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Articles 3181 - 3210 of 42084
Full-Text Articles in Medicine and Health Sciences
Citrullinated Eno1 Vaccine Enhances Pd-1 Blockade In Mice Implanted With Murine Triple-Negative Breast Cancer Cells, Ricardo A León-Letelier, Alejandro M Sevillano-Mantas, Yihui Chen, Soyoung Park, Jody Vykoukal, Johannes F Fahrmann, Edwin J Ostrin, Candace Garrett, Rongzhang Dou, Yining Cai, Fu-Chung Hsiao, Jennifer B Dennison, Eduardo Vilar, Banu K Arun, Samir Hanash, Hiroyuki Katayama
Citrullinated Eno1 Vaccine Enhances Pd-1 Blockade In Mice Implanted With Murine Triple-Negative Breast Cancer Cells, Ricardo A León-Letelier, Alejandro M Sevillano-Mantas, Yihui Chen, Soyoung Park, Jody Vykoukal, Johannes F Fahrmann, Edwin J Ostrin, Candace Garrett, Rongzhang Dou, Yining Cai, Fu-Chung Hsiao, Jennifer B Dennison, Eduardo Vilar, Banu K Arun, Samir Hanash, Hiroyuki Katayama
Faculty, Staff and Student Publications
Background/Objectives:Cancer vaccine targets mostly include mutations and overexpressed proteins. However, cancer-associated post-translational modifications (PTMs) may also induce immune responses. Previously, our group established the enzyme protein arginine deiminase type-2 (PADI2), which catalyzes citrullination modification, is highly expressed in triple-negative breast cancer (TNBC), promoting antigenicity.
Methods: Here, we show the workflow of designing citrullinated enolase 1 (citENO1) vaccine peptides identified from breast cancer cells by mass spectrometry and demonstrate TNBC vaccine efficacy in the mouse model. Immunized mice with citENO1 peptides or the corresponding unmodified peptides, plus Poly I:C as an adjuvant, were orthotopically implanted with a TNBC murine …
Proteomic-Based Stemness Score Measures Oncogenic Dedifferentiation And Enables The Identification Of Druggable Targets, Iga Kołodziejczak-Guglas, Renan L S Simões, Emerson De Souza Santos, Elizabeth G Demicco, Rossana N Lazcano Segura, Weiping Ma, Pei Wang, Yifat Geffen, Erik Storrs, Francesca Petralia, Antonio Colaprico, Felipe Da Veiga Leprevost, Pietro Pugliese, Michele Ceccarelli, Houtan Noushmehr, Alexey I Nesvizhskii, Bożena Kamińska, Waldemar Priebe, Jan Lubiński, Bing Zhang, Alexander J Lazar, Paweł Kurzawa, Mehdi Mesri, Ana I Robles, Clinical Proteomic Tumor Analysis Consortium, Li Ding, Tathiane M Malta, Maciej Wiznerowicz
Proteomic-Based Stemness Score Measures Oncogenic Dedifferentiation And Enables The Identification Of Druggable Targets, Iga Kołodziejczak-Guglas, Renan L S Simões, Emerson De Souza Santos, Elizabeth G Demicco, Rossana N Lazcano Segura, Weiping Ma, Pei Wang, Yifat Geffen, Erik Storrs, Francesca Petralia, Antonio Colaprico, Felipe Da Veiga Leprevost, Pietro Pugliese, Michele Ceccarelli, Houtan Noushmehr, Alexey I Nesvizhskii, Bożena Kamińska, Waldemar Priebe, Jan Lubiński, Bing Zhang, Alexander J Lazar, Paweł Kurzawa, Mehdi Mesri, Ana I Robles, Clinical Proteomic Tumor Analysis Consortium, Li Ding, Tathiane M Malta, Maciej Wiznerowicz
Faculty, Staff and Student Publications
Cancer progression and therapeutic resistance are closely linked to a stemness phenotype. Here, we introduce a protein-expression-based stemness index (PROTsi) to evaluate oncogenic dedifferentiation in relation to histopathology, molecular features, and clinical outcomes. Utilizing datasets from the Clinical Proteomic Tumor Analysis Consortium across 11 tumor types, we validate PROTsi's effectiveness in accurately quantifying stem-like features. Through integration of PROTsi with multi-omics, including protein post-translational modifications, we identify molecular features associated with stemness and proteins that act as active nodes within transcriptional networks, driving tumor aggressiveness. Proteins highly correlated with stemness were identified as potential drug targets, both shared and tumor …
Why Acromegaly Dies: A Systematic Review, Isam Noori Salman, Safaa Ehssan Atta, Baydaa Ahmed Abed, Noor Ulhuda G. Mohammed
Why Acromegaly Dies: A Systematic Review, Isam Noori Salman, Safaa Ehssan Atta, Baydaa Ahmed Abed, Noor Ulhuda G. Mohammed
Maaen Journal for Medical Sciences
Acromegaly is a rare endocrine clinical syndrome characterized by long-term elevated production of growth hormone (GH) due to a pituitary adenoma tumor. The main problem of acromegaly patients (AC-PTs) is prolonged elevated GH concentration, which leads to increased insulin-like growth factor 1 (IGF-1) production, causing the characteristic tissue and bone overgrowth. The appearance of diabetes in AC-PTs was linked with the high risks of cardiovascular morbidity, indicating that individuals with both conditions face heightened health challenges. Acromegaly typically has a higher cancer incidence rather than the general population. Without early diagnosis and effective treatment, excess GH can have widespread systemic …
