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2,729 full-text articles. Page 93 of 132.

Multifunctionality Of Prostatic Acid Phosphatase In Prostate Cancer Pathogenesis, Evgenia Alpert, Armin Akhavan, Arie Gruzman, William J. Hansen, Joshua Lehrer-Graiwer, Steven C. Hall, Eric Johansen, Sean McAllister, Mittul Gulati, Ming-Fong Lin, Vishwanath R Lingappa 2021 Bioconformatics Laboratory of the California Pacific Medical Center (CPMC) Research Institute

Multifunctionality Of Prostatic Acid Phosphatase In Prostate Cancer Pathogenesis, Evgenia Alpert, Armin Akhavan, Arie Gruzman, William J. Hansen, Joshua Lehrer-Graiwer, Steven C. Hall, Eric Johansen, Sean Mcallister, Mittul Gulati, Ming-Fong Lin, Vishwanath R Lingappa

Journal Articles: Biochemistry & Molecular Biology

The role of human prostatic acid phosphatase (PAcP, P15309|PPAP_HUMAN) in prostate cancer was investigated using a new proteomics tool termed signal sequence swapping (replacement of domains from the native cleaved amino terminal signal sequence of secretory/membrane proteins with corresponding regions of functionally distinct signal sequence subtypes). This manipulation preferentially redirects proteins to different pathways of biogenesis at the endoplasmic reticulum (ER), magnifying normally difficult to detect subsets of the protein of interest. For PAcP, this technique reveals three forms identical in amino acid sequence but profoundly different in physiological functions, subcellular location, and biochemical properties. These three forms of PAcP …


Global Gene Expression Analysis Of Systemic Sclerosis Myofibroblasts Demonstrates A Marked Increase In The Expression Of Multiple Nbpf Genes, Giuseppina Abignano, Heidi Hermes, Sonsoles Piera-Velazquez, Sankar Addya, Francesco Del Galdo, Sergio A. Jimenez 2021 University of Leeds

Global Gene Expression Analysis Of Systemic Sclerosis Myofibroblasts Demonstrates A Marked Increase In The Expression Of Multiple Nbpf Genes, Giuseppina Abignano, Heidi Hermes, Sonsoles Piera-Velazquez, Sankar Addya, Francesco Del Galdo, Sergio A. Jimenez

Kimmel Cancer Center Faculty Papers

Myofibroblasts are the key effector cells responsible for the exaggerated tissue fibrosis in Systemic Sclerosis (SSc). Despite their importance to SSc pathogenesis, the specific transcriptome of SSc myofibroblasts has not been described. The purpose of this study was to identify transcriptome differences between SSc myofibroblasts and non-myofibroblastic cells. Alpha smooth muscle actin (α-SMA) expressing myofibroblasts and α-SMA negative cells were isolated employing laser capture microdissection from dermal cell cultures from four patients with diffuse SSc of recent onset. Total mRNA was extracted from both cell populations, amplified and analyzed employing microarrays. Results for specific genes were validated by Western blots …


Cellular Origins Of Egfr-Driven Lung Cancer Cells Determine Sensitivity To Therapy, Fan Chen, Jinpeng Liu, Robert M. Flight, Kassandra J. Naughton, Alexsandr Lukyanchuk, Abigail R Edgin, Xiulong Song, Haikuo Zhang, Kwok-Kin Wong, Hunter N. B. Moseley, Chi Wang, Christine F. Brainson 2021 University of Kentucky

Cellular Origins Of Egfr-Driven Lung Cancer Cells Determine Sensitivity To Therapy, Fan Chen, Jinpeng Liu, Robert M. Flight, Kassandra J. Naughton, Alexsandr Lukyanchuk, Abigail R Edgin, Xiulong Song, Haikuo Zhang, Kwok-Kin Wong, Hunter N. B. Moseley, Chi Wang, Christine F. Brainson

Toxicology and Cancer Biology Faculty Publications

Targeting the epidermal growth factor receptor (EGFR) with tyrosine kinase inhibitors (TKIs) is one of the major precision medicine treatment options for lung adenocarcinoma. Due to common development of drug resistance to first- and second-generation TKIs, third-generation inhibitors, including osimertinib and rociletinib, have been developed. A model of EGFR-driven lung cancer and a method to develop tumors of distinct epigenetic states through 3D organotypic cultures are described here. It is discovered that activation of the EGFR T790M/L858R mutation in lung epithelial cells can drive lung cancers with alveolar or bronchiolar features, which can originate from alveolar type 2 (AT2) cells …


