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Differential Gene Expression-Based Connectivity Mapping Identified Novel Drug Candidate And Improved Temozolomide Efficacy For Glioblastoma, Raghupathy Vengoji, Pranita Atri, Muzafar A. Macha, Parthasarathy Seshacharyulu, Naveenkumar Perumal, Kavita Mallya, Yutong Liu, Lynette M. Smith, Satyanarayana Rachagani, Sidharth Mahapatra, Moorthy P. Ponnusamy, Maneesh Jain, Surinder K. Batra, Nicole Shonka 2021 University of Nebraska Medical Center

Differential Gene Expression-Based Connectivity Mapping Identified Novel Drug Candidate And Improved Temozolomide Efficacy For Glioblastoma, Raghupathy Vengoji, Pranita Atri, Muzafar A. Macha, Parthasarathy Seshacharyulu, Naveenkumar Perumal, Kavita Mallya, Yutong Liu, Lynette M. Smith, Satyanarayana Rachagani, Sidharth Mahapatra, Moorthy P. Ponnusamy, Maneesh Jain, Surinder K. Batra, Nicole Shonka

Journal Articles: Biochemistry & Molecular Biology

BACKGROUND: Glioblastoma (GBM) has a devastating median survival of only one year. Treatment includes resection, radiation therapy, and temozolomide (TMZ); however, the latter increased median survival by only 2.5 months in the pivotal study. A desperate need remains to find an effective treatment.

METHODS: We used the Connectivity Map (CMap) bioinformatic tool to identify candidates for repurposing based on GBM's specific genetic profile. CMap identified histone deacetylase (HDAC) inhibitors as top candidates. In addition, Gene Expression Profiling Interactive Analysis (GEPIA) identified HDAC1 and HDAC2 as the most upregulated and HDAC11 as the most downregulated HDACs. We selected PCI-24781/abexinostat due to …


Effect Of Cbd On D2 Dopamine Receptor And Cb1 Cannabinoid Receptor Function And Localization, Elizabeth Dull 2021 Eastern Kentucky University

Effect Of Cbd On D2 Dopamine Receptor And Cb1 Cannabinoid Receptor Function And Localization, Elizabeth Dull

Online Theses and Dissertations

Cannabidiol (CBD) is the second most abundant cannabinoid found in Cannabis sativa and its array of therapeutic effects make it a popular target of pharmacological research. Though its properties are psychoactive in nature, abuse and dependence of CBD has never been reported. Its beneficial side effects are mediated through the endocannabinoid system (ECS), as it functions as an antagonist at cannabinoid receptor 1 (CB1). However, recent evidence suggests that CBD may also be a CB1 negative allosteric modulator of (−)-trans-Δ9-tetrahydrocannabinol (Δ9-THC). Interestingly, the ECS is linked to the main circuit thought to modulate reward signaling when taking substances of abuse, …


The Current Landscape Of Antibody-Based Therapies In Solid Malignancies, Ashu Shah, Sanchita Rauth, Abhijit Aithal, Sukhwinder Kaur, Koelina Ganguly, Catherine Orzechowski, Grish C. Varshney, Maneesh Jain, Surinder K. Batra 2021 University of Nebraska Medical Center

The Current Landscape Of Antibody-Based Therapies In Solid Malignancies, Ashu Shah, Sanchita Rauth, Abhijit Aithal, Sukhwinder Kaur, Koelina Ganguly, Catherine Orzechowski, Grish C. Varshney, Maneesh Jain, Surinder K. Batra

Journal Articles: Biochemistry & Molecular Biology

Over the past three decades, monoclonal antibodies (mAbs) have revolutionized the landscape of cancer therapy. Still, this benefit remains restricted to a small proportion of patients due to moderate response rates and resistance emergence. The field has started to embrace better mAb-based formats with advancements in molecular and protein engineering technologies. The development of a therapeutic mAb with long-lasting clinical impact demands a prodigious understanding of target antigen, effective mechanism of action, gene engineering technologies, complex interplay between tumor and host immune system, and biomarkers for prediction of clinical response. This review discusses the various approaches used by mAbs for …


Repurposing Niclosamide For Targeting Pancreatic Cancer By Inhibiting Hh/Gli Non-Canonical Axis Of Gsk3Β, Jyoti B. Kaushal, Rakesh Bhatia, Ranjana K. Kanchan, Pratima Raut, Surya Mallapragada, Quan P. Ly, Surinder K. Batra, Satyanarayana Rachagani 2021 University of Nebraska Medical Center