Insights Into The Floral Senescence Effects Of Nanoparticles, Vuk Uskoković
Insights Into The Floral Senescence Effects Of Nanoparticles, Vuk Uskoković
Administration and Staff Articles and Research
Flowers could be valuable addenda to nanomedicine labs as in vivo models crossing the gap between the cell culture and small mammals. However, as it is shown here, floral models continue to be predominantly utilized within resource-limited research environments and remain largely underrepresented in mainstream biomedical investigations conducted by well-funded institutions in the developed world. The ability to delay the senescence of Orange Jubilee wildflowers was tested here on three types of nanoparticles: selenite-doped hydroxyapatite (HAp), citrate-stabilized HAp, and superparamagnetic iron oxide. Integration of selenite into the HAp crystal lattice produced a mild increase in the senescence rate …
Structural Basis For The Substrate Specificity Of Helix Pomatia Amp Deaminase And A Chimeric Adgf Adenosine Deaminase, Gundeep Kaur, John R Horton, George Tzertzinis, Jujun Zhou, Ira Schildkraut, Xiaodong Cheng
Structural Basis For The Substrate Specificity Of Helix Pomatia Amp Deaminase And A Chimeric Adgf Adenosine Deaminase, Gundeep Kaur, John R Horton, George Tzertzinis, Jujun Zhou, Ira Schildkraut, Xiaodong Cheng
Faculty, Staff and Student Publications
Helix pomatia AMP deaminase (HPAMPD), an enzyme enriched in the foot muscle of the mollusk H. pomatia, exhibits deaminase activity on adenosine-5'-monophosphate (AMP). HPAMPD is the first member of the adenosine deaminase-related growth factor (ADGF) family to prefer the nucleotide AMP over the nucleoside adenosine. To investigate the substrate selectivity of HPAMPD, we determined its structure in both the apo form and in complex with the adenosine analogs pentostatin and pentostatin-5'-monophosphate. Structurally, HPAMPD adopts a fold similar to human ADA2, an ADGF family member. HPAMPD has acquired the ability to interact with the 5'-monophosphate group of AMP through polar and …
Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin
Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin
Faculty, Staff and Student Publications
Understanding how genetic disorders affect CD8+ T cells in the tumor microenvironment is key to improving cancer immunotherapy. Individuals with sickle cell disease (SCD), the most prevalent inherited blood disorder, have a higher risk of developing certain cancers than the general population, but the mechanisms driving this increased risk remain unclear. Our study revealed that SCD altered CD8+ T cell 3D genome architecture, triggering ferroptosis and weakening anti-tumor immunity, thereby promoting tumor growth. Using murine and humanized SCD models, we found that disrupted chromosomal interactions in CD8+ T cells reduced the expression of anti-ferroptotic genes, including SLC7A11 and hydrogen sulfide …
Optimized Genomic Editing Of A Common Duchenne Muscular Dystrophy Mutation In Patient-Derived Muscle Cells And A New Humanized Mouse Model, Mateusz Z Durbacz, Yu Zhang, Hui Li, Takahiko Nishiyama, Efrain Sanchez- Ortiz, John R Mcanally, Damir Alzhanov, Ning Liu, Eric N Olson
Optimized Genomic Editing Of A Common Duchenne Muscular Dystrophy Mutation In Patient-Derived Muscle Cells And A New Humanized Mouse Model, Mateusz Z Durbacz, Yu Zhang, Hui Li, Takahiko Nishiyama, Efrain Sanchez- Ortiz, John R Mcanally, Damir Alzhanov, Ning Liu, Eric N Olson
Faculty, Staff and Student Publications
Duchenne muscular dystrophy (DMD) is a fatal X-linked, recessive disease caused by mutations in the DMD gene encoding dystrophin, a membrane-associated protein necessary for maintaining muscle structure and function. One of the common DMD mutations is the deletion of exon 52 (Δ52), which introduces a premature stop codon in exon 53, preventing the expression of functional dystrophin protein. Patients with this mutation could benefit from skipping or reframing exon 53 to restore the dystrophin open reading frame. In this study, we investigated the efficacy of single-cut CRISPR gene editing with Staphylococcus pyogenes Cas9 (SpCas9)-LRVQR to restore dystrophin expression …
Arid4b: An Orchestrator From Stem Cell Fate To Carcinogenesis, Rakhee Rathnam Kalari Kandy, Madan Kumar Arumugam, Mukesh Pratap Yadav, Bibhuti Bhusan Mishra, Jyotika Sharma
Arid4b: An Orchestrator From Stem Cell Fate To Carcinogenesis, Rakhee Rathnam Kalari Kandy, Madan Kumar Arumugam, Mukesh Pratap Yadav, Bibhuti Bhusan Mishra, Jyotika Sharma
Faculty, Staff and Student Publications
