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Articles 361 - 390 of 1788
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
College Of Natural Sciences Newsletter, November 2022 - January 2023, College Of Natural Sciences
College Of Natural Sciences Newsletter, November 2022 - January 2023, College Of Natural Sciences
College of Natural Sciences Newsletters and Reports
Volme 3, Issue 7
Page 1 Dean's Message
Page 2 Awards & Recognition
Page 3 Sioux Falls Middle School Visit
Page 4 Bio-Micro Day of Scholars
Page 5 GIS Day at USGS EROS
Page 6 Indigenous People's Festival, & Visiting Jack's Imagination Lab
Page 7 Media Coverage of CNS, & Research Highlights from Geography & Geospatial Sciences
Page 8 Media Coverage of CNS. cont.
Page 9 Open PRAIRIE Data
Page 10 Recent Publications from CNS
Page 11 Recent Publications from CNS. cont.
Page 12 CNS Holiday Snapshots
Page 13 & 14 Fall 2022 Dean's List
Page 12-14 Fall 2022 Outreach …
Splicing Factor Srsf1 Deficiency In The Liver Triggers Nash-Like Pathology And Cell Death, Waqar Arif, Bhoomika Mathur, Michael F Saikali, Ullas V Chembazhi, Katelyn Toohill, You Jin Song, Qinyu Hao, Saman Karimi, Steven M Blue, Brian A Yee, Eric L Van Nostrand, Sushant Bangru, Grace Guzman, Gene W Yeo, Kannanganattu V Prasanth, Sayeepriyadarshini Anakk, Carolyn L Cummins, Auinash Kalsotra
Splicing Factor Srsf1 Deficiency In The Liver Triggers Nash-Like Pathology And Cell Death, Waqar Arif, Bhoomika Mathur, Michael F Saikali, Ullas V Chembazhi, Katelyn Toohill, You Jin Song, Qinyu Hao, Saman Karimi, Steven M Blue, Brian A Yee, Eric L Van Nostrand, Sushant Bangru, Grace Guzman, Gene W Yeo, Kannanganattu V Prasanth, Sayeepriyadarshini Anakk, Carolyn L Cummins, Auinash Kalsotra
Faculty, Staff and Students Publications
Regulation of RNA processing contributes profoundly to tissue development and physiology. Here, we report that serine-arginine-rich splicing factor 1 (SRSF1) is essential for hepatocyte function and survival. Although SRSF1 is mainly known for its many roles in mRNA metabolism, it is also crucial for maintaining genome stability. We show that acute liver damage in the setting of targeted SRSF1 deletion in mice is associated with the excessive formation of deleterious RNA-DNA hybrids (R-loops), which induce DNA damage. Combining hepatocyte-specific transcriptome, proteome, and RNA binding analyses, we demonstrate that widespread genotoxic stress following SRSF1 depletion results in global inhibition of mRNA …
Discovery Of Highly Potent And Bmpr2-Selective Kinase Inhibitors Using Dna-Encoded Chemical Library Screening, Ram K Modukuri, Diana Monsivais, Feng Li, Murugesan Palaniappan, Kurt M Bohren, Zhi Tan, Angela F Ku, Yong Wang, Chandrashekhar Madasu, Jian-Yuan Li, Suni Tang, Gabriella Miklossy, Stephen S Palmer, Damian W Young, Martin M Matzuk
Discovery Of Highly Potent And Bmpr2-Selective Kinase Inhibitors Using Dna-Encoded Chemical Library Screening, Ram K Modukuri, Diana Monsivais, Feng Li, Murugesan Palaniappan, Kurt M Bohren, Zhi Tan, Angela F Ku, Yong Wang, Chandrashekhar Madasu, Jian-Yuan Li, Suni Tang, Gabriella Miklossy, Stephen S Palmer, Damian W Young, Martin M Matzuk
Faculty, Staff and Students Publications
The discovery of monokinase-selective inhibitors for patients is challenging because the 500+ kinases encoded by the human genome share highly conserved catalytic domains. Until now, no selective inhibitors unique for a single transforming growth factor β (TGFβ) family transmembrane receptor kinase, including bone morphogenetic protein receptor type 2 (BMPR2), have been reported. This dearth of receptor-specific kinase inhibitors hinders therapeutic options for skeletal defects and cancer as a result of an overactivated BMP signaling pathway. By screening 4.17 billion “unbiased” and “kinase-biased” DNA-encoded chemical library molecules, we identified hits CDD-1115 and CDD-1431, respectively, that were low-nanomolar selective kinase inhibitors of …
