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Articles 811 - 840 of 857
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Heat Shock Protein 90 (Hsp90) System In Health And Disease., Daniella Munezero
Heat Shock Protein 90 (Hsp90) System In Health And Disease., Daniella Munezero
Graduate Theses, Dissertations, and Problem Reports (ETD)
Cells rely on heat shock proteins (HSP) to facilitate and regulate the folding of the substrate proteins into their native state, and degradation if misfolding cannot be prevented. HSP90, a member of the HSP family, is a potential target for treatment of cancer and neurodegenerative diseases. Unfortunately, several clinical trials for cancer treatment have been discontinued due to cell toxicity accompanying HSP90 inhibition. HSP90 has four distinct but structurally similar paralogs. HSP90 inhibitors target all the paralogs despite increasing proof of functional differences among the paralogs. Understanding the in vivo function of HSP90 and the role played by each paralog …
Application Of Computational Biophysics Techniques To Characterize Cell Membrane-Associated Events, Kyle Billings
Application Of Computational Biophysics Techniques To Characterize Cell Membrane-Associated Events, Kyle Billings
Graduate Theses, Dissertations, and Problem Reports (ETD)
Cell membranes are crowded environments which can modulate protein structure-function relationships through interaction with lipids, other proteins, carbohydrate structures and so on. This work focuses the impact of the membrane environment on two varieties of peptides: Microbial rhodopsin proteins, and cyclic peptides.
Life on Earth is dependent on the ability of plants and microbes to harness sunlight for energy production. Their ability to transform light into carbohydrates requires tailor-made machinery, and for a wealth of microorganisms, microbial rhodopsin proteins (MR) are critical for maintaining the concentration gradients used to produce the energy molecule Adenosine triphosphate (ATP). The central retinal molecule …
Gestational Vulnerability To Ozone Air Pollution - A Placental Story, Vishnupriya Alavala, Sarah Brent, Russell Hunter, Matthew J. Campen, Andrew Ottens
Gestational Vulnerability To Ozone Air Pollution - A Placental Story, Vishnupriya Alavala, Sarah Brent, Russell Hunter, Matthew J. Campen, Andrew Ottens
Undergraduate Research Posters
About 99% of the global population resides in areas with air pollution surpassing World Health Organization standards. Air pollution is associated with adverse neonatal health outcomes such as low fetal birth weight and an increased risk for maternal pre-eclampsia. A particularly reactive air pollutant is ozone, which forms reactive oxygen species that induce cellular damage. Research exists on the dispersion of reactive oxygen species through the bloodstream leading to fetal vulnerability during pregnancy, specifically via the placenta. Yet, placental and fetal development is a temporal process with varied susceptibility to negative gestational outcomes.
To addressing this gap, our laboratory utilized …
Structural Analysis Of Predicted Proteins Using Alphafold, Brydon P. Wall
Structural Analysis Of Predicted Proteins Using Alphafold, Brydon P. Wall
Undergraduate Research Posters
The function of around 67% of predicted proteins from genes in Mycobacteriophage CheetoDust can not be confidently predicted using traditional techniques and can only be functionally labeled “hypothetical proteins”. However, a new approach using AlphaFold, an artificial intelligence tool to generate a structural prediction from a sequence, can take advantage of structurally conserved regions that were previously obfuscated to gain new insights and visualize data in new ways.