All biological processes, from embryonic development to cancer, are tightly controlled by the interactions between genetics and epigenetics. An array of epigenetic modifications, such as DNA methylation, histone/chromatin modifications, and noncoding RNA-mediated targeting, are essential to regulate the heritable changes that occur during multiple cellular processes. A failure in proper regulation results in inappropriate gene expression that ultimately leads to pathological states. Groundbreaking advances in genomics and transcriptomics have revealed the potential involvement of epigenetics in various physiological and pathological states. The promising clinical and preclinical results shown by epigenetics drugs further underscore the central role of epigenetics in multiple …
Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin
Sickle Cell Disease Induces Chromatin Introversion And Ferroptosis In Cd8+ T Cells To Suppress Anti-Tumor Immunity, Zilong Zhao, Benxia Hu, Yalan Deng, Melinda Soeung, Jun Yao, Lanxin Bei, Yaohua Zhang, Pengju Gong, Lisa A Huang, Zhou Jiang, Jian Gao, Shuang Peng, Tina K Nguyen, Menuka Karki, Bora Lim, Cassian Yee, Jared K Burks, Qing Zhang, Li Ma, Jianjun Gao, Nizar M Tannir, Leng Han, Dihua Yu, Linghua Wang, Michael A Curran, Maria A Gubbiotti, Giannicola Genovese, Boyi Gan, Wenbo Li, Pavlos Msaouel, Liuqing Yang, Chunru Lin
Faculty, Staff and Student Publications
Understanding how genetic disorders affect CD8
Determining Accurate Pore Structures Of Polypropylene Membrane For Ecmo Using Fe-Sem Under Optimized Conditions, Makoto Fukuda, Yoshiaki Nishite, Eri Murata, Koki Namekawa, Tomohiro Mori, Tsutomu Tanaka, Kiyotaka Sakai
Determining Accurate Pore Structures Of Polypropylene Membrane For Ecmo Using Fe-Sem Under Optimized Conditions, Makoto Fukuda, Yoshiaki Nishite, Eri Murata, Koki Namekawa, Tomohiro Mori, Tsutomu Tanaka, Kiyotaka Sakai
Children’s Nutrition Research Center Staff Publications
Long-term ECMOs are expected to be put into practical use in order to prepare for the next emerging severe infectious diseases after the novel coronavirus pandemic in 2019-2023. While polypropylene (PP) and polymethylpentene (PMP) are currently the mainstream materials for the hollow fiber membranes of ECMO, the PP membrane coated with a silicone layer on the outer surface has also been commercialized. In this study, we sought a method to accurately observe the detailed pore morphologies of the PP membrane by suppressing irreversible changes in the morphology in SEM observation, which is a general-purpose observation with higher resolution. As a …
Targeting Detoxifying Enzymes In The Lymphatic Filariasis Vector: An In Silico Study On Curcumin, Camphor, And Menthol, Rizal Subahar, Rawina Winita, Surya Dwira, Gulshan Fahmi El Bayani
Targeting Detoxifying Enzymes In The Lymphatic Filariasis Vector: An In Silico Study On Curcumin, Camphor, And Menthol, Rizal Subahar, Rawina Winita, Surya Dwira, Gulshan Fahmi El Bayani
Indonesian Journal of Medical Chemistry and Bioinformatics
Vector control remains a critical component in the prevention of lymphatic filariasis, a disease transmitted by insect vectors. Natural compounds such as curcumin, camphor, and menthol are being explored for their bio-insecticidal properties due to their potential to inhibit key detoxification and neurological enzymes in insects, including acetylcholinesterase (AChE), glutathione S-transferase (GST), and cytochrome P450 oxidases (CYP450). A molecular docking study using SwissDock was conducted to evaluate the interaction of curcumin, camphor, and menthol with AChE, GST, and CYP450 enzymes. Binding affinity (ΔG), hydrogen bonding, and active site interactions were analyzed to assess the inhibitory potential of each compound. Curcumin …
Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan
Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan
Faculty, Staff and Student Publications
Cuproptosis is a recently identified form of copper-dependent cell death. Here, we reveal that radiotherapy (RT) induces cuproptosis in cancer cells, independent of apoptosis and ferroptosis, and depletes lipoylated proteins and iron-sulfur (Fe-S) cluster proteins-both hallmarks of cuproptosis-in patient tumors. Mechanistically, RT elevates mitochondrial copper levels by upregulating copper transporter 1 (CTR1) and depleting mitochondrial glutathione, a copper chelator, thereby triggering cuproptosis. Integrated analyses of RNA sequencing (RNA-seq) from radioresistant esophageal cancer cells and single-cell RNA-seq from esophageal tumors of patients unresponsive to RT link radioresistance to the downregulation of BTB and CNC homology 1 (BACH1). This downregulation de-represses the …
Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan
Radiotherapy Promotes Cuproptosis And Synergizes With Cuproptosis Inducers To Overcome Tumor Radioresistance, Guang Lei, Mingchuang Sun, Jun Cheng, Rui Ye, Zhengze Lu, Amber Horbath, David Huo, Shengrong Wu, Anagha Alapati, Sadhna Aggarwal, Zhihao Xu, Chao Mao, Yuelong Yan, Jun Yao, Qidong Li, Xiong Chen, Hyemin Lee, Li Zhuang, Dadi Jiang, Apar Pataer, Jack A Roth, Nicholas Navin, Albert C Koong, Mingjian James You, Steven H Lin, Boyi Gan
Faculty, Staff and Student Publications
Cuproptosis is a recently identified form of copper-dependent cell death. Here, we reveal that radiotherapy (RT) induces cuproptosis in cancer cells, independent of apoptosis and ferroptosis, and depletes lipoylated proteins and iron-sulfur (Fe-S) cluster proteins-both hallmarks of cuproptosis-in patient tumors. Mechanistically, RT elevates mitochondrial copper levels by upregulating copper transporter 1 (CTR1) and depleting mitochondrial glutathione, a copper chelator, thereby triggering cuproptosis. Integrated analyses of RNA sequencing (RNA-seq) from radioresistant esophageal cancer cells and single-cell RNA-seq from esophageal tumors of patients unresponsive to RT link radioresistance to the downregulation of BTB and CNC homology 1 (BACH1). This downregulation de-represses the …
Spatial And Multiomics Analysis Of Human And Mouse Lung Adenocarcinoma Precursors Reveals Tim-3 As A Putative Target For Precancer Interception, Bo Zhu, Pingjun Chen, Muhammad Aminu, Jian-Rong Li, Junya Fujimoto, Yanhua Tian, Lingzhi Hong, Hong Chen, Xin Hu, Chenyang Li, Natalie Vokes, Andre L Moreira, Don L Gibbons, Luisa M Solis Soto, Edwin Roger Parra Cuentas, Ou Shi, Songhui Diao, Jie Ye, Frank R Rojas, Eduardo Vilar, Anirban Maitra, Ken Chen, Nicolas Navin, Monique Nilsson, Beibei Huang, Simon Heeke, Jianhua Zhang, Cara L Haymaker, Vamsidhar Velcheti, Daniel H Sterman, Veena Kochat, William I Padron, Ludmil B Alexandrov, Zhubo Wei, Xiuning Le, Linghua Wang, Junya Fukuoka, J Jack Lee, Ignacio I Wistuba, Harvey I Pass, Mark Davis, Samir Hanash, Chao Cheng, Steven Dubinett, Avrum Spira, Kunal Rai, Scott M Lippman, P Andrew Futreal, John V Heymach, Alexandre Reuben, Jia Wu, Jianjun Zhang
Spatial And Multiomics Analysis Of Human And Mouse Lung Adenocarcinoma Precursors Reveals Tim-3 As A Putative Target For Precancer Interception, Bo Zhu, Pingjun Chen, Muhammad Aminu, Jian-Rong Li, Junya Fujimoto, Yanhua Tian, Lingzhi Hong, Hong Chen, Xin Hu, Chenyang Li, Natalie Vokes, Andre L Moreira, Don L Gibbons, Luisa M Solis Soto, Edwin Roger Parra Cuentas, Ou Shi, Songhui Diao, Jie Ye, Frank R Rojas, Eduardo Vilar, Anirban Maitra, Ken Chen, Nicolas Navin, Monique Nilsson, Beibei Huang, Simon Heeke, Jianhua Zhang, Cara L Haymaker, Vamsidhar Velcheti, Daniel H Sterman, Veena Kochat, William I Padron, Ludmil B Alexandrov, Zhubo Wei, Xiuning Le, Linghua Wang, Junya Fukuoka, J Jack Lee, Ignacio I Wistuba, Harvey I Pass, Mark Davis, Samir Hanash, Chao Cheng, Steven Dubinett, Avrum Spira, Kunal Rai, Scott M Lippman, P Andrew Futreal, John V Heymach, Alexandre Reuben, Jia Wu, Jianjun Zhang
Faculty, Staff and Student Publications
How tumor microenvironment shapes lung adenocarcinoma (LUAD) precancer evolution remains poorly understood. Spatial immune profiling of 114 human LUAD and LUAD precursors reveals a progressive increase of adaptive response and a relative decrease of innate immune response as LUAD precursors progress. The immune evasion features align the immune response patterns at various stages. TIM-3-high features are enriched in LUAD precancers, which decrease in later stages. Furthermore, single-cell RNA sequencing (scRNA-seq) and spatial immune and transcriptomics profiling of LUAD and LUAD precursor specimens from 5 mouse models validate high TIM-3 features in LUAD precancers. In vivo TIM-3 blockade at precancer stage, …
Exploring Muslim American Attitudes Toward Genetic Testing: Perceptions, Barriers, And Ethical Considerations, Hannah Mahmoud
Exploring Muslim American Attitudes Toward Genetic Testing: Perceptions, Barriers, And Ethical Considerations, Hannah Mahmoud
University Honors Theses
This thesis explores perceptions and attitudes toward genetic testing within the Muslim American community, a group often underrepresented in genomic research and public health discourse. Using a community-distributed digital survey, data was collected from 50 self-identified Muslim Americans on their familiarity with genetic testing, reproductive and ethical considerations, and the influence of religious factors. While only 18% had undergone genetic testing themselves, many were familiar through family or friends, and most expressed cautious interest—especially when results could influence future family planning. Education level, age, and religious values shaped both comfort and understanding.