Evaluation Of Apparent Diffusion Coefficient Repeatability And Reproducibility For Preclinical Mris Using Standardized Procedures And A Diffusion-Weighted Imaging Phantom, Dariya Malyarenko, Ghoncheh Amouzandeh, Stephen Pickup, Rong Zhou, Henry Charles Manning, Seth T Gammon, Kooresh I Shoghi, James D Quirk, Renuka Sriram, Peder Larson, Michael T Lewis, Robia G Pautler, Paul E Kinahan, Mark Muzi, Thomas L Chenevert
Evaluation Of Apparent Diffusion Coefficient Repeatability And Reproducibility For Preclinical Mris Using Standardized Procedures And A Diffusion-Weighted Imaging Phantom, Dariya Malyarenko, Ghoncheh Amouzandeh, Stephen Pickup, Rong Zhou, Henry Charles Manning, Seth T Gammon, Kooresh I Shoghi, James D Quirk, Renuka Sriram, Peder Larson, Michael T Lewis, Robia G Pautler, Paul E Kinahan, Mark Muzi, Thomas L Chenevert
Faculty, Staff and Students Publications
Relevant to co-clinical trials, the goal of this work was to assess repeatability, reproducibility, and bias of the apparent diffusion coefficient (ADC) for preclinical MRIs using standardized procedures for comparison to performance of clinical MRIs. A temperature-controlled phantom provided an absolute reference standard to measure spatial uniformity of these performance metrics. Seven institutions participated in the study, wherein diffusion-weighted imaging (DWI) data were acquired over multiple days on 10 preclinical scanners, from 3 vendors, at 6 field strengths. Centralized versus site-based analysis was compared to illustrate incremental variance due to processing workflow. At magnet isocenter, short-term (intra-exam) and long-term (multiday) …
Targeted Protein Degradation Via Lysosomes, Rishi R Paudel, Dong Lu, Sandipan Roy Chowdhury, Erika Y Monroy, Jin Wang
Targeted Protein Degradation Via Lysosomes, Rishi R Paudel, Dong Lu, Sandipan Roy Chowdhury, Erika Y Monroy, Jin Wang
Faculty, Staff and Students Publications
In the scope of targeted protein degradation (TPD), proteolysis-targeting chimeras (PROTACs), leveraging the ubiquitin-proteasome system, have been extensively studied. However, they are limited to the degradation of soluble and membrane proteins, excluding the aggregated and extracellular proteins and dysfunctional organelles. As an alternative protein degradation pathway, lysosomes serve as a feasible tool for accessing these untouched proteins and/or organelles by proteosomes. Here, we focus on reviewing the emerging lysosome-mediated TPD, such as AUTAC, ATTEC, AUTOTAC, LYTAC, and MoDE-A. Intracellular targets, such as soluble and aggregated proteins and organelles, can be degraded via the autophagy-lysosome pathway. Extracellular targets, such as membrane …
Genetic Determinants Involved In Acquisition Of Iron In The Opportunistic Pathogen Mycobacterium Abscessus, Manal F. Farhat
Genetic Determinants Involved In Acquisition Of Iron In The Opportunistic Pathogen Mycobacterium Abscessus, Manal F. Farhat
Dissertations, Theses, and Capstone Projects
The opportunistic pathogen Mycobacterium abscessus subsp. abscessus (Mab) has become an emerging public health threat due to the increasing number of Mab-associated chronic pulmonary disease cases. Infection cure rates are only 50% due to the complex resistance of Mab to most antimicrobial drugs and chemotherapy.
Deeper knowledge of Mab biology is needed to illuminate potential candidates for development of improved therapeutics against Mab infections. The ESX-3 type VII protein secretion system of Mab plays an important role in host inflammatory and pathological responses during infection.