Advances In Optical Gastrointestinal Endoscopy: A Technical Review, Yubo Tang, Sharmila Anandasabapathy, Rebecca Richards-Kortum 2021 The Texas Medical Center Library

Advances In Optical Gastrointestinal Endoscopy: A Technical Review, Yubo Tang, Sharmila Anandasabapathy, Rebecca Richards-Kortum

Faculty, Staff and Students Publications

Optical endoscopy is the primary diagnostic and therapeutic tool for management of gastrointestinal (GI) malignancies. Most GI neoplasms arise from precancerous lesions; thus, technical innovations to improve detection and diagnosis of precancerous lesions and early cancers play a pivotal role in improving outcomes. Over the last few decades, the field of GI endoscopy has witnessed enormous and focused efforts to develop and translate accurate, user-friendly, and minimally invasive optical imaging modalities. From a technical point of view, a wide range of novel optical techniques is now available to probe different aspects of light-tissue interaction at macroscopic and microscopic scales, complementing …


Identification Of Micrornas And Gene Regulatory Networks In Cleft Lip Common In Humans And Mice, Hiroki Yoshioka, Aimin Li, Akiko Suzuki, Sai Shankar Ramakrishnan, Zhongming Zhao, Junichi Iwata 2021 The Texas Medical Center Library

Identification Of Micrornas And Gene Regulatory Networks In Cleft Lip Common In Humans And Mice, Hiroki Yoshioka, Aimin Li, Akiko Suzuki, Sai Shankar Ramakrishnan, Zhongming Zhao, Junichi Iwata

Faculty, Staff and Student Publications

The etiology of cleft lip with/without cleft palate (CL/P), one of the most frequent craniofacial birth defects worldwide, is complicated by contributions of both genetic and environmental factors. Understanding the etiology of these conditions is essential for developing preventive strategies. This study thus aims to identify regulatory networks of microRNAs (miRNAs), transcriptional factors (TFs) and non-TF genes associated with cleft lip (CL) that are conserved in humans and mice. Notably, we found that miR-27b, miR-133b, miR-205, miR-376b and miR-376c were involved in the regulation of CL-associated gene expression in both humans and mice. Among the candidate miRNAs, the overexpression of …


Comparative Analysis Of Proteomics Biomarkers Associated With Residual Ridge Resorption Induced By Denture Wear, Rohana Ahmad, Ainin Sofia Mohamad Napi, Tong Wah Lim, Su Keng Tan, Saiful Anuar Karsani, Musalmah Mazlan, Lay Kek Teh, Steven M. Morgano, Nadim Z. Baba 2021 Center of Restorative Dentistry Studies, Faculty of Dentistry, Universiti Teknologi MARA, Selangor 47000, Malaysia

Comparative Analysis Of Proteomics Biomarkers Associated With Residual Ridge Resorption Induced By Denture Wear, Rohana Ahmad, Ainin Sofia Mohamad Napi, Tong Wah Lim, Su Keng Tan, Saiful Anuar Karsani, Musalmah Mazlan, Lay Kek Teh, Steven M. Morgano, Nadim Z. Baba

Makara Journal of Health Research

Background: The biochemical bone turnover markers for residual ridge resorption (RRR) are unclear. Therefore, the present study aimed to determine the biochemical bone turnover markers associated with RRR by comparing proteomics between the compressed mucosa of denture wearers and the non-compressed mucosa of non-denture wearers.

Methods: The mucosal specimens of 11 complete-denture wearers were obtained from the alveolar ridge during surgical implant exposure for implant-retained overdentures. All denture wearers had been edentulous and worn dentures for at least 5 years. The tissues of 11 non-denture wearers were taken from the ridge during minor preprosthetic surgery. The mucosal proteins …


Exosomes From Adipose-Derived Stem Cells Alleviate Myocardial Infarction Via Microrna-31/Fih1/Hif-1Α Pathway, Dihan Zhu, Yang Wang, Miracle Thomas, KeAsiah McLaughlin, Babayewa Oguljahan, Joshua Henderson, Qinglin Yang, Y Eugene Chen, Dong Liu 2021 Morehouse School of Medicine

Exosomes From Adipose-Derived Stem Cells Alleviate Myocardial Infarction Via Microrna-31/Fih1/Hif-1Α Pathway, Dihan Zhu, Yang Wang, Miracle Thomas, Keasiah Mclaughlin, Babayewa Oguljahan, Joshua Henderson, Qinglin Yang, Y Eugene Chen, Dong Liu