A key theme was the desire for culturally …
Rewired M6a Of Promoter Antisense Rnas In Alzheimer’S Disease Regulates Neuronal Genes In 3d Nucleome, Benxia Hu, Yuqiang Shi, Feng Xiong, Yi-Ting Chen, Xiaoyu Zhu, Elisa Carrillo, Xingzhao Wen, Nathan Drolet, Chetan Singh Rajpurohit, Xiangmin Xu, Dung-Fang Lee, Claudio Soto, Sheng Zhong, Vasanthi Jayaraman, Hui Zheng, Wenbo Li
Rewired M6a Of Promoter Antisense Rnas In Alzheimer’S Disease Regulates Neuronal Genes In 3d Nucleome, Benxia Hu, Yuqiang Shi, Feng Xiong, Yi-Ting Chen, Xiaoyu Zhu, Elisa Carrillo, Xingzhao Wen, Nathan Drolet, Chetan Singh Rajpurohit, Xiangmin Xu, Dung-Fang Lee, Claudio Soto, Sheng Zhong, Vasanthi Jayaraman, Hui Zheng, Wenbo Li
Faculty, Staff and Student Publications
N6-methyladenosine (m6A) is an abundant internal RNA modification that can impact gene expression at both post-transcriptional and transcriptional levels. However, the landscapes and functions of m6A in human brains and neurodegenerative diseases, including Alzheimer's disease (AD), are under-explored. Here, we examined RNA m6A methylome using total RNA-seq and meRIP-seq in middle frontal cortex of post-mortem brains from individuals with or without AD, which revealed m6A alteration on both mRNAs and various noncoding RNAs. Notably, many promoter-antisense RNAs (paRNAs) displayed cell-type-specific expression and changes in AD, including one produced adjacent to MAPT that encodes the Tau protein. MAPT-paRNA is highly expressed …
Ensemble-Based Binding Free Energy Profiling And Network Analysis Of The Kras Interactions With Darpin Proteins Targeting Distinct Binding Sites: Revealing Molecular Determinants And Universal Architecture Of Regulatory Hotspots And Allosteric Binding, Mohammed Alshahrani, Vedant Parikh, Brandon Foley, Gennady M. Verkhivker
Ensemble-Based Binding Free Energy Profiling And Network Analysis Of The Kras Interactions With Darpin Proteins Targeting Distinct Binding Sites: Revealing Molecular Determinants And Universal Architecture Of Regulatory Hotspots And Allosteric Binding, Mohammed Alshahrani, Vedant Parikh, Brandon Foley, Gennady M. Verkhivker
Mathematics, Physics, and Computer Science Faculty Articles and Research
KRAS is a pivotal oncoprotein that regulates cell proliferation and survival through interactions with downstream effectors such as RAF1. Despite significant advances in understanding KRAS biology, the structural and dynamic mechanisms of KRAS allostery remain poorly understood. In this study, we employ microsecond molecular dynamics simulations, mutational scanning, and binding free energy calculations together with dynamic network modeling to dissect how engineered DARPin proteins K27, K55, K13, and K19 engage KRAS through diverse molecular mechanisms ranging from effector mimicry to conformational restriction and allosteric modulation. Mutational scanning across all four DARPin systems identifies a core set of evolutionarily constrained residues …
Swi/Snf Atpase Silenced Hlf Potentiates Lung Metastasis In Solid Cancers, Jin Zhou, Austin Hepperla, Jeremy M Simon, Kangsan Kim, Qing Hu, Chuanhai Zhang, Lei Dong, Lianxin Hu, Cheng Zhang, Chengheng Liao, Alice Fang, Yayoi Adachi, Haoyong Fu, Tao Wang, Qian Liang, Fangzhou Zhao, Hongyi Liu, Masashi Takeda, Jun Fang, Hua Zhong, Peter Ly, Lu Wang, Payal Kapur, Lin Xu, Liwei Jia, Srinivas Malladi, James Brugarolas, M Celeste Simon, Bo Li, Qing Zhang
Swi/Snf Atpase Silenced Hlf Potentiates Lung Metastasis In Solid Cancers, Jin Zhou, Austin Hepperla, Jeremy M Simon, Kangsan Kim, Qing Hu, Chuanhai Zhang, Lei Dong, Lianxin Hu, Cheng Zhang, Chengheng Liao, Alice Fang, Yayoi Adachi, Haoyong Fu, Tao Wang, Qian Liang, Fangzhou Zhao, Hongyi Liu, Masashi Takeda, Jun Fang, Hua Zhong, Peter Ly, Lu Wang, Payal Kapur, Lin Xu, Liwei Jia, Srinivas Malladi, James Brugarolas, M Celeste Simon, Bo Li, Qing Zhang
Faculty, Staff and Student Publications
Metastasis is the main cause of cancer-related deaths, yet the underlying mechanisms remain elusive. Here, using clear cell renal cell carcinoma (ccRCC), a tumor type with frequent lung metastases, we conduct an in vivo genome-wide CRISPR-Cas9 screen and identify HLF as a potent suppressor of lung metastasis. HLF depletion enhances ccRCC cell migration and lung metastasis, whereas HLF overexpression abrogates these effects. In ccRCC patients, HLF expression is reduced at metastatic sites and associates with epigenetic silencing mediated by the SWI/SNF ATPase subunit BRG1. HLF levels negatively correlate with migration potential in collagen. Mechanistically, HLF regulates LPXN expression, modulating the …
Senescence Caused By Telomerase Inactivation In Myeloid, Mesenchymal, And Endothelial Cells Has Distinct Effects On Cancer Progression, Joseph Rupert, Zhanguo Gao, Yongmei Yu, Mikhail G Kolonin
Senescence Caused By Telomerase Inactivation In Myeloid, Mesenchymal, And Endothelial Cells Has Distinct Effects On Cancer Progression, Joseph Rupert, Zhanguo Gao, Yongmei Yu, Mikhail G Kolonin
Faculty, Staff and Student Publications
The effects of cell senescence in individual cell populations of the tumor microenvironment (TME) on cancer progression remain unclear. Here, we investigated the effects of cell senescence caused by inactivation of the catalytic subunit of telomerase (Tert) in distinct TME components. We generated genetic Tert knockout (KO) mice driven by the LysM promoter in myeloid cells, by the Pdgfra or Pdgfrb promoter in mesenchymal cells, and by the Tie2e promoter in endothelial cells. We compared the effect of the Tert KOs in syngeneic models of orthotopically grafted E0771 breast adenocarcinoma, RM1 prostate adenocarcinoma, and KPC pancreatic adenocarcinoma. Tumors in LysM-Tert …
Omitting Regional Nodal Irradiation After Response To Neoadjuvant Chemotherapy, Eleftherios P Mamounas, Hanna Bandos, Julia R White, Thomas B Julian, Atif J Khan, Simona F Shaitelman, Mylin A Torres, Frank A Vicini, Patricia A Ganz, Susan A Mccloskey, Peter C Lucas, Nilendu Gupta, X Allen Li, Beryl Mccormick, Benjamin Smith, Rahul D Tendulkar, Vivek S Kavadi, Koji Matsumoto, Samantha Andrews Seaward, William J Irvin, Jolinta Y Lin, Robert W Mutter, Thierry M Muanza, Jannifer Stromberg, Reshma Jagsi, Anna C Weiss, Walter J Curran, Norman Wolmark
Omitting Regional Nodal Irradiation After Response To Neoadjuvant Chemotherapy, Eleftherios P Mamounas, Hanna Bandos, Julia R White, Thomas B Julian, Atif J Khan, Simona F Shaitelman, Mylin A Torres, Frank A Vicini, Patricia A Ganz, Susan A Mccloskey, Peter C Lucas, Nilendu Gupta, X Allen Li, Beryl Mccormick, Benjamin Smith, Rahul D Tendulkar, Vivek S Kavadi, Koji Matsumoto, Samantha Andrews Seaward, William J Irvin, Jolinta Y Lin, Robert W Mutter, Thierry M Muanza, Jannifer Stromberg, Reshma Jagsi, Anna C Weiss, Walter J Curran, Norman Wolmark
Faculty, Staff and Student Publications
Background: The benefit of regional nodal irradiation in the treatment of breast cancer is well established for patients with pathologically positive axillary nodes, but whether it is also beneficial for patients whose nodes become pathologically tumor free (ypN0) after neoadjuvant chemotherapy remains unclear.