Repurposing Niclosamide For Targeting Pancreatic Cancer By Inhibiting Hh/Gli Non-Canonical Axis Of Gsk3Β, Jyoti B. Kaushal, Rakesh Bhatia, Ranjana K. Kanchan, Pratima Raut, Surya Mallapragada, Quan P. Ly, Surinder K. Batra, Satyanarayana Rachagani

Journal Articles: Biochemistry & Molecular Biology

Niclosamide (Nic), an FDA-approved anthelmintic drug, is reported to have anti-cancer efficacy and is being assessed in clinical trials for various solid tumors. Based on its ability to target multiple signaling pathways, in the present study, we evaluated the therapeutic efficacy of Nic on pancreatic cancer (PC) in vitro. We observed an anti-cancerous effect of this drug as shown by the G0/G1 phase cell cycle arrest, inhibition of PC cell viability, colony formation, and migration. Our results revealed the involvement of mitochondrial stress and mTORC1-dependent autophagy as the predominant players of Nic-induced PC cell death. Significant reduction of Nic-induced reactive …


Emerging Role Of Mir-345 And Its Effective Delivery As A Potential Therapeutic Candidate In Pancreatic Cancer And Other Cancers, Nagabhishek Sirpu Natesh, Brianna M. White, Maia M. C. White, Metin Uz, Rakhee Rathnam Kalari Kandy, Surinder K. Batra, Surya K. Mallapragada, Satyanarayana Rachagani 2021 University of Nebraska Medical Center

Emerging Role Of Mir-345 And Its Effective Delivery As A Potential Therapeutic Candidate In Pancreatic Cancer And Other Cancers, Nagabhishek Sirpu Natesh, Brianna M. White, Maia M. C. White, Metin Uz, Rakhee Rathnam Kalari Kandy, Surinder K. Batra, Surya K. Mallapragada, Satyanarayana Rachagani

Journal Articles: Biochemistry & Molecular Biology

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive malignancy with high mortality, poor prognosis, and palliative treatments, due to the rapid upregulation of alternative compensatory pathways and desmoplastic reaction. miRNAs, small non-coding RNAs, have been recently identified as key players regulating cancer pathogenesis. Dysregulated miRNAs are associated with molecular pathways involved in tumor development, metastasis, and chemoresistance in PDAC, as well as other cancers. Targeted treatment strategies that alter miRNA levels in cancers have promising potential as therapeutic interventions. miRNA-345 (miR-345) plays a critical role in tumor suppression and is differentially expressed in various cancers, including pancreatic cancer (PC). The underlying …


Dynamic Phenotypic Switching And Group Behavior Help Non-Small Cell Lung Cancer Cells Evade Chemotherapy, Arin Nam, Atish Mohanty, Supriyo Bhattacharya, Sourabh Kotnala, Srisairam Achuthan, Kishore Hari, Saumya Srivastava, Linlin Guo, Anusha Nathan, Rishov Chatterjee, Maneesh Jain, Mohd W. Nasser, Surinder K. Batra, Govindan Rangarajan, Erminia Massarelli, Herbert Levine, Mohit Kumar Jolly, Prakash Kulkarni, Ravi Salgia 2021 City of Hope National Medical Center

Dynamic Phenotypic Switching And Group Behavior Help Non-Small Cell Lung Cancer Cells Evade Chemotherapy, Arin Nam, Atish Mohanty, Supriyo Bhattacharya, Sourabh Kotnala, Srisairam Achuthan, Kishore Hari, Saumya Srivastava, Linlin Guo, Anusha Nathan, Rishov Chatterjee, Maneesh Jain, Mohd W. Nasser, Surinder K. Batra, Govindan Rangarajan, Erminia Massarelli, Herbert Levine, Mohit Kumar Jolly, Prakash Kulkarni, Ravi Salgia

Journal Articles: Biochemistry & Molecular Biology

Drug resistance, a major challenge in cancer therapy, is typically attributed to mutations and genetic heterogeneity. Emerging evidence suggests that dynamic cellular interactions and group behavior also contribute to drug resistance. However, the underlying mechanisms remain poorly understood. Here, we present a new mathematical approach with game theoretical underpinnings that we developed to model real-time growth data of non-small cell lung cancer (NSCLC) cells and discern patterns in response to treatment with cisplatin. We show that the cisplatin-sensitive and cisplatin-tolerant NSCLC cells, when co-cultured in the absence or presence of the drug, display dynamic group behavior strategies. Tolerant cells exhibit …