In this study, we demonstrate a functional link between the ESX-3 secretion …
Synthetic Assembly Dna Cloning To Build Plasmids For Multiplexed Transgenic Selection, Counterselection Or Any Other Genetic Strategies Using Drosophila Melanogaster, Koen J T Venken, Nick Matinyan, Yezabel Gonzalez, Alejandro Sarrion-Perdigones, Herman A Dierick
Synthetic Assembly Dna Cloning To Build Plasmids For Multiplexed Transgenic Selection, Counterselection Or Any Other Genetic Strategies Using Drosophila Melanogaster, Koen J T Venken, Nick Matinyan, Yezabel Gonzalez, Alejandro Sarrion-Perdigones, Herman A Dierick
Faculty, Staff and Students Publications
We recently described a drug-based selectable and counterselectable genetic platform for the animal model system Drosophila melanogaster, consisting of four resistance and two sensitivity markers that allow direct selection for, or counterselection against, a desired genotype. This platform eliminates the need to identify modified progeny by traditional laborious screening using dominant eye and body color markers, white+ and yellow+, respectively. The four resistance markers permit selection of animals using G418 sulfate, Puromycin HCl, Blasticidin S, or Hygromycin B, while the two sensitivity markers allow counterselection of animals against Ganciclovir or Acyclovir, and 5-Fluorocytosine. The six markers …
The Roles Of Cyp1a2 And Cyp2d In Pharmacokinetic Profiles Of Serotonin And Norepinephrine Reuptake Inhibitor Duloxetine And Its Metabolites In Mice, Xuan Qin, Cen Xie, John M Hakenjos, Kevin R Mackenzie, Shelton R Boyd, Mercedes Barzi, Karl-Dimiter Bissig, Damian W Young, Feng Li
The Roles Of Cyp1a2 And Cyp2d In Pharmacokinetic Profiles Of Serotonin And Norepinephrine Reuptake Inhibitor Duloxetine And Its Metabolites In Mice, Xuan Qin, Cen Xie, John M Hakenjos, Kevin R Mackenzie, Shelton R Boyd, Mercedes Barzi, Karl-Dimiter Bissig, Damian W Young, Feng Li
Faculty, Staff and Students Publications
Duloxetine (DLX) is widely used to treat major depressive disorder. Little is known about the mechanistic basis for DLX-related adverse effects (e.g., liver injury). Human CYP1A2 and CYP2D6 mainly contributes to DLX metabolism, which was proposed to be involved in its adverse effects. Here, we investigated the roles of Cyp1a2 and Cyp2d on DLX pharmacokinetic profile and tissue distribution using a Cyp1a2 knockout (Cyp1a2-KO) mouse model together with a Cyp2d inhibitor (propranolol). Cyp1a2-KO has the few effects on the systematic exposure (area under the plasma concentration-time curve, AUC) and tissue disposition of DLX and its primary metabolites. Propranolol dramatically increased …
Dynamics Of Gametes And Embryos In The Oviduct: What Can In Vivo Imaging Reveal?, Shang Wang, Irina V Larina
Dynamics Of Gametes And Embryos In The Oviduct: What Can In Vivo Imaging Reveal?, Shang Wang, Irina V Larina
Faculty, Staff and Students Publications
IN BRIEF: In vivo imaging of gametes and embryos in the oviduct enables new studies of the native processes that lead to fertilization and pregnancy. This review article discusses recent advancements in the in vivo imaging methods and insights which contribute to understanding the oviductal function.
ABSTRACT: Understanding the physiological dynamics of gametes and embryos in the fallopian tube (oviduct) has significant implications for managing reproductive disorders and improving assisted reproductive technologies. Recent advancements in imaging of the mouse oviduct in vivo uncovered fascinating dynamics of gametes and embryos in their native states. These new imaging approaches and observations are …
Magel2 Truncation Alters Select Behavioral And Physiological Outcomes In A Rat Model Of Schaaf-Yang Syndrome, Derek L Reznik, Mingxiao V Yang, Pedro Albelda De La Haza, Antrix Jain, Melanie Spanjaard, Susanne Theiss, Christian P Schaaf, Anna Malovannaya, Theresa V Strong, Surabi Veeraragavan, Rodney C Samaco
Magel2 Truncation Alters Select Behavioral And Physiological Outcomes In A Rat Model Of Schaaf-Yang Syndrome, Derek L Reznik, Mingxiao V Yang, Pedro Albelda De La Haza, Antrix Jain, Melanie Spanjaard, Susanne Theiss, Christian P Schaaf, Anna Malovannaya, Theresa V Strong, Surabi Veeraragavan, Rodney C Samaco
Faculty, Staff and Students Publications