School of Graduate Studies Faculty Publications

Our previous study has revealed that exosomes from adipose-derived stem cells (ASCs) promote angiogenesis in subcutaneously transplanted gels by delivery of microRNA-31 (miR-31) which targets factor inhibiting hypoxia-inducible factor-1 (FIH1) in recipient cells. Here we hypothesized that ASC exosomes alleviate ischemic diseases through miR-31/FIH1/hypoxia-inducible factor-1α (HIF-1α) signaling pathway. Exosomes from ASCs were characterized with nanoparticle tracking analysis, transmission electron microscopy, and immunoblotting analysis for exosomal markers. Results from immunoblotting and laser imaging of ischemic mouse hindlimb revealed that miR-31 enriched ASC exosomes inhibited FIH1 expression and enhanced the blood perfusion, respectively. These effects were impaired when using miR-31-depleted exosomes. Immunohistochemistry …


The Penn State Protein Ladder System For Inexpensive Protein Molecular Weight Markers, Ryan T Santilli, John E Williamson, Yoshitaka Shibata, Rosalie P Sowers, Andrew N. Fleischman, Song Tan 2021 The Pennsylvania State University

The Penn State Protein Ladder System For Inexpensive Protein Molecular Weight Markers, Ryan T Santilli, John E Williamson, Yoshitaka Shibata, Rosalie P Sowers, Andrew N. Fleischman, Song Tan

Department of Anesthesiology Faculty Papers

We have created the Penn State Protein Ladder system to produce protein molecular weight markers easily and inexpensively (less than a penny a lane). The system includes plasmids which express 10, 15, 20, 30, 40, 50, 60, 80 and 100 kD proteins in E. coli. Each protein migrates appropriately on SDS-PAGE gels, is expressed at very high levels (10–50 mg per liter of culture), is easy to purify via histidine tags and can be detected directly on Western blots via engineered immunoglobulin binding domains. We have also constructed plasmids to express 150 and 250 kD proteins. For more efficient production, …


Gene Expression Profiling Of Mapk Pathway Inhibitor Resistance In Cutaneous Melanoma: Can Bioinformatics Be Used To Select Better Melanoma Cell Lines?, Stephen Luebker 2021 University of Nebraska Medical Center

Gene Expression Profiling Of Mapk Pathway Inhibitor Resistance In Cutaneous Melanoma: Can Bioinformatics Be Used To Select Better Melanoma Cell Lines?, Stephen Luebker

Theses & Dissertations

Melanoma is the deadliest form of skin cancer, and incidence has continued to increase. Half of all melanomas have a BRAF V600E mutation and respond to MAPK pathway inhibitors, including BRAF inhibitor therapy or BRAF/MEK inhibitor combination therapy, but nearly all patients develop treatment resistance. Melanoma cell lines produce variable results as models of MAPK pathway inhibitor resistance. To better understand how the genomic similarity of a melanoma cell line to patient-derived tumors affects resistance mechanisms, differences in DNA mutations and copy-number alterations were compared between melanoma cell lines profiled by the Cancer Cell Line Encyclopedia and cutaneous melanoma tumors …


Molecular Pathogenesis Of A Novel Subgroup Of Peripheral T-Cell Lymphomas, Jiayu Yu 2021 University of Nebraska Medical Center

Molecular Pathogenesis Of A Novel Subgroup Of Peripheral T-Cell Lymphomas, Jiayu Yu

Theses & Dissertations

Peripheral T-cell Lymphoma (PTCL) consists of numerous distinct disease entities. With the current diagnostic criteria over a third of the cases cannot be further classified and are called "not otherwise specified" (PTCL-NOS). Using gene expression profiling (GEP) of tumors, we identified two novels PTCL-NOS molecular subgroups either characterized by high expression of GATA3 (33%), which is associated with Th2 cell differentiation, or high expression of TBX21 (49%) which regulates Th1 cell maturation. Therefore, stratifying patients for diagnosis and identifying the underlying genetic basis to improve clinical therapy becomes critical to prognosis.