Methods: We evaluated whether regional nodal irradiation improves outcomes in patients with biopsy-proven, node-positive breast cancer who reach ypN0 status after neoadjuvant chemotherapy. Patients with breast cancer with a clinical stage of T1 to T3 (tumor size, ≤2 cm to >5 cm), N1, and M0 (indicating spread to one to three axillary lymph nodes but no distant …
Kaiso Mediates Transcription And Rna Splicing In Colorectal Carcinoma: Role Of Brca1 In The Kaiso Enhanceosome, Weifeng Luo, Manish Kumar Tripathi, Qi Liu, Lei Chen, Robert W. Cowan, Juliet M. Daniel, Chi Yan, Ann Richmond, Albert B. Reynolds
Kaiso Mediates Transcription And Rna Splicing In Colorectal Carcinoma: Role Of Brca1 In The Kaiso Enhanceosome, Weifeng Luo, Manish Kumar Tripathi, Qi Liu, Lei Chen, Robert W. Cowan, Juliet M. Daniel, Chi Yan, Ann Richmond, Albert B. Reynolds
School of Medicine Publications
Kaiso (ZBTB33) is a transcription factor involved in mitotic clonal expansion and tumorigenesis in association with Adenomatous Polyposis Coli (APC) loss of heterozygosity. ENCODE data show strong overlap of the Kaiso promoter-binding site—encode-derived Kaiso-binding site (eKBS) and many other transcription factors, including BRCA1. Here we sought to determine whether BRCA1 is a component of the Kaiso enhanceosome that regulates gene transcription. Using proximal ligation assays, immunoprecipitation followed by mass spectrometry, luciferase assays and ChIP-seq experiments, we evaluated the association between BRCA1 and Kaiso. Kaiso nuclear extract immunoprecipitation experiments revealed that Kaiso associates strongly with genes involved in RNA splicing and …
Nitrate And Nitrite Levels In Cattle Feed, Drinking Water, Rumen Content, And Blood Methemoglobin Levels In Burdur Province Of Türkiye, Reyda Kiyici, Hasan Altan Akkan, Mehmet Karaca, Esra Zeybek, Bayram Kudret Karaayvaz, Fi̇rdevs Mor Savaş, Yahya Öztürk, Asim Kart, Ramazan Yildiz, Murat Bayezi̇t
Nitrate And Nitrite Levels In Cattle Feed, Drinking Water, Rumen Content, And Blood Methemoglobin Levels In Burdur Province Of Türkiye, Reyda Kiyici, Hasan Altan Akkan, Mehmet Karaca, Esra Zeybek, Bayram Kudret Karaayvaz, Fi̇rdevs Mor Savaş, Yahya Öztürk, Asim Kart, Ramazan Yildiz, Murat Bayezi̇t
Turkish Journal of Veterinary & Animal Sciences
This study was conducted to determine the risk factors associated with nitrate/nitrite poisoning in cattle in the Burdur region. Feed and water samples were collected from 10 different farms randomly selected from 9 districts. A total of 33 feed samples, 13 water samples, 21 rumen contents, and 20 blood samples were collected for analysis. Nitrate and nitrite levels in feed, drinking water, and rumen fluid, as well as methemoglobin levels in blood samples, were determined using a spectrophotometric method. The average nitrate and nitrite levels in feed samples were 3.06 mg/kg and 3.54 mg/kg, respectively. The mean nitrate and nitrite …
Deep Learning Based Rapid X-Ray Fluorescence Signal Extraction And Image Reconstruction For Preclinical Benchtop X-Ray Fluorescence Computed Tomography Applications, Amrit Kaphle, Sandun Jayarathna, Sang Hyun Cho
Deep Learning Based Rapid X-Ray Fluorescence Signal Extraction And Image Reconstruction For Preclinical Benchtop X-Ray Fluorescence Computed Tomography Applications, Amrit Kaphle, Sandun Jayarathna, Sang Hyun Cho
Faculty, Staff and Student Publications
Recent research advances have resulted in an experimental benchtop X-ray fluorescence computed tomography (XFCT) system that likely meets the imaging dose/scan time constraints for benchtop XFCT imaging of live mice injected with gold nanoparticles (GNPs). For routine in vivo benchtop XFCT imaging, however, additional challenges, most notably the need for rapid/near-real-time handling of X-ray fluorescence (XRF) signal extraction and XFCT image reconstruction, must be successfully addressed. Here we propose a novel end-to-end deep learning (DL) framework that integrates a one-dimensional convolutional neural network (1D CNN) for rapid XRF signal extraction with a U-Net model for XFCT image reconstruction. We trained …
Olaparib And Radiotherapy Induce Type I Interferon- And Cd8+ T Cell-Dependent Sensitization To Immunotherapy In Pancreatic Cancer, Victoria M Valvo, Qiang Zhang, Long Jiang, Erin A Holcomb, Ashley N Pearson, Anna G Edmunds, Hailey G Faulkner, Jadyn G James, Akshay Tate, Amanda K Huber, Zhuwen Wang, Yupei Guo, David Karnak, Leslie A Parsels, Joshua D Parsels, Yu L Lei, Alnawaz Rehemtulla, Heng Lin, Eileen S Carpenter, Daniel R Wahl, Vaibhav Sahai, Theodore S Lawrence, Michael D Green, Meredith A Morgan