Previous studies in mice have utilized Magel2 gene deletion models to examine the consequences of its absence. We report the generation, molecular validation and phenotypic characterization of a novel rat model with a truncating Magel2 mutation modeling variants associated with Schaaf-Yang syndrome-causing mutations. Within the hypothalamus, a brain region in which human MAGEL2 is paternally expressed, we demonstrated, at the level of transcript and peptide detection, that rat Magel2 exhibits a paternal, parent-of-origin effect. In evaluations of behavioral features across several domains, juvenile Magel2 mutant rats displayed alterations in anxiety-like behavior and sociability measures. Moreover, the analysis of peripheral organ …
Serial Recombineering Cloning To Build Selectable And Tagged Genomic P[Acman] Bac Clones For Selection Transgenesis And Functional Gene Analysis Using Drosophila Melanogaste, Koen J T Venken, Nick Matinyan, Yezabel Gonzalez, Herman A Dierick
Serial Recombineering Cloning To Build Selectable And Tagged Genomic P[Acman] Bac Clones For Selection Transgenesis And Functional Gene Analysis Using Drosophila Melanogaste, Koen J T Venken, Nick Matinyan, Yezabel Gonzalez, Herman A Dierick
Faculty, Staff and Students Publications
Transgenes with genomic DNA fragments that encompass genes of interest are the gold standard for complementing null alleles in rescue experiments in the fruit fly Drosophila melanogaster. Of particular interest are genomic DNA clones available as bacterial artificial chromosomes (BACs) or fosmids from publicly available genomic DNA libraries. Genes contained within BAC and fosmid clones can be easily modified by recombineering cloning to insert peptide or protein tags to localize, visualize, or manipulate gene products, and to create point mutations or deletions for structure-function analysis of the inserted genes. However, since transgenesis efficiency is inversely correlated with transgene size, obtaining …
Identifying Biomarkers Of Differential Chemotherapy Response In Tnbc Patient-Derived Xenografts With A Ctd/Wgcna Approach, Varduhi Petrosyan, Lacey E Dobrolecki, Lillian Thistlethwaite, Alaina N Lewis, Christina Sallas, Ramakrishnan R Srinivasan, Jonathan T Lei, Vladimir Kovacevic, Predrag Obradovic, Matthew J Ellis, C Kent Osborne, Mothaffar F Rimawi, Anne Pavlick, Maryam Nemati Shafaee, Heidi Dowst, Antrix Jain, Alexander B Saltzman, Anna Malovannaya, Elisabetta Marangoni, Alana L Welm, Bryan E Welm, Shunqiang Li, Gerburg M Wulf, Olmo Sonzogni, Chen Huang, Suhas Vasaikar, Susan G Hilsenbeck, Bing Zhang, Aleksandar Milosavljevic, Michael T Lewis
Identifying Biomarkers Of Differential Chemotherapy Response In Tnbc Patient-Derived Xenografts With A Ctd/Wgcna Approach, Varduhi Petrosyan, Lacey E Dobrolecki, Lillian Thistlethwaite, Alaina N Lewis, Christina Sallas, Ramakrishnan R Srinivasan, Jonathan T Lei, Vladimir Kovacevic, Predrag Obradovic, Matthew J Ellis, C Kent Osborne, Mothaffar F Rimawi, Anne Pavlick, Maryam Nemati Shafaee, Heidi Dowst, Antrix Jain, Alexander B Saltzman, Anna Malovannaya, Elisabetta Marangoni, Alana L Welm, Bryan E Welm, Shunqiang Li, Gerburg M Wulf, Olmo Sonzogni, Chen Huang, Suhas Vasaikar, Susan G Hilsenbeck, Bing Zhang, Aleksandar Milosavljevic, Michael T Lewis
Faculty, Staff and Students Publications
Although systemic chemotherapy remains the standard of care for TNBC, even combination chemotherapy is often ineffective. The identification of biomarkers for differential chemotherapy response would allow for the selection of responsive patients, thus maximizing efficacy and minimizing toxicities. Here, we leverage TNBC PDXs to identify biomarkers of response. To demonstrate their ability to function as a preclinical cohort, PDXs were characterized using DNA sequencing, transcriptomics, and proteomics to show consistency with clinical samples. We then developed a network-based approach (CTD/WGCNA) to identify biomarkers of response to carboplatin (MSI1, TMSB15A, ARHGDIB, GGT1, SV2A, SEC14L2, SERPINI1, ADAMTS20, DGKQ) and docetaxel (c, MAGED4, …
Methylene Blue Inhibits Cromakalim-Activated K+ Currents In Follicle-Enclosed Oocytes, Dmytro Isaev, Keun-Hang Susan Yang, Georg Petroianu, Dietrich Ernst Lorke, Murat Oz
Methylene Blue Inhibits Cromakalim-Activated K+ Currents In Follicle-Enclosed Oocytes, Dmytro Isaev, Keun-Hang Susan Yang, Georg Petroianu, Dietrich Ernst Lorke, Murat Oz
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
