverse clinical outcomes. Restoration of CTBP2 exhibited potent …


Astrocytes Remember Inflammation, Michael R Williamson, Benjamin Deneen May 2024

Astrocytes Remember Inflammation, Michael R Williamson, Benjamin Deneen

Faculty, Staff and Students Publications

Astrocytes respond to all forms of central nervous system maladies. In a recent issue of Nature, Lee et al. demonstrate that astrocytes encode inflammatory stimuli as epigenetic memory, which strengthens responses to subsequent stimuli and exacerbates pathology in disease models.


The Crosstalk Between Macrophages And Cancer Cells Potentiates Pancreatic Cancer Cachexia, Mingyang Liu, Yu Ren, Zhijun Zhou, Jingxuan Yang, Xiuhui Shi, Yang Cai, Alex X Arreola, Wenyi Luo, Kar-Ming Fung, Chao Xu, Ryan D Nipp, Michael S Bronze, Lei Zheng, Yi-Ping Li, Courtney W Houchen, Yuqing Zhang, Min Li May 2024

The Crosstalk Between Macrophages And Cancer Cells Potentiates Pancreatic Cancer Cachexia, Mingyang Liu, Yu Ren, Zhijun Zhou, Jingxuan Yang, Xiuhui Shi, Yang Cai, Alex X Arreola, Wenyi Luo, Kar-Ming Fung, Chao Xu, Ryan D Nipp, Michael S Bronze, Lei Zheng, Yi-Ping Li, Courtney W Houchen, Yuqing Zhang, Min Li

Faculty, Staff and Student Publications

With limited treatment options, cachexia remains a major challenge for patients with cancer. Characterizing the interplay between tumor cells and the immune microenvironment may help identify potential therapeutic targets for cancer cachexia. Herein, we investigate the critical role of macrophages in potentiating pancreatic cancer induced muscle wasting via promoting TWEAK (TNF-like weak inducer of apoptosis) secretion from the tumor. Specifically, depletion of macrophages reverses muscle degradation induced by tumor cells. Macrophages induce non-autonomous secretion of TWEAK through CCL5/TRAF6/NF-κB pathway. TWEAK promotes muscle atrophy by activating MuRF1 initiated muscle remodeling. Notably, tumor cells recruit and reprogram macrophages via the CCL2/CCR2 axis …


Targeting Cathepsin C Ameliorates Murine Acetaminophen-Induced Liver Injury, Jessica Raith, Malte Bachmann, Sina Gonther, Hendrik Stülb, Ali A Aghdassi, Christine T N Pham, Heiko Mühl May 2024

Targeting Cathepsin C Ameliorates Murine Acetaminophen-Induced Liver Injury, Jessica Raith, Malte Bachmann, Sina Gonther, Hendrik Stülb, Ali A Aghdassi, Christine T N Pham, Heiko Mühl

2020-Current year OA Pubs

Acetaminophen (APAP) overdosing is a major cause of acute liver failure worldwide and an established model for drug-induced acute liver injury (ALI). While studying gene expression during murine APAP-induced ALI by 3'mRNA sequencing (massive analysis of cDNA ends, MACE), we observed splenic mRNA accumulation encoding for the neutrophil serine proteases cathepsin G, neutrophil elastase, and proteinase-3 - all are hierarchically activated by cathepsin C (CtsC). This, along with increased serum levels of these proteases in diseased mice, concurs with the established phenomenon of myeloid cell mobilization during APAP intoxication.


Reverse Genetics Of Murine Rotavirus: A Comparative Analysis Of The Wild-Type And Cell-Culture-Adapted Murine Rotavirus Vp4 In Replication And Virulence In Neonatal Mice, Takahiro Kawagishi, Liliana Sánchez-Tacuba, Ningguo Feng, Harry B Greenberg, Siyuan Ding May 2024

Reverse Genetics Of Murine Rotavirus: A Comparative Analysis Of The Wild-Type And Cell-Culture-Adapted Murine Rotavirus Vp4 In Replication And Virulence In Neonatal Mice, Takahiro Kawagishi, Liliana Sánchez-Tacuba, Ningguo Feng, Harry B Greenberg, Siyuan Ding

2020-Current year OA Pubs

Small-animal models and reverse genetics systems are powerful tools for investigating the molecular mechanisms underlying viral replication, virulence, and interaction with the host immune response in vivo. Rotavirus (RV) causes acute gastroenteritis in many young animals and infants worldwide. Murine RV replicates efficiently in the intestines of inoculated suckling pups, causing diarrhea, and spreads efficiently to uninoculated littermates. Because RVs derived from human and other non-mouse animal species do not replicate efficiently in mice, murine RVs are uniquely useful in probing the viral and host determinants of efficient replication and pathogenesis in a species-matched mouse model. Previously, we established an …