Olaparib And Radiotherapy Induce Type I Interferon- And Cd8+ T Cell-Dependent Sensitization To Immunotherapy In Pancreatic Cancer, Victoria M Valvo, Qiang Zhang, Long Jiang, Erin A Holcomb, Ashley N Pearson, Anna G Edmunds, Hailey G Faulkner, Jadyn G James, Akshay Tate, Amanda K Huber, Zhuwen Wang, Yupei Guo, David Karnak, Leslie A Parsels, Joshua D Parsels, Yu L Lei, Alnawaz Rehemtulla, Heng Lin, Eileen S Carpenter, Daniel R Wahl, Vaibhav Sahai, Theodore S Lawrence, Michael D Green, Meredith A Morgan
Faculty, Staff and Student Publications
PARP inhibitors sensitize pancreatic ductal adenocarcinoma (PDAC) to radiation by inducing DNA damage and replication stress. These mechanisms also have the potential to enhance radiation-induced type I interferon (T1IFN) mediated anti-tumoral immune responses. We hypothesized that the PARP inhibitor olaparib would also potentiate radiation-induced T1IFN to promote anti-tumor immune responses and sensitization of otherwise resistant PDAC to immunotherapy. To test this hypothesis, we assessed the effects of olaparib and radiation on T1IFN production and sensitivity to αPD-L1 immunotherapy, as well as on the tumor microenvironment by single-cell RNA sequencing (scRNA-seq). We found that olaparib enhanced T1IFN production following radiation and …
Lmp7-Specific Inhibitor M3258 Modulates The Tumor Microenvironment Of Triple-Negative Breast Cancer And Inflammatory Breast Cancer, Xuemei Xie, Jangsoon Lee, Ganiraju C Manyam, Troy Pearson, Gina Walter-Bausch, Manja Friese-Hamim, Sheng Zhao, Julia Jabs, Angela A Manginelli, Nadine Piske, Thomas Mrowiec, Corinna M Wolf, Bharat S Kuntal, Debu Tripathy, Jing Wang, Michael P Sanderson, Naoto T Ueno
Lmp7-Specific Inhibitor M3258 Modulates The Tumor Microenvironment Of Triple-Negative Breast Cancer And Inflammatory Breast Cancer, Xuemei Xie, Jangsoon Lee, Ganiraju C Manyam, Troy Pearson, Gina Walter-Bausch, Manja Friese-Hamim, Sheng Zhao, Julia Jabs, Angela A Manginelli, Nadine Piske, Thomas Mrowiec, Corinna M Wolf, Bharat S Kuntal, Debu Tripathy, Jing Wang, Michael P Sanderson, Naoto T Ueno
Faculty, Staff and Student Publications
Triple-negative breast cancer (TNBC) and inflammatory breast cancer (IBC) are the most aggressive molecular subtypes of breast cancer. Poor clinical outcomes highlight the pressing need to discover novel targets for the effective treatment of these diseases. LMP7 (β5i/PSMB8), a proteolytic subunit of the immunoproteasome, is implicated in the pathogenesis of multiple myeloma, autoimmune and inflammatory diseases, and inflammation-related cancers. However, the role of LMP7 in TNBC and IBC remains poorly characterized. Here, we evaluated the function of LMP7 in TNBC and IBC using the selective LMP7 inhibitor M3258. In human TNBC patient samples, LMP7 expression correlated strongly with CD8+ T …
Eph Receptors Activate Myeloid Checkpoint Receptor Lilrb5 To Support Tumor Development, Yubo He, Chengcheng Zhang, Lingxiao Tan, Mi Deng, Xiaoye Liu, Ryan Huang, Xing Yang, Jingjing Xie, Qi Lou, Meng Fang, Caroline Smith, Samuel John, Wei Xiong, Xin Li, Cheryl Lewis, Jade Homsi, Ankit Gupta, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang
Eph Receptors Activate Myeloid Checkpoint Receptor Lilrb5 To Support Tumor Development, Yubo He, Chengcheng Zhang, Lingxiao Tan, Mi Deng, Xiaoye Liu, Ryan Huang, Xing Yang, Jingjing Xie, Qi Lou, Meng Fang, Caroline Smith, Samuel John, Wei Xiong, Xin Li, Cheryl Lewis, Jade Homsi, Ankit Gupta, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang
Faculty, Staff and Student Publications
Immunosuppressive myeloid cells are critical obstacles to T cell-centered immune checkpoint blockade therapies, which have been successful in treating a fraction of patients with cancer. How tumor cells interact with myeloid cells to regulate immune responses and tumor development is unclear. In this study, we report that certain membrane tyrosine kinase Eph receptors, including EphA7 and EphB1, specifically bind the immune inhibitory receptors leukocyte Ig-like receptor family B 5 (LILRB5) and LILRB2. These Eph receptors induce LILRB5-mediated signaling activation, and LILRB5 also activates Eph receptor signaling. Activation of LILRB5 promoted immunosuppressive marker expression and inhibited activating marker expression on myeloid …
The Present And Future Of Precision Oncology And Tumor-Agnostic Therapeutic Approaches, Nakul M Shah, Funda Meric-Bernstam
The Present And Future Of Precision Oncology And Tumor-Agnostic Therapeutic Approaches, Nakul M Shah, Funda Meric-Bernstam
Faculty, Staff and Student Publications