The effects of methylene blue (MB) on cromakalim-induced K+ currents were investigated in follicle-enclosed Xenopus oocytes. In concentrations ranging from 3–300 μM, MB inhibited K+ currents (IC50: 22.4 μM) activated by cromakalim, which activates KATP channels. MB inhibited cromakalim-activated K+ currents in a noncompetitive and voltage-independent manner. The respective EC50 and slope values for cromakalim-activation of K+ currents were 194 ± 21 µM and 0.91 for controls, and 206 ± 24 µM and 0.87 in the presence of 30 μM MB. The inhibition of cromakalim-induced K+ currents by MB was not …
Mechanism Of Ca2+ Transport By Ferroportin, Jiemin Shen, Azaan Saalim Wilbon, Ming Zhou, Yaping Pan
Mechanism Of Ca2+ Transport By Ferroportin, Jiemin Shen, Azaan Saalim Wilbon, Ming Zhou, Yaping Pan
Faculty, Staff and Students Publications
Ferroportin (Fpn) is a transporter that releases ferrous ion (Fe2+) from cells and is important for homeostasis of iron in circulation. Export of one Fe2+ by Fpn is coupled to import of two H+ to maintain charge balance. Here, we show that human Fpn (HsFpn) binds to and mediates Ca2+ transport. We determine the structure of Ca2+-bound HsFpn and identify a single Ca2+ binding site distinct from the Fe2+ binding sites. Further studies validate the Ca2+ binding site and show that Ca2+ transport is not coupled to transport of another ion. In addition, Ca2+ transport is significantly inhibited in the …
Automating The High-Throughput Screening Of Protein-Based Optical Indicators And Actuators, Jihwan Lee, Beatriz Campillo, Shaminta Hamidian, Zhuohe Liu, Matthew Shorey, François St-Pierre
Automating The High-Throughput Screening Of Protein-Based Optical Indicators And Actuators, Jihwan Lee, Beatriz Campillo, Shaminta Hamidian, Zhuohe Liu, Matthew Shorey, François St-Pierre
Faculty, Staff and Students Publications
Over the last 25 years, protein engineers have developed an impressive collection of optical tools to interface with biological systems: indicators to eavesdrop on cellular activity and actuators to poke and prod native processes. To reach the performance level required for their downstream applications, protein-based tools are usually sculpted by iterative rounds of mutagenesis. In each round, libraries of variants are made and evaluated, and the most promising hits are then retrieved, sequenced, and further characterized. Early efforts to engineer protein-based optical tools were largely manual, suffering from low throughput, human error, and tedium. Here, we describe approaches to automating …
Change And Stasis Of Distinct Sediment Microbiomes Across Port Everglades Inlet (Pei) And The Adjacent Coral Reefs, Lauren E. Krausfeldt, Jose V. Lopez, Catherine Bilodeau, Hyo Won Lee, Shelby L. Casali
Change And Stasis Of Distinct Sediment Microbiomes Across Port Everglades Inlet (Pei) And The Adjacent Coral Reefs, Lauren E. Krausfeldt, Jose V. Lopez, Catherine Bilodeau, Hyo Won Lee, Shelby L. Casali
Biology Faculty Articles
Deep water ports are human built coastal structures that by definition welcome ship traffic and disturbance. Evidence is accumulating that enhanced port activities such as dredging or deepening have negatively affected nearby natural habitats. Port Everglades Inlet (PEI) is a large active South Florida cargo port for over two million people and lies adjacent to coral reefs, dwindling mangroves, and recreational beaches. In this study, the microbial communities of PEI and adjacent reef sediments were characterized to serve as indicators for change due to dredging and assess anthropogenic influence on these sensitive ecosystems by sequencing the V4 region of 16S …
A Bioengineered Probiotic For The Oral Delivery Of A Peptide Kv13 Channel Blocker To Treat Rheumatoid Arthritis, Yuqing Wang, Duolong Zhu, Laura C Ortiz-Velez, Jacob L Perry, Michael W Pennington, Joseph M Hyser, Robert A Britton, Christine Beeton
A Bioengineered Probiotic For The Oral Delivery Of A Peptide Kv13 Channel Blocker To Treat Rheumatoid Arthritis, Yuqing Wang, Duolong Zhu, Laura C Ortiz-Velez, Jacob L Perry, Michael W Pennington, Joseph M Hyser, Robert A Britton, Christine Beeton
Faculty, Staff and Students Publications