First, we performed DNA copy number analysis by using …


Investigations In The Cellular And Molecular Biology Of Human Airway Mucociliary Tissue, Vincent Manna 2021 Rowan University

Investigations In The Cellular And Molecular Biology Of Human Airway Mucociliary Tissue, Vincent Manna

Graduate School of Biomedical Sciences Theses and Dissertations

Our laboratory has integrated the use of a human-derived, in vitro model of airway mucociliary tissue. We isolate human nasal epithelial cells (HNECs) from the nasal mucociliary tissue of donors with a small brush and expand the airway progenitor cells in culture. The HNECs are then seeded onto semi-permeable transwell inserts. The inserts are in contact with the media in the lower chamber but don’t contain media in the upper chamber therefore the cells are exposed to the air while drawing nutrients from the media below, this is called the Air-Liquid Interface (ALI). HNECs cultured at the ALI initiate a …


Vascular Disease Pathogenesis In Smooth Muscle Dysfunction Syndrome And Majewski Osteodysplastic Primordial Dwarfism Type Ii, Jamie Wright 2021 The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences

Vascular Disease Pathogenesis In Smooth Muscle Dysfunction Syndrome And Majewski Osteodysplastic Primordial Dwarfism Type Ii, Jamie Wright

Dissertations and Theses (Open Access)

Vascular diseases are a leading cause of morbidity and mortality world-wide. Understanding their pathogenesis is crucial to better diagnosis and management of these life-threatening conditions. Through the study of rare mutations that lead to early onset and severe vascular diseases, we can elucidate underlying mechanisms for vascular disease pathogenesis and develop better treatments to prevent and manage more common causes of vascular diseases. In this study we look at two rare diseases that lead to severe vascular phenotypes, Smooth Muscle Dysfunction Syndrome (SMDS) and Majewski Osteodysplastic Primordial Dwarfism Type II (MOPDII). SMDS is a rare condition due to pathogenic variants …


Nucleotide P2y₂ Receptor-Dependent Leukocyte-Endothelial Interaction, Spencer E. Thomas 2021 Missouri State University

Nucleotide P2y₂ Receptor-Dependent Leukocyte-Endothelial Interaction, Spencer E. Thomas

Graduate Theses/Dissertations

Extracellular nucleotides (ATP, UTP) released from cells act on nucleotide receptors to promote vascular inflammation. Increased leukocyte-endothelial interaction is a hallmark of vascular inflammation. The nucleotide P2Y₂ receptor (P2Y₂R), activated by extracellular ATP≈UTP, plays a role in cardiovascular homeostasis and immune regulation. Moreover, accumulating evidence from studies in vitro and in vivo models have implicated the P2Y₂R in the inflammatory response significantly contributing to the progression and pathogenesis of asthma, atherosclerosis, sepsis, and ischemia. I hypothesized that P2Y₂R activation by UTP, an agonist of the receptor, increased leukocyte rolling and adhesion in the microvasculature from baseline. To test the hypothesis, …


The Role Of Ifitm3 In The Immune Response Of Brca-Deficient High Grade Serous Ovarian Carcinoma, Han Cun 2021 The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences

The Role Of Ifitm3 In The Immune Response Of Brca-Deficient High Grade Serous Ovarian Carcinoma, Han Cun

Dissertations and Theses (Open Access)

Background: Prior studies showed that BRCA-deficient high grade serous ovarian carcinoma (HGSOC) had increased tumor infiltrating lymphocytes (TILs) compared to BRCA-wildtype (WT). To better understand the underlying immune mechanism in these tumors, a preliminary transcriptome analysis was performed on a set of microdissected HGSOC tumor specimens with BRCA1-mutation, BRCA2-mutation, or WT. This demonstrated an upregulation of IFITM3, an essential gene in modulating immune function. Based on these findings, we hypothesized that BRCA-deficient HGSOC have increased DNA damage leading to upregulation of IFITM3 and subsequent increase in antigen presentation and T-cell activation.

Methods: Following IRB approval, preliminary transcriptome analysis was performed …


Autophagy Regulation By Lipid Factors With Implications For Parkinson's Disease, Alejandro Soto-Avellaneda 2021 Boise State University

Autophagy Regulation By Lipid Factors With Implications For Parkinson's Disease, Alejandro Soto-Avellaneda

Boise State University Theses and Dissertations

Parkinson’s disease is the second most common neurodegenerative disorder. It is characterized by the death of dopaminergic neurons in the substantia nigra and a series of debilitating motor symptoms. Macroautophagy (hereafter referred to as autophagy) is a cellular process by which cells degrade proteins, lipids, organelles or dysfunctional components. Autophagy is thought to play an important role in Parkinson’s disease, because it is the only cellular process known to remove large protein aggregates, such as those seen in Parkinson’s disease pathology. Historically, a large body of work has focused on reporting on protein effectors of autophagy, and regulation of autophagy …