Precision oncology has transformed the treatment landscape for patients with advanced solid tumors. Tumor-agnostic therapies, those that have been approved based on genetic mutations or biomarkers across tumor histology types, are important examples of how the implementation of precision oncology can expand therapeutic options for patients, especially those with rare cancer types and treatment-refractory disease. In this review, we first discuss how advances in next-generation sequencing and molecular profiling have enabled the identification of shared actionable alterations. Subsequently, we explore the current landscape of tumor-agnostic therapies that have received approval from the Food and Drug Administration. We discuss the strengths …
Deep Learning Based Rapid X-Ray Fluorescence Signal Extraction And Image Reconstruction For Preclinical Benchtop X-Ray Fluorescence Computed Tomography Applications, Amrit Kaphle, Sandun Jayarathna, Sang Hyun Cho
Deep Learning Based Rapid X-Ray Fluorescence Signal Extraction And Image Reconstruction For Preclinical Benchtop X-Ray Fluorescence Computed Tomography Applications, Amrit Kaphle, Sandun Jayarathna, Sang Hyun Cho
Faculty, Staff and Student Publications
Recent research advances have resulted in an experimental benchtop X-ray fluorescence computed tomography (XFCT) system that likely meets the imaging dose/scan time constraints for benchtop XFCT imaging of live mice injected with gold nanoparticles (GNPs). For routine in vivo benchtop XFCT imaging, however, additional challenges, most notably the need for rapid/near-real-time handling of X-ray fluorescence (XRF) signal extraction and XFCT image reconstruction, must be successfully addressed. Here we propose a novel end-to-end deep learning (DL) framework that integrates a one-dimensional convolutional neural network (1D CNN) for rapid XRF signal extraction with a U-Net model for XFCT image reconstruction. We trained …
Mesenchymal Stem Cells And Fibroblasts Contribute To Microvascular Proliferation In Glioblastoma And Are Correlated With Immunosuppression And Poor Outcome, Candice C Poon, Shelley M Herbrich, Yulong Chen, Anwar Hossain, Gregory N Fuller, Sonali Jindal, Sreyashi Basu, Daniel Ledbetter, Marc Macaluso, Lynnette M Phillips, Joy Gumin, Zhong He, Brittany C Parker Kerrigan, Sanjay K Singh, Pratishtha Singh, Mohammed Fayyad Zaman, Derek Ng Tang, Sangeeta Goswami, Frederick F Lang, Padmanee Sharma
Mesenchymal Stem Cells And Fibroblasts Contribute To Microvascular Proliferation In Glioblastoma And Are Correlated With Immunosuppression And Poor Outcome, Candice C Poon, Shelley M Herbrich, Yulong Chen, Anwar Hossain, Gregory N Fuller, Sonali Jindal, Sreyashi Basu, Daniel Ledbetter, Marc Macaluso, Lynnette M Phillips, Joy Gumin, Zhong He, Brittany C Parker Kerrigan, Sanjay K Singh, Pratishtha Singh, Mohammed Fayyad Zaman, Derek Ng Tang, Sangeeta Goswami, Frederick F Lang, Padmanee Sharma
Faculty, Staff and Student Publications
Microvascular proliferation (MVP) is a disease-defining hallmark of glioblastoma and other World Health Organization grade 4 gliomas. MVP also serves as a poor prognostic marker in various solid tumors. Despite its clinical significance, the mechanisms and biological consequences of MVP are controversial and remain unclear. In this study, we performed single-cell RNA sequencing on paired CD45-CD105+ vascular/perivascular stromal cells (PVSC) and CD45+CD105± immune cells from 16 primary glioma patient samples, both with and without MVP. This analysis revealed the presence of developmentally related mesenchymal stem cells alongside cancer-associated fibroblasts, pericytes, fibromyocytes, and smooth muscle cells within the CD45-CD105+ compartment. RNA …
Effect Of In-Season Potentiation And Priming On Jump Height In Collegiate D1 American Football Players, Benjamin Dagostino, Kody Cooke, Paulette Yamada, Trevor Short
Effect Of In-Season Potentiation And Priming On Jump Height In Collegiate D1 American Football Players, Benjamin Dagostino, Kody Cooke, Paulette Yamada, Trevor Short
Topics in Exercise Science and Kinesiology
Neuromuscular priming and post-activation potentiation (PAP) are techniques utilized to increase nervous system excitation, muscle force, and rate of force development during subsequent muscle contractions in sport. PAP is a commonly used approach that has the potential to influence neuromuscular status monitoring and flagging, and optimize power training. Specifically, jump height is an important parameter in athletic performance and assessing inter-limb asymmetries. Thus, the purpose of this paper is to report the effects of different PAP strategies on jump height during a competitive D1 American football season. These findings will inform practitioners on optimal PAP strategies and their implications …