New therapeutics that combine efficacy with limited side effects and can be delivered noninvasively are needed to adequately treat patients with rheumatoid arthritis (RA) and other autoimmune diseases. Kv1.3 channel-expressing CCR7− effector memory T (TEM) lymphocytes are significant players in the pathogenesis of multiple autoimmune diseases, and blocking Kv1.3 reduces disease severity in rat models of RA and patients with plaque psoriasis. However, peptide therapeutics require repeated injections, reducing patient compliance. We used a bioengineered Lactobacillus reuteri as an oral delivery method of a Kv1.3 blocker for immunomodulation in rat models of atopic dermatitis and RA. This study demonstrates a …
Rbp Image Database: A Resource For The Systematic Characterization Of The Subcellular Distribution Properties Of Human Rna Binding Proteins, Louis Philip Benoit Bouvrette, Xiaofeng Wang, Jonathan Boulais, Jian Kong, Easin Uddin Syed, Steven M Blue, Lijun Zhan, Sara Olson, Rebecca Stanton, Xintao Wei, Brian Yee, Eric L Van Nostrand, Xiang-Dong Fu, Christopher B Burge, Brenton R Graveley, Gene W Yeo, Eric Lécuyer
Rbp Image Database: A Resource For The Systematic Characterization Of The Subcellular Distribution Properties Of Human Rna Binding Proteins, Louis Philip Benoit Bouvrette, Xiaofeng Wang, Jonathan Boulais, Jian Kong, Easin Uddin Syed, Steven M Blue, Lijun Zhan, Sara Olson, Rebecca Stanton, Xintao Wei, Brian Yee, Eric L Van Nostrand, Xiang-Dong Fu, Christopher B Burge, Brenton R Graveley, Gene W Yeo, Eric Lécuyer
Faculty, Staff and Students Publications
RNA binding proteins (RBPs) are central regulators of gene expression implicated in all facets of RNA metabolism. As such, they play key roles in cellular physiology and disease etiology. Since different steps of post-transcriptional gene expression tend to occur in specific regions of the cell, including nuclear or cytoplasmic locations, defining the subcellular distribution properties of RBPs is an important step in assessing their potential functions. Here, we present the RBP Image Database, a resource that details the subcellular localization features of 301 RBPs in the human HepG2 and HeLa cell lines, based on the results of systematic immuno-fluorescence studies …
Molecular Regulation Of The Salicylic Acid Hormone Pathway In Plants Under Changing Environmental Conditions, Christina A. M. Rossi, Eric J. R. Marchetta, Jong Hum Kim, Christian Castroverde
Molecular Regulation Of The Salicylic Acid Hormone Pathway In Plants Under Changing Environmental Conditions, Christina A. M. Rossi, Eric J. R. Marchetta, Jong Hum Kim, Christian Castroverde
Biology Faculty Publications
Salicylic acid (SA) is a central plant hormone mediating immunity, growth, and development. Recently, studies have highlighted the sensitivity of the SA pathway to changing climatic factors and the plant microbiome. Here we summarize organizing principles and themes in the regulation of SA biosynthesis, signaling, and metabolism by changing abiotic/biotic environments, focusing on molecular nodes governing SA pathway vulnerability or resilience. We especially highlight advances in the thermosensitive mechanisms underpinning SA-mediated immunity, including differential regulation of key transcription factors (e.g., CAMTAs, CBP60g, SARD1, bHLH059), selective protein–protein interactions of the SA receptor NPR1, and dynamic phase separation of the recently identified …
Interferon Gamma Signaling In Ovarian Cancer Cells, Bijaya Gaire
Interferon Gamma Signaling In Ovarian Cancer Cells, Bijaya Gaire
Theses and Dissertations
Interferon gamma (IFNγ) is a pleiotropic cytokine that can have, depending on the cellular and molecular context, both anti-tumor and pro-tumorigenic functions. IFNγ expression can be induced in cancer cells in response to radiation therapy or immune checkpoint blockade used in cancer treatment. We have previously shown that IFNγ induces expression of the Bcl3 proto-oncogene in ovarian cancer (OC) cells, resulting in their increased proliferation and migration, but the mechanisms are unknown. Here, I demonstrate that the IFNγ-induced Bcl3 expression is dependent on JAK1 and STAT1 signaling, and on p65 NFkB. Furthermore, my data show that the IFNγ-induced Bcl3 expression …
Role Of Integrins In Hiv Infection Of Resting Cd4+ T Cells Stimulated By Intestinal Endothelial Cells, Anding Shen, Sarah Logan, Tim Kim, Zihan Zhang
Role Of Integrins In Hiv Infection Of Resting Cd4+ T Cells Stimulated By Intestinal Endothelial Cells, Anding Shen, Sarah Logan, Tim Kim, Zihan Zhang
Summer Research