Novel Mechanistic Insights Towards The Repositioning Of Alogliptin In Parkinson's Disease, Eman Ramadan, marwa M. Safar 2021 The British University in Egypt

Novel Mechanistic Insights Towards The Repositioning Of Alogliptin In Parkinson's Disease, Eman Ramadan, Marwa M. Safar

Pharmacy

Parkinson's disease (PD) is a progressive neurodegenerative disease that impairs people's lives tremendously. The development of innovative treatment modalities for PD is a significant unmet medical need. The critical function of glucagon-like peptide-1 (GLP-1) in neurodegenerative diseases has raised impetus in investigating the repositioning of a dipeptidyl peptidase IV inhibitor, alogliptin (ALO), as an effective treatment for PD. As a result, the focus of this research was to assess the effect of ALO in a rat rotenone (ROT) model of PD. For 21 days, ROT (1.5 mg/kg) was delivered subcutaneously every other day. ALO (30 mg/kg/day), delivered by gavage for …


A Biochemical Characterization Of The Fusion Proteins From Enveloped Rna Viruses, Chelsea T. Barrett 2021 University of Kentucky

A Biochemical Characterization Of The Fusion Proteins From Enveloped Rna Viruses, Chelsea T. Barrett

Theses and Dissertations--Molecular and Cellular Biochemistry

Enveloped viruses must bind target cells and then fuse the viral membrane with a cell membrane to enter a host cell. These viruses use one or more surface glycoproteins to carry out these critical functions. The surface glycoprotein that carries out the fusion function, termed a fusion protein, is divided into three classes based on structural similarities. Some of the most studied human viral pathogens, such as human immunodeficiency virus (HIV), Ebola virus, influenza, measles, and the recently emerged severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), possess class I fusion proteins. Following synthesis, class I fusion proteins associate as non-covalently …


Cloning And Functional Characterizations Of Circular Rnas From The Human Mapt Locus, Justin R. Welden 2021 University of Kentucky

Cloning And Functional Characterizations Of Circular Rnas From The Human Mapt Locus, Justin R. Welden

Theses and Dissertations--Molecular and Cellular Biochemistry

Under pathophysiological conditions, the microtubule protein tau (MAPT) forms neurofibrillary tangles that are the hallmark of sporadic Alzheimer’s disease as well as familial frontotemporal dementias linked to chromosome 17 (FTDP-17). In this work, I report that MAPT forms circular RNAs through backsplicing of exon 12 to either exon 10 or exon 7 (12→10; 12→7), and that these circular RNAs are translated into proteins.

Using stable cell lines overexpressing the circular tau RNAs 12→7 and 12→10, we have discovered that the tau circular RNA 12→7 is translated in a rolling circle, giving rise to multiple proteins. This circular RNA …


Pre-Clinical Advancements In Biomarkers, Tools, And Therapeutics For A Metabolic Neurodegenerative Disease, Zoë Simmons 2021 University of Kentucky

Pre-Clinical Advancements In Biomarkers, Tools, And Therapeutics For A Metabolic Neurodegenerative Disease, Zoë Simmons

Theses and Dissertations--Molecular and Cellular Biochemistry

Glycogen is the storage form of glucose and a highly important substrate for cellular metabolism. Characterization of the enzymes and mechanisms of glycogen metabolism began over 70 years ago and over the last 20 years, a previously unknown protein called laforin has emerged as an important contributor to glycogen metabolism homeostasis. Multiple labs demonstrated that laforin is a glycogen phosphatase and mutations in the gene encoding laforin cause the formation of aberrant glycogen-like aggregates called Lafora bodies (LBs). LBs are cytoplasmic, water-insoluble aggregates that drive neurodegeneration and early death in Lafora disease (LD) patients. The direct relationship between mutated laforin, …


Evaluation Of Somatic Mutations In Solid Metastatic Pan-Cancer Patients, Moom R. Roosan, Isa Mambetsariev, Rebecca Pharaon, Jeremy Fricke, Angel R. Baroz, Joseph Chao, Chen Chen, Mohd W. Nasser, Ramakanth C. Venkata, Maneesh Jain, Lynette M. Smith, Susan E. Yost, Karen L. Reckamp, Raju Pillai, Leonidas Arvanitis, Michelle Afkhami, Edward W. Wang, Vincent Chung, Mihaela Cristea, Marwan Fakih, Marianna Koczywas, Erminia Massarelli, Joanne Mortimer, Yuan Yuan, Surinder K. Batra, Sumanta Pal, Ravi Salgia 2021 Chapman University