Regulation Of Cerebral Blood Flow Boosts Precise Brain Targeting Of Vinpocetine-Derived Ionizable-Lipidoid Nanoparticles, Xufei Bian, Ling Yang, Dingxi Jiang, Adam J Grippin, Yifan Ma, Shuang Wu, Linchong Wu, Xiaoyou Wang, Zhongjie Tang, Kaicheng Tang, Weidong Pan, Shiyan Dong, Betty Y S Kim, Wen Jiang, Zhaogang Yang, Chong Li May 2024

Regulation Of Cerebral Blood Flow Boosts Precise Brain Targeting Of Vinpocetine-Derived Ionizable-Lipidoid Nanoparticles, Xufei Bian, Ling Yang, Dingxi Jiang, Adam J Grippin, Yifan Ma, Shuang Wu, Linchong Wu, Xiaoyou Wang, Zhongjie Tang, Kaicheng Tang, Weidong Pan, Shiyan Dong, Betty Y S Kim, Wen Jiang, Zhaogang Yang, Chong Li

Faculty, Staff and Student Publications

Despite advances in active drug targeting for blood-brain barrier penetration, two key challenges persist: first, attachment of a targeting ligand to the drug or drug carrier does not enhance its brain biodistribution; and second, many brain diseases are intricately linked to microcirculation disorders that significantly impede drug accumulation within brain lesions even after they cross the barrier. Inspired by the neuroprotective properties of vinpocetine, which regulates cerebral blood flow, we propose a molecular library design centered on this class of cyclic tertiary amine compounds and develop a self-enhanced brain-targeted nucleic acid delivery system. Our findings reveal that: (i) vinpocetine-derived ionizable-lipidoid …


Mitochondria Regulate Proliferation In Adult Cardiac Myocytes, Gregory B Waypa, Kimberly A Smith, Paul T Mungai, Vincent J Dudley, Kathryn A Helmin, Benjamin D Singer, Clara Bien Peek, Joseph Bass, Lauren Nelson, Sanjiv J Shah, Gaston Ofman, J Andrew Wasserstrom, William A Muller, Alexander V Misharin, G R Scott Budinger, Hiam Abdala-Valencia, Navdeep S Chandel, Danijela Dokic, Elizabeth Bartom, Shuang Zhang, Yuki Tatekoshi, Amir Mahmoodzadeh, Hossein Ardehali, Edward B Thorp, Paul T Schumacker May 2024

Mitochondria Regulate Proliferation In Adult Cardiac Myocytes, Gregory B Waypa, Kimberly A Smith, Paul T Mungai, Vincent J Dudley, Kathryn A Helmin, Benjamin D Singer, Clara Bien Peek, Joseph Bass, Lauren Nelson, Sanjiv J Shah, Gaston Ofman, J Andrew Wasserstrom, William A Muller, Alexander V Misharin, G R Scott Budinger, Hiam Abdala-Valencia, Navdeep S Chandel, Danijela Dokic, Elizabeth Bartom, Shuang Zhang, Yuki Tatekoshi, Amir Mahmoodzadeh, Hossein Ardehali, Edward B Thorp, Paul T Schumacker

Faculty, Staff and Student Publications

Newborn mammalian cardiomyocytes quickly transition from a fetal to an adult phenotype that utilizes mitochondrial oxidative phosphorylation but loses mitotic capacity. We tested whether forced reversal of adult cardiomyocytes back to a fetal glycolytic phenotype would restore proliferative capacity. We deleted Uqcrfs1 (mitochondrial Rieske iron-sulfur protein, RISP) in hearts of adult mice. As RISP protein decreased, heart mitochondrial function declined, and glucose utilization increased. Simultaneously, the hearts underwent hyperplastic remodeling during which cardiomyocyte number doubled without cellular hypertrophy. Cellular energy supply was preserved, AMPK activation was absent, and mTOR activation was evident. In ischemic hearts with RISP deletion, new cardiomyocytes …


Activation Of Interleukin 33-Nfκb Axis In Granulosa Cells During Atresia And Its Role In Disposal Of Atretic Follicles, Jean Wu, Colin Carlock, Kiana Tatum, Junbo Shim, Cindy Zhou, Yahuan Lou May 2024

Activation Of Interleukin 33-Nfκb Axis In Granulosa Cells During Atresia And Its Role In Disposal Of Atretic Follicles, Jean Wu, Colin Carlock, Kiana Tatum, Junbo Shim, Cindy Zhou, Yahuan Lou

Faculty, Staff and Student Publications

It has been previously shown that the cytokine interleukin 33 is required for two processes, i.e., autophagic digestion of granulosa cells and recruitment of macrophages into atretic follicles, for full disposal of atretic follicles. Now, this study shows that activation of interleukin 33-suppression of tumorigenicity 2-Nuclear Factor ĸB (NFκB) axis in granulosa in early atretic follicles may regulate those two events. Injection of human chorionic gonadotropin has been shown to induce a transient peak of interleukin 33 expression with synchronized atresia. In this model, interleukin 33-independent expression of suppression of tumorigenicity 2 in granulosa cells was detected in early atretic …