Since amino acid sequences are more conserved than its corresponding DNA sequence, amino acid sequences are used when predicting the function of the corresponding translated protein. Until recently, predicting structure from an …
Engineering Ph-Dependent Antibody Interactions Through Introduction Of Linked Protonation Equibria Within The Antigen Binding Interface Or Linked Oligomeric Interfaces, Tosha Laughlin
Graduate Research Theses & Dissertations
Antibodies are widely applied as affinity reagents across a variety of fields, due to their high affinity and specificity. While high affinity across a range of conditions is useful for many applications, the ability to modulate affinity with environmental conditions (e.g., pH) opens new opportunities for antibody applications. This dissertation focuses on exploring the impact of an antibody’s interface size on engineered pH dependence, as well as exploring engineered pH-dependence through perturbing oligomerization equilibria that are linked to target binding. An anti-maltose binding protein (MBP) Fab 7O antibody fragment was used as a large protein-protein interface model to explore a …
Development Of A Chemical Biology Approach To Uncover The Influence Of Sequence Variations On Ces1 Activity In Live Cells, Samuel James Knebel
Development Of A Chemical Biology Approach To Uncover The Influence Of Sequence Variations On Ces1 Activity In Live Cells, Samuel James Knebel
Masters Theses
Drug metabolism is the biochemical process of modifying drugs to detoxify and remove them through enzymatic transformations. These biotransformation’s occur primarily in the liver and are critical to understanding how pharmaceutical compounds are chemically altered inside the human body. Human carboxylesterases (CESs) catalyze the hydrolysis of esters, amides, thioesters, and carbamates. CES-mediated hydrolysis plays an important role in the metabolism of many drugs including the first FDA approved antiviral treatment for COVID-19, remdesivir (Veklury), the seizure control medication rufinamide (Banzel), and the flu antiviral drug oseltamivir (Tamiflu). CES activity is known to be influenced by a variety of factors including …
Evaluating The Contribution Of Adjacent Charges On The Observed Ph-Dependent Binding Profile For A Vhh/Antigen Interaction With A Linked Histidine Protonation Equilibria, Kiruthika Arulmoly
Evaluating The Contribution Of Adjacent Charges On The Observed Ph-Dependent Binding Profile For A Vhh/Antigen Interaction With A Linked Histidine Protonation Equilibria, Kiruthika Arulmoly
Graduate Research Theses & Dissertations
pH dependent protein-protein interactions are of great importance for various biological processes. In addition, the generation of engineered pH-dependent therapeutic antibodies opens opportunities for the extension of therapeutic half-life, thereby reducing drug dosage or frequency of administration, as well as providing pH-dependent targeting, such as the tumor microenvironment. Engineering pH-dependent antibody-antigen interaction is mostly achieved through the incorporation of ionizable residues within the antigen binding interface. These ionizable residues must undergo a change in environment upon forming a protein-protein complex, which causes a change in the ionizable group’s pKa value. This coupled protonation equilibria is responsible for the observed pH-dependent …
Bioanalytical Studies Of Disease Protein Profiles: Maldi-Tof Ms, Prajkta Satish Chivte
Bioanalytical Studies Of Disease Protein Profiles: Maldi-Tof Ms, Prajkta Satish Chivte
Graduate Research Theses & Dissertations
Coronavirus disease-2019 (COVID-19), which is caused by a novel coronavirus named severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), has ravaged the world for the past 3 years. Even today, there still exists a need for rapid, accurate, economical and non-invasive diagnostic testing platforms that yield high specificity and sensitivity towards the constantly mutating SARS-CoV-2. Research has consistently indicated saliva to be a more amenable specimen type for early detection of SARS-CoV-2, compared to the oral and nasopharyngeal swabs. Considering the limitations and high demand of the existing COVID-19 testing platforms, this dissertation work studies used MALDI-ToF MS (matrix-assisted laser desorption/ionization-time of …