Dna Polymerase Θ: A Cancer Drug Target With Reverse Transcriptase Activity, Xiaojiang Chen, Richard T. Pomerantz 2021 University of Southern California, Los Angeles

Dna Polymerase Θ: A Cancer Drug Target With Reverse Transcriptase Activity, Xiaojiang Chen, Richard T. Pomerantz

Department of Biochemistry and Molecular Biology Faculty Papers

The emergence of precision medicine from the development of Poly (ADP‐ribose) polymerase (PARP) inhibitors that preferentially kill cells defective in homologous recombination has sparked wide interest in identifying and characterizing additional DNA repair enzymes that are synthetic lethal with HR factors. DNA polymerase theta (Polθ) is a validated anti‐cancer drug target that is synthetic lethal with HR factors and other DNA repair proteins and confers cellular resistance to various genotoxic cancer therapies. Since its initial characterization as a helicase‐polymerase fusion protein in 2003, many exciting and unexpected activities of Polθ in microhomology‐mediated end‐joining (MMEJ) and translesion synthesis (TLS) have been …


Characterization Of Hnrnpa1 Mutations Defines Diversity In Pathogenic Mechanisms And Clinical Presentation., Danique Beijer, Hong Joo Kim, Lin Guo, Kevin O'Donovan, Inès Mademan, Tine Deconinck, Kristof Van Schil, Charlotte M Fare, Lauren E Drake, Alice F Ford, Andrzej Kochański, Dagmara Kabzińska, Nicolas Dubuisson, Peter Van den Bergh, Nicol C Voermans, Richard Jlf Lemmers, Silvère M van der Maarel, Devon Bonner, Jacinda B Sampson, Matthew T Wheeler, Anahit Mehrabyan, Steven Palmer, Peter De Jonghe, James Shorter, J Paul Taylor, Jonathan Baets 2021 Translational Neurosciences, Faculty of Medicine and Health Sciences, and Laboratory for Neuromuscular Pathology, Institute Born-Bunge, University of Antwerp, Wilrijk, Belgium

Characterization Of Hnrnpa1 Mutations Defines Diversity In Pathogenic Mechanisms And Clinical Presentation., Danique Beijer, Hong Joo Kim, Lin Guo, Kevin O'Donovan, Inès Mademan, Tine Deconinck, Kristof Van Schil, Charlotte M Fare, Lauren E Drake, Alice F Ford, Andrzej Kochański, Dagmara Kabzińska, Nicolas Dubuisson, Peter Van Den Bergh, Nicol C Voermans, Richard Jlf Lemmers, Silvère M Van Der Maarel, Devon Bonner, Jacinda B Sampson, Matthew T Wheeler, Anahit Mehrabyan, Steven Palmer, Peter De Jonghe, James Shorter, J Paul Taylor, Jonathan Baets

Department of Biochemistry and Molecular Biology Faculty Papers

Mutations in HNRNPA1 encoding heterogeneous nuclear ribonucleoprotein (hnRNP) A1 are a rare cause of amyotrophic lateral sclerosis (ALS) and multisystem proteinopathy (MSP). hnRNPA1 is part of the group of RNA-binding proteins (RBPs) that assemble with RNA to form RNPs. hnRNPs are concentrated in the nucleus and function in pre-mRNA splicing, mRNA stability, and the regulation of transcription and translation. During stress, hnRNPs, mRNA, and other RBPs condense in the cytoplasm to form stress granules (SGs). SGs are implicated in the pathogenesis of (neuro-)degenerative diseases, including ALS and inclusion body myopathy (IBM). Mutations in RBPs that affect SG biology, including FUS, …


Platelet And Erythrocyte Extravasation Across Inflamed Corneal Venules Depend On Cd18, Neutrophils, And Mast Cell Degranulation, Angie De La Cruz, Aubrey Hargrave, Sri Magadi, Justin A Courson, Paul T Landry, Wanyu Zhang, Fong W Lam, Monica A Bray, C Wayne Smith, Alan R Burns, Rolando E Rumbaut 2021 The Texas Medical Center Library