Evaluation Of Somatic Mutations In Solid Metastatic Pan-Cancer Patients, Moom R. Roosan, Isa Mambetsariev, Rebecca Pharaon, Jeremy Fricke, Angel R. Baroz, Joseph Chao, Chen Chen, Mohd W. Nasser, Ramakanth C. Venkata, Maneesh Jain, Lynette M. Smith, Susan E. Yost, Karen L. Reckamp, Raju Pillai, Leonidas Arvanitis, Michelle Afkhami, Edward W. Wang, Vincent Chung, Mihaela Cristea, Marwan Fakih, Marianna Koczywas, Erminia Massarelli, Joanne Mortimer, Yuan Yuan, Surinder K. Batra, Sumanta Pal, Ravi Salgia

Journal Articles: Biochemistry & Molecular Biology

Metastasis continues to be the primary cause of all cancer-related deaths despite the recent advancements in cancer treatments. To evaluate the role of mutations in overall survival (OS) and treatment outcomes, we analyzed 957 metastatic patients with seven major cancer types who had available molecular testing results with a FoundationOne CDx® panel. The most prevalent genes with somatic mutations were TP53, KRAS, APC, and LRP1B. In this analysis, these genes had mutation frequencies higher than in publicly available datasets. We identified that the somatic mutations were seven mutually exclusive gene pairs and an additional fifty-two co-occurring gene pairs. Mutations …


Disruption Of Fdps/Rac1 Axis Radiosensitizes Pancreatic Ductal Adenocarcinoma By Attenuating Dna Damage Response And Immunosuppressive Signalling, Parthasarathy Seshacharyulu, Sushanta Halder, Rama Krishna Nimmakayala, Satyanarayana Rachagani, Sanjib Chaudhary, Pranita Atri, Ramakanth C. Venkata, Michel M. Ouellette, Joseph Carmicheal, Shailendra K. Gautam, Raghupathy Vengoji, Shuo Wang, Sicong Li, Lynette M. Smith, Geoffrey A. Talmon, Kelsey Klute, Quan P. Ly, Bradley N. Reames, Jean L. Grem, Lyudmyla Berim, James C. Padussis, Sukhwinder Kaur, Sushil Kumar, Moorthy P. Ponnusamy, Maneesh Jain, Chi Lin, Surinder K. Batra 2021 University of Nebraska Medical Center

Disruption Of Fdps/Rac1 Axis Radiosensitizes Pancreatic Ductal Adenocarcinoma By Attenuating Dna Damage Response And Immunosuppressive Signalling, Parthasarathy Seshacharyulu, Sushanta Halder, Rama Krishna Nimmakayala, Satyanarayana Rachagani, Sanjib Chaudhary, Pranita Atri, Ramakanth C. Venkata, Michel M. Ouellette, Joseph Carmicheal, Shailendra K. Gautam, Raghupathy Vengoji, Shuo Wang, Sicong Li, Lynette M. Smith, Geoffrey A. Talmon, Kelsey Klute, Quan P. Ly, Bradley N. Reames, Jean L. Grem, Lyudmyla Berim, James C. Padussis, Sukhwinder Kaur, Sushil Kumar, Moorthy P. Ponnusamy, Maneesh Jain, Chi Lin, Surinder K. Batra

Journal Articles: Biochemistry & Molecular Biology

BACKGROUND: Radiation therapy (RT) has a suboptimal effect in patients with pancreatic ductal adenocarcinoma (PDAC) due to intrinsic and acquired radioresistance (RR). Comprehensive bioinformatics and microarray analysis revealed that cholesterol biosynthesis (CBS) is involved in the RR of PDAC. We now tested the inhibition of the CBS pathway enzyme, farnesyl diphosphate synthase (FDPS), by zoledronic acid (Zol) to enhance radiation and activate immune cells.

METHODS: We investigated the role of FDPS in PDAC RR using the following methods: in vitro cell-based assay, immunohistochemistry, immunofluorescence, immunoblot, cell-based cholesterol assay, RNA sequencing, tumouroids (KPC-murine and PDAC patient-derived), orthotopic models, and PDAC patient's …


Radiation Induces Metabolic Dysregulation In Pulmonary Fibroblasts, Josly Pierre-Louis, Margaret A. T. Freeberg, Jane K. Rebman, Thomas H. Thatcher, Patricia J. Sime 2021 Virginia Commonwealth University