Room-Temperature Crystallography Reveals Altered Binding Of Small-Molecule Fragments To Ptp1b, Tamar Skaist Mehlman, Justin T. Biel, Syeda Maryam Azeem, Elliot R. Nelson, Sakib Hossain, Louise Dunnett, Neil G. Paterson, Alice Douangamath, Romain Talon, Danny Axford, Helen Orins, Frank Von Delft, Daniel A. Keedy
Room-Temperature Crystallography Reveals Altered Binding Of Small-Molecule Fragments To Ptp1b, Tamar Skaist Mehlman, Justin T. Biel, Syeda Maryam Azeem, Elliot R. Nelson, Sakib Hossain, Louise Dunnett, Neil G. Paterson, Alice Douangamath, Romain Talon, Danny Axford, Helen Orins, Frank Von Delft, Daniel A. Keedy
Advanced Science Research Center
Much of our current understanding of how small-molecule ligands interact with proteins stems from X-ray crystal structures determined at cryogenic (cryo) temperature. For proteins alone, room-temperature (RT) crystallography can reveal previously hidden, biologically relevant alternate conformations. However, less is understood about how RT crystallography may impact the conformational landscapes of protein-ligand complexes. Previously, we showed that small-molecule fragments cluster in putative allosteric sites using a cryo crystallographic screen of the therapeutic target PTP1B (Keedy et al., 2018). Here, we have performed two RT crystallographic screens of PTP1B using many of the same fragments, representing the largest RT crystallographic screens of …
The Role Of Cadherins And Ryk On Metastasis And Invasion In Triple Negative Breast Cancer Cell Model: Hs578t/Hs578ts(I)8, Ibis Iser
Electronic Theses and Dissertations
Breast cancer is a major cause of death among women in European and North American countries, even with improved methods for diagnosis and therapy. The mortality of breast cancer is mainly due to the migration of the primary tumor to distinct sites in the body and is very common in triple negative breast cancer (TNBC). This type of breast cancer affects younger woman and has a high recurrence rate. Unfortunately, TNBC is extremely difficult to control because of the absence of specific targets for treatment. Therefore, our research aim is to discover new therapeutic targets and identify novel approaches for …
Investigating Changes In Er-To-Golgi Protein Transport Following A Short Calcium Pulse: Roles Of Alg-2 And Peflin, Alaa Mohammed Yosri Shaheen
Investigating Changes In Er-To-Golgi Protein Transport Following A Short Calcium Pulse: Roles Of Alg-2 And Peflin, Alaa Mohammed Yosri Shaheen
Graduate Student Theses, Dissertations, & Professional Papers
The ER-Golgi interface is a very dynamic environment that involves the movement of protein-loaded vesicles forward and backward. The movement of COPII-coated vesicles from the ER to the Golgi is the initial step in the movement of secreted, organellar, and cell surface proteins toward their final destinations. Many factors can regulate this step, including cytosolic calcium increases. In this study, we examined the effect of a transient calcium pulse on recruitment to ER exit sites of cargo proteins for ER export, the calcium-sensitive regulatory proteins apoptosis-linked gene 2 (ALG-2) and peflin, and the COPII outer coat subunits Sec31A and Sec13. …
Use Of Foreign Edna Tracers To Resolve Site- And Time-Specific Edna Distributions In Natural Streams, Braden A. Herman
Use Of Foreign Edna Tracers To Resolve Site- And Time-Specific Edna Distributions In Natural Streams, Braden A. Herman
Cal Poly Humboldt theses and projects
Substantial uncertainty in how to interpret eDNA observations motivates a need for a technique to effectively and efficiently measure of system- and time-specific eDNA distributions. Using a technique to robustly calibrate eDNA dynamics in a given system would improve established eDNA methods such as presence and absence and has the potential to refine estimates of organism abundance using eDNA concentration that are less well understood. Particles of eDNA are present in a wide variety of size and type resulting in varying transport dynamics, persistence, decay, among others. This variation likely makes eDNA transport more complex than that of conservative tracers …
Food Waste Storage Gaseous Emissions Detection And Quantification Using Infrared Spectroscopy, Ryley A. Burton-Tauzer
Food Waste Storage Gaseous Emissions Detection And Quantification Using Infrared Spectroscopy, Ryley A. Burton-Tauzer
Cal Poly Humboldt theses and projects