Platelet And Erythrocyte Extravasation Across Inflamed Corneal Venules Depend On Cd18, Neutrophils, And Mast Cell Degranulation, Angie De La Cruz, Aubrey Hargrave, Sri Magadi, Justin A Courson, Paul T Landry, Wanyu Zhang, Fong W Lam, Monica A Bray, C Wayne Smith, Alan R Burns, Rolando E Rumbaut

Faculty, Staff and Student Publications

Platelet extravasation during inflammation is under-appreciated. In wild-type (WT) mice, a central corneal epithelial abrasion initiates neutrophil (PMN) and platelet extravasation from peripheral limbal venules. The same injury in mice expressing low levels of the β2-integrin, CD18 (CD18hypo mice) shows reduced platelet extravasation with PMN extravasation apparently unaffected. To better define the role of CD18 on platelet extravasation, we focused on two relevant cell types expressing CD18: PMNs and mast cells. Following corneal abrasion in WT mice, we observed not only extravasated PMNs and platelets but also extravasated erythrocytes (RBCs). Ultrastructural observations of engorged limbal venules showed platelets and RBCs …


Analysis Of The Dna-Binding Properties Of Alx1, An Evolutionarily Conserved Regulator Of Skeletogenesis In Echinoderms, Jennifer Guerrero-Santoro, Jian Ming Khor, Ayşe Haruka Açıkbaş, James B. Jaynes, Charles A Ettensohn 2021 Carnegie Mellon University

Analysis Of The Dna-Binding Properties Of Alx1, An Evolutionarily Conserved Regulator Of Skeletogenesis In Echinoderms, Jennifer Guerrero-Santoro, Jian Ming Khor, Ayşe Haruka Açıkbaş, James B. Jaynes, Charles A Ettensohn

Department of Biochemistry and Molecular Biology Faculty Papers

Alx1, a homeodomain-containing transcription factor, is a highly conserved regulator of skeletogenesis in echinoderms. In sea urchins, Alx1 plays a central role in the differentiation of embryonic primary mesenchyme cells (PMCs) and positively regulates the transcription of most biomineralization genes expressed by these cells. The alx1 gene arose via duplication and acquired a skeletogenic function distinct from its paralog (alx4) through the exonization of a 41-amino acid motif (the D2 domain). Alx1 and Alx4 contain glutamine-50 paired-type homeodomains, which interact preferentially with palindromic binding sites in vitro. Chromatin immunoprecipitation sequencing (ChIP-seq) studies have shown, however, that Alx1 binds both to …


Polθ Reverse Transcribes Rna And Promotes Rna-Templated Dna Repair, Gurushankar Chandramouly, Jiemin Zhao, Shane McDevitt, Timur Rusanov, Trung Hoang, Nikita Borisonnik, Taylor Treddinick, Felicia Wednesday Lopezcolorado, Tatiana Kent, Labiba Siddique, Joseph Mallon, Jacklyn Huhn, Zainab Shoda, Ekaterina Kashkina, Alessandra Brambati, Jeremy M Stark, Xiaojiang S Chen, Richard Pomerantz 2021 Thomas Jefferson University

Polθ Reverse Transcribes Rna And Promotes Rna-Templated Dna Repair, Gurushankar Chandramouly, Jiemin Zhao, Shane Mcdevitt, Timur Rusanov, Trung Hoang, Nikita Borisonnik, Taylor Treddinick, Felicia Wednesday Lopezcolorado, Tatiana Kent, Labiba Siddique, Joseph Mallon, Jacklyn Huhn, Zainab Shoda, Ekaterina Kashkina, Alessandra Brambati, Jeremy M Stark, Xiaojiang S Chen, Richard Pomerantz

Department of Biochemistry and Molecular Biology Faculty Papers

Genome-embedded ribonucleotides arrest replicative DNA polymerases (Pols) and cause DNA breaks. Whether mammalian DNA repair Pols efficiently use template ribonucleotides and promote RNA-templated DNA repair synthesis remains unknown. We find that human Polθ reverse transcribes RNA, similar to retroviral reverse transcriptases (RTs). Polθ exhibits a significantly higher velocity and fidelity of deoxyribonucleotide incorporation on RNA versus DNA. The 3.2-Å crystal structure of Polθ on a DNA/RNA primer-template with bound deoxyribonucleotide reveals that the enzyme undergoes a major structural transformation within the thumb subdomain to accommodate A-form DNA/RNA and forms multiple hydrogen bonds with template ribose 2'-hydroxyl groups like retroviral RTs. …


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