Eradicating HIV remains a formidable challenge due to the persistence of latent reservoirs within resting CD4+ T cells. Intestinal endothelial cells (IECs) have been shown to promote HIV infection and latent reservoir formation in resting CD4+ T cells. Our research investigates the role of integrins and their ligands, specifically ICAM, VCAM, and MAdCAM, in resting T cells and their impact on productive and latent HIV infection. Findings reveal that VCAM stimulation was the most effective in promoting productive HIV infection. MAdCAM and ICAM had minimal effect. Cytokine IL-6 consistently displayed synergy with all CAMs, amplifying effects on productive HIV infection. …
Regulation Of P53 By Trpm6 And Trpm7, Thomas Whitbread
Regulation Of P53 By Trpm6 And Trpm7, Thomas Whitbread
Theses and Dissertations
TRPM6 and TRPM7 are two divalent metal cation channels that also possess a serine/threonine kinase domain. They both play critical roles in cellular and organismal metal homeostasis, and are necessary for proper embryonic development and human health. They may function independently in homomeric units, or act together as heterotetramers that display unique characteristics compared to the homomeric channels. These channel-kinases have increasingly been linked to cancer, displaying altered expression levels in a variety of human cancers and contributing to disease progression. Prior work has shown that TRPM6 and TRPM7 can participate in cancer-related signaling pathways. Here, the potential for TRPM6 …
Trichloroethylene (Tce) And Metabolite S-(1,2-Dichlorovinyl)-L-Cysteine (Dcvc) Alters Pregnancy Mediators In Rat Amniotic Fluid And Thp-1 Cells, Audrey Luce, Lyric Johnson, Karena Moleakunnel, Eleanor Scheeres, Emily Schellenboom, Sean Harris, Erica Boldenow
Trichloroethylene (Tce) And Metabolite S-(1,2-Dichlorovinyl)-L-Cysteine (Dcvc) Alters Pregnancy Mediators In Rat Amniotic Fluid And Thp-1 Cells, Audrey Luce, Lyric Johnson, Karena Moleakunnel, Eleanor Scheeres, Emily Schellenboom, Sean Harris, Erica Boldenow
Summer Research
• Proinflammatory cytokines, such as TNF-α recruit immune cells to help fight infection and aid in cervical ripening (i.e. dilation).
• Matrix metalloproteinases (MMPs) such as MMP-9 help with rupture of the gestational membranes (i.e. breaking of the water).
• Prostaglandins, such as PGE2 contribute to myometrial contractions and labor induction.
• Working pregnant women are exposed to both toxicants and pathogens which can contribute to adverse birth outcomes such as preterm birth.
Botanical Assessment Of Remnant Floodplain Habitats Along Plaster Creek, Kent County, Michigan: Assessing Changes Since The 1890s, Haley R. Weesies, Garrett Crow, David Warners
Botanical Assessment Of Remnant Floodplain Habitats Along Plaster Creek, Kent County, Michigan: Assessing Changes Since The 1890s, Haley R. Weesies, Garrett Crow, David Warners
Faculty and Professional Research
Plaster Creek, a tributary of the Grand River, drains a 58-square mile watershed in Kent County, Michigan. Its headwaters originate in the agriculturally dominated southwestern portion of the county, and then it meanders through residential, commercial, and urban areas of Kentwood and Grand Rapids before it empties into the Grand River about one mile south of downtown Grand Rapids. Much of Plaster Creek’s original floodplain, like the rest of its watershed, has been drastically altered and degraded over time due to the development of residential neighborhoods, commercial properties, agriculture, and industrial zones. Floodplains house unique assemblages of Michigan’s native biodiversity …
Analyzing Mex67 Interaction With The Ssa4 Transcript For Selective Export, Gretchen E. Stalnaker, Rebecca Adams
Analyzing Mex67 Interaction With The Ssa4 Transcript For Selective Export, Gretchen E. Stalnaker, Rebecca Adams
Science University Research Symposium (SURS)
In eukaryotic cells, such as the budding yeast Saccharomyces cerevisiae, mRNA export is the essential process in which mature mRNA is transported from its site of production, the nucleus, through the nuclear pore complex (NPC) to the cytoplasm, where it can then be translated into protein. This is accomplished when a transcript interacts with the mRNA export protein Mex67, which shuttles the message across the NPC. When the cell is under conditions of stress, such as heat shock, most mRNA export is prohibited, allowing for selective gene expression that prioritizes cell recovery. Specifically, SSA4, which encodes a protein that …