A growing interest in sustainable waste management and the implementation of new policies have prompted a shift towards alternative resource recovery methods for organic waste, including food waste. To effectively assess alternative food waste treatment scenarios, it is important to evaluate the life cycle impacts associated with each scenario. The storage phase of food waste, encompassing its accumulation in kitchens, and storage in bins for collection and transportation, has been overlooked as a source of greenhouse gases in previous studies. This investigation aimed to identify the greenhouse gases emitted during the initial five-day period of low-oxygen storage. An open dynamic …
Elucidating Mechanisms Of Proteasome Modulation By Small Molecules To Treat Neurodegenerative Diseases And Cancer, Janelle Joo Yee Chuah
Elucidating Mechanisms Of Proteasome Modulation By Small Molecules To Treat Neurodegenerative Diseases And Cancer, Janelle Joo Yee Chuah
Graduate Theses, Dissertations, and Problem Reports (ETD)
Maintaining protein homeostasis, or proteostasis, is crucial for cellular function, and protein degradation through the proteasome plays a pivotal role in this process. Dysregulation of the proteasome can lead to proteostasis collapse and has been linked to the development of neurodegenerative diseases and cancers. Neurodegenerative diseases often exhibit proteasome impairment, whereas proteasome upregulation is frequently observed in cancer. Although the use of proteasome inhibitors as a pharmaceutical approach has shown success in certain cancers, it has yet to demonstrate efficacy in neurodegenerative diseases due to the absence of drug-like small molecules capable of effectively reversing proteasome impairment and/or activating the …
A Guide To Naming Eukaryotic Circular Rnas, Ling-Ling Chen, Albrecht Bindereif, Irene Bozzoni, Howard Y Chang, A Gregory Matera, Myriam Gorospe, Thomas B Hansen, Jørgen Kjems, Xu-Kai Ma, Jun Wei Pek, Nikolaus Rajewsky, Julia Salzman, Jeremy E Wilusz, Li Yang, Fangqing Zhao
A Guide To Naming Eukaryotic Circular Rnas, Ling-Ling Chen, Albrecht Bindereif, Irene Bozzoni, Howard Y Chang, A Gregory Matera, Myriam Gorospe, Thomas B Hansen, Jørgen Kjems, Xu-Kai Ma, Jun Wei Pek, Nikolaus Rajewsky, Julia Salzman, Jeremy E Wilusz, Li Yang, Fangqing Zhao
Faculty, Staff and Students Publications
Alternative splicing of eukaryotic transcripts often leads to production of multiple mature RNAs from a single gene locus. In addition to encoding linear RNAs, genes can produce stable circular RNAs (circRNAs) that are often co-expressed with their cognate linear RNAs. Multiple distinct circRNAs are frequently generated from a gene locus via back-splicing, with each mature transcript having a potentially unique function due to its distinct combination of exons and sometimes retained introns. However, names currently given to circRNAs are often ambiguous and lack consistency across studies. Here, we call on the community to embrace standards for naming circRNAs so that …
Identification Of A Dna Polymerase Alpha Gene Sequence In Thermomyces Lanuginosus Fungus, Nathan Williams
Identification Of A Dna Polymerase Alpha Gene Sequence In Thermomyces Lanuginosus Fungus, Nathan Williams
Honors Program Theses
With cell growth being the main focus of our research, we chose to study DNA polymerase alpha. DNA polymerase alpha is likely to be involved in cell growth as it is the enzyme that starts DNA replication. Control of this enzyme might lead to decreased cell growth in cancer or increased cell growth in damaged spinal cord tissue. We chose the thermophilic fungus Thermomyces lanuginosus for the study of the enzyme due to the ability to compare the enzyme’s activity during fungal growth at different temperatures. Thermomyces exhibits rapid growth at high temperatures and slow growth at low temperatures. Studying …
Raw Data Files For The Manuscript 'Elastin Recoil Is Driven By The Hydrophobic Effect', Nour M. Jamhawi, Ronald Koder, Richard J. Wittebort
Raw Data Files For The Manuscript 'Elastin Recoil Is Driven By The Hydrophobic Effect', Nour M. Jamhawi, Ronald Koder, Richard J. Wittebort
Publications and Research
These are the raw data files associated with the manuscript 'Elastin Recoil is Driven by the Hydrophobic Effect' by Nour M. Jamhawi, Ronald L. Koder, and Richard J. Wittebort
Dynamic Control Of The Cardiac Calcium Pump, Sean Robert Cleary
Dynamic Control Of The Cardiac Calcium Pump, Sean Robert Cleary
Dissertations