Radiation Induces Metabolic Dysregulation In Pulmonary Fibroblasts, Josly Pierre-Louis, Margaret A. T. Freeberg, Jane K. Rebman, Thomas H. Thatcher, Patricia J. Sime

Graduate Research Posters

Rationale: Exposure of the lung to ionizing radiation, such as during radiotherapy, can result in pulmonary fibrosis (PF), which has few treatment options. PF is characterized by an accumulation of extracellular matrix proteins that form scar tissue, resulting in dyspnea, disruption of gas exchange, and even death. We and others have shown that metabolic reprogramming is a hallmark of idiopathic pulmonary fibrosis (IPF). IPF lung tissue, and lung fibroblasts treated with TGF-β, exhibit increased aerobic glycolysis with increased expression of lactate dehydrogenase A (LDHA) and excess production of lactate, leading to reduced extracellular pH that activates latent TGF-β. Here, we …


Conservation Of Epithelial-To-Mesenchymal Transition Process In Neural Crest Cells And Metastatic Cancer, April Zhang, Hira Aslam, Neha Sharma, Aryeh Warmflash, Walid D Fakhouri 2021 The Texas Medical Center Library

Conservation Of Epithelial-To-Mesenchymal Transition Process In Neural Crest Cells And Metastatic Cancer, April Zhang, Hira Aslam, Neha Sharma, Aryeh Warmflash, Walid D Fakhouri

Faculty, Staff and Student Publications

Epithelial to mesenchymal transition (EMT) is a highly conserved cellular process in several species, from worms to humans. EMT plays a fundamental role in early embryogenesis, wound healing, and cancer metastasis. For neural crest cell (NCC) development, EMT typically results in forming a migratory and potent cell population that generates a wide variety of cell and tissue, including cartilage, bone, connective tissue, endocrine cells, neurons, and glia amongst many others. The degree of conservation between the signaling pathways that regulate EMT during development and metastatic cancer (MC) has not been fully established, despite ample studies. This systematic review and meta-analysis …


Comparison Of Circulating Tumour Dna And Extracellular Vesicle Dna By Low-Pass Whole-Genome Sequencing Reveals Molecular Drivers Of Disease In A Breast Cancer Patient, Olivia Ruhen, Bob Mirzai, Michael E. Clark, Bella Nguyen, Carlos Salomon, Wendy Erber, Katie Meehan 2021 Edith Cowan University

Comparison Of Circulating Tumour Dna And Extracellular Vesicle Dna By Low-Pass Whole-Genome Sequencing Reveals Molecular Drivers Of Disease In A Breast Cancer Patient, Olivia Ruhen, Bob Mirzai, Michael E. Clark, Bella Nguyen, Carlos Salomon, Wendy Erber, Katie Meehan

Research outputs 2014 to 2021

© 2020 by the authors. Licensee MDPI, Basel, Switzerland. There is increasing recognition of circulating tumour DNA (ctDNA) as a non-invasive alternative to tumour tissue for the molecular characterisation and monitoring of disease. Recent evidence suggests that cancer-associated changes can also be detected in the DNA contained within extracellular vesicles (EVs). As yet, there has been limited investigation into the relationship between EV DNA and ctDNA, and no studies have examined the EV DNA of breast cancer patients. The aim of this study was to use low-pass whole-genome sequencing to identify copy number variants (CNVs) in serial samples of both …


The E3 Ligase Traf4 Promotes Igf Signaling By Mediating Atypical Ubiquitination Of Irs-1, Wenjuan Yu, Ramesh Singh, Zhao Wang, Bert W O'Malley, Ping Yi 2021 The Texas Medical Center Library

The E3 Ligase Traf4 Promotes Igf Signaling By Mediating Atypical Ubiquitination Of Irs-1, Wenjuan Yu, Ramesh Singh, Zhao Wang, Bert W O'Malley, Ping Yi

Faculty, Staff and Students Publications

Insulin-like growth factor (IGF) is a potent mitogen that activates the IGF receptor (IGFR)/insulin receptor substrate (IRS) axis, thus stimulating growth in normal cells and uncontrolled cell proliferation in cancer. Posttranslational modifications of IRS such as ubiquitination tightly control IGF signaling, and we previously identified IRS-1 as a potential substrate for the E3 ubiquitin ligase TRAF4 using an unbiased screen. Here we provide evidence that TRAF4-mediated ubiquitination of IRS-1 is physiologically relevant and crucial for IGF signal transduction. Through site-directed mutagenesis we found that TRAF4 promotes an atypical K29-linked ubiquitination at the C-terminal end of IRS-1. Its depletion abolishes AKT …