Testing Ssa4:Ade3 Reporters For Mcs Screening, Karah Edmonds, Rebecca Adams
Testing Ssa4:Ade3 Reporters For Mcs Screening, Karah Edmonds, Rebecca Adams
Science University Research Symposium (SURS)
In eukaryotic cells, after transcription, mRNA is escorted from the nucleus to the cytoplasm to be translated. This process, called mRNA export, is essential for gene expression. However, when the cell exists in stressful conditions, mRNA export becomes regulated, and only select transcripts, including the stress-responsive SSA4 mRNA, can be exported. This project aims to uncover the mechanism of selective SSA4 mRNA export by generating a reporter that enables phenotypically visible expression under stressful conditions. Specifically, the ADE3 ORF was placed under the regulatory sequence of SSA4, which was anticipated to induce a red color for colonies only following stress. …
Dna Methylation And The Response To Infection In Introduced House Sparrows, Melanie Gibson
Dna Methylation And The Response To Infection In Introduced House Sparrows, Melanie Gibson
College of Graduate Studies: Theses & Dissertations
Epigenetics is the study of molecular modification of a genome without changing its base pairs. The most studied type of epigenetic mechanism is DNA methylation, which is capable of turning a gene “on” or “off.” Epigenetic potential is the capacity to which an individual can have methylation on its genome. The more CpGs available, the greater the epigenetic potential. In invasive species, genetic variation has been observed to be paradoxical: not much of it exists on a genomic level, but epigenetically, phenotypic variation can occur. The focus on shift in gene expression in this study is on Toll-Like Receptor 4 …
Characterization Of Parp1-Dependent Poly-Adp-Ribosylation Of Sprtn, Quincee Simonson
Characterization Of Parp1-Dependent Poly-Adp-Ribosylation Of Sprtn, Quincee Simonson
Electronic Theses and Dissertations
DNA-protein crosslinks (DPCs) are a type of DNA lesion that form when proteins become covalently linked to DNA. It is estimated that replicating cells experience approximately 6,000 DPCs per day per genome during exponential growth (Ruggiano & Ramadan, 2021). If left unrepaired, DPCs can be lethal to cells. For this reason, cells have evolved multiple pathways to repair or bypass DPCs to survive. One such pathway involves SPRTN, a nuclear metalloprotease that plays a key role in the repair of DPCs through direct proteolysis (Lopez-Mosqueda et al., 2016; Vaz et al., 2016). Once SPRTN degrades the bulky protein component of …
College Of Natural Sciences 2022 Year-End Publication, College Of Natural Sciences
College Of Natural Sciences 2022 Year-End Publication, College Of Natural Sciences
College of Natural Sciences Newsletters and Reports
This is the 2022 issue of the annual College of Natural Sciences year-end publication.
Contents:
[Page] 2 Dean's message
[Page] 3 Department highlights
[Page] 4 Overview of Bold & Blue Campaign
[Page] 5 Dr. Edward Hogan recognition & endowment
[Page] 6 Career milestones
[Page] 7 Student travel and research
[Page] 8 $11 million COBRE grant
[Page] 9 Professional Science Masters & Research highlights
[Page]10 Outreach highlights throughout the state
[Page] 11 2022 events recap – join us in 2023!
[Page] 12 Updates on our VR initiative
[Page] 14 Overview of awards and recognitions from 2022
Producing Grnas For Use In Crispr-Cas9 Dna Editing Applications Via In Vivo T7 Rna Polymerase Transcription In Escherichia Coli., Christian A. Santiago
Producing Grnas For Use In Crispr-Cas9 Dna Editing Applications Via In Vivo T7 Rna Polymerase Transcription In Escherichia Coli., Christian A. Santiago
Honors Program Theses
The development of the CRISPR-Cas9 system is widely considered to be a breakthrough advancement in gene editing. Compared to traditional technologies, CRISPR is generally regarded as the most accessible, effective, and precise tool for inducing stable and inheritable gene edits in vivo. The CRISPR-Cas9 gene editing complex relies on the complementary binding of guide RNAs to specifically target a DNA sequence for endonuclease cleavage and mutagenesis. The production of gRNAs for use in CRISPR applications can become exceedingly complex and costly, as in vivo methodologies generally require the use of RNA polymerases that interfere with gRNA sequence identity and in …