Lrrtm4 Is A Member Of The Transsynaptic Complex Between Rod Photoreceptors And Bipolar Cells, Melina A Agosto, Theodore G Wensel 2021 The Texas Medical Center Library

Lrrtm4 Is A Member Of The Transsynaptic Complex Between Rod Photoreceptors And Bipolar Cells, Melina A Agosto, Theodore G Wensel

Faculty, Staff and Students Publications

Leucine rich repeat transmembrane (LRRTM) proteins are synaptic adhesion molecules with roles in synapse formation and signaling. LRRTM4 transcripts were previously shown to be enriched in rod bipolar cells (BCs), secondary neurons of the retina that form synapses with rod photoreceptors. Using two different antibodies, LRRTM4 was found to reside primarily at rod BC dendritic tips, where it colocalized with the transduction channel protein, TRPM1. LRRTM4 was not detected at dendritic tips of ON-cone BCs. Following somatic knockout of LRRTM4 in BCs by subretinal injection and electroporation of CRISPR/Cas9, LRRTM4 was abolished or reduced in the dendritic tips of transfected …


Trypanosoma Cruzi Modulates Piwi-Interacting Rna Expression In Primary Human Cardiac Myocytes During The Early Phase Of Infection, Kayla J. Rayford, Ayorinde Cooley, Ashutosh Arun, Girish Rachakonda, Yulia Kleschenko, Fernando Villalta, Siddharth Pratap, Maria F. Lima, Pius N. Nde 2020 Meharry Medical College

Trypanosoma Cruzi Modulates Piwi-Interacting Rna Expression In Primary Human Cardiac Myocytes During The Early Phase Of Infection, Kayla J. Rayford, Ayorinde Cooley, Ashutosh Arun, Girish Rachakonda, Yulia Kleschenko, Fernando Villalta, Siddharth Pratap, Maria F. Lima, Pius N. Nde

Publications and Research

Trypanosoma cruzi dysregulates the gene expression profile of primary human cardiomyocytes (PHCM) during the early phase of infection through a mechanism which remains to be elucidated. The role that small non-coding RNAs (sncRNA) including PIWI-interacting RNA (piRNA) play in regulating gene expression during the early phase of infection is unknown. To understand how T. cruzi dysregulate gene expression in the heart, we challenged PHCM with T. cruzi trypomastigotes and analyzed sncRNA, especially piRNA, by RNA-sequencing. The parasite induced significant differential expression of host piRNAs, which can target and regulate the genes which are important during the early infection phase. An …


Purification And Use Of Trna For Enzymatic Post-Translational Addition Of Amino Acids To Proteins., Irem Avcilar-Kucukgoze, Howard Gamper, Ya-Ming Hou, Anna Kashina 2020 University of Pennsylvania; Thomas Jefferson University

Purification And Use Of Trna For Enzymatic Post-Translational Addition Of Amino Acids To Proteins., Irem Avcilar-Kucukgoze, Howard Gamper, Ya-Ming Hou, Anna Kashina

Department of Biochemistry and Molecular Biology Faculty Papers

Post-translational addition of amino acids to proteins by enzymes using aminoacyl-tRNA is an emerging regulatory mechanism. Examples include Arg transfer in eukaryotes, Leu/Phe transfer in bacteria, and tRNA-synthetase-mediated addition of amino acids to Lys side chains. Here, we present a method of purification and use of tRNA for such reactions, focusing on tRNAArg and its use for arginylation. This method can also be used for other tRNA-mediated reactions. For complete details on the use and execution of this protocol, please refer to Avcilar-Kucukgoze et al. (2020).


Hyperpolarized Carbon-13 Magnetic Resonance Measurements Of Tissue Perfusion And Metabolism, Keith Michel 2020 The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences

Hyperpolarized Carbon-13 Magnetic Resonance Measurements Of Tissue Perfusion And Metabolism, Keith Michel

Dissertations and Theses (Open Access)

Hyperpolarized Magnetic Resonance Imaging (HP MRI) is an emerging modality that enables non-invasive interrogation of cells and tissues with unprecedented biochemical detail. This technology provides rapid imaging measurements of the activity of a small quantity of molecules with a strongly polarized nuclear magnetic moment. This polarization is created in a polarizer separate from the imaging magnet, and decays continuously towards a non-detectable thermal equilibrium once the imaging agent is removed from the polarizer and administered by intravenous injection. Specialized imaging strategies are therefore needed to extract as much information as possible from the HP signal during its limited lifetime.

In …


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