The sarco/endoplasmic reticulum Ca2+-ATPase (SERCA) sequesters Ca2+ into the endoplasmic reticulum of cells to establish a reservoir for Ca2+ signaling. In the heart, the activity of this transporter is tightly controlled via direct interactions with two competing regulatory micropeptides: phospholamban (PLB) and dwarf open reading frame (DWORF). PLB inhibits SERCA, while DWORF activates SERCA. These competing interactions determine cardiac performance by modulating the Ca2+ signals that drive the contraction/relaxation cycle. Previous studies indicated these SERCA-micropeptide interactions are Ca2+-sensitive; SERCA binds PLB more avidly at low cytoplasmic [Ca2+] but binds DWORF better when [Ca2+] is high. Here, FRET-microscopy demonstrated that this …
Review Of The Valorization Initiatives Of Brewing And Distilling Byproducts, Ekene C. Umego, Catherine Barry-Ryan
Review Of The Valorization Initiatives Of Brewing And Distilling Byproducts, Ekene C. Umego, Catherine Barry-Ryan
Articles
Beer and spirits are two of the most consumed alcoholic beverages in the world, and their production generates enormous amounts of by-product materials. This ranges from spent grain, spent yeast, spent kieselguhr, trub, carbon dioxide, pot ale, and distilled gin spent botanicals. The present circular economy dynamics and increased awareness on resource use for enhanced sustainable production practices have driven changes and innovations in the management practices and utilisation of these by-products. These include food product development, functional food applications, biotechnological applications, and bioactive compounds extraction. As a result, the brewing and distilling sector of the food and drinks industry …
Characterization Of The Full-Length Bag3 Protein And Stress Induced Formation Of Bag3-Z, Ahmed Gamal Abdalla Zied
Characterization Of The Full-Length Bag3 Protein And Stress Induced Formation Of Bag3-Z, Ahmed Gamal Abdalla Zied
Master's Theses
Bcl2-associated athanogene-3 (BAG3) is a pro-autophagy co-chaperone that we havepreviously shown localizes to the cardiac sarcomere and is critical for proteostasis and maintenance of normal sarcomeric function. Indeed, BAG3 loss in heart failure (HF) results in accumulation of ubiquitinated sarcomeric proteins, and depressed maximum force generating capacity (Fmax). However, how BAG3 is regulated in the cell is not well understood, with uncertainty about its structure and proteoforms. During our analysis of human heart tissue, BAG3 appears as a “doublet”, with one band at 74 kDa (BAG3-Z) and a second at a higher 85 kDa (BAG3-FL). Previous studies hypothesized the full-length …
Characterizing The Dynamic Localization Of Cmi In Early Drosophila Development, Asra Habibullah
Characterizing The Dynamic Localization Of Cmi In Early Drosophila Development, Asra Habibullah
Master's Theses
The COMPASS-like family of lysine methyltransferases, MLR/MLX complexes, are epigenetic regulators that are essential for normal development through the methylation of the fourth lysine residue on histone 3 (H3K4), a universal epigenetic mark associated with active transcription. This family of complexes is highly conserved from yeast to mammals and the genes encoding the human MLR complexes have been associated with various developmental diseases and cancers (Dingwall and Fagan, 2019). In D. melanogaster, the enzymatic methyltransferase core of this complex is composed of two proteins: Cara Mitad (Cmi, also known as Lpt) and Trithorax-related (Trr). Although these proteins have been shown …
Functional Characterization Of Pacific White Shrimp Litopenaeus Vannamei Heat Shock Protein 90 In Response To White Spot Syndrome Virus Infection, Warumporn Yingsunthonwattana
Functional Characterization Of Pacific White Shrimp Litopenaeus Vannamei Heat Shock Protein 90 In Response To White Spot Syndrome Virus Infection, Warumporn Yingsunthonwattana
Chulalongkorn University Theses and Dissertations (Chula ETD)
Heat shock proteins (HSPs) are host chaperones that can be used by viruses to facilitate various steps of viral infections. In this study, we found that Litopenaeus vannamei heat shock protein 90 (LvHSP90) is a viral-responsive protein, due to a significant transcriptional and translational upregulation following white spot syndrome virus (WSSV) infection. Suppression of LvHSP90 significantly reduced WSSV infection which was corresponded with significantly decreased expressions of viral genes, including the immediate-early genes and viral DNA polymerase. Conversely, injecting shrimp with WSSV that had been co-incubated with a recombinant LvHSP90 (rLvHSP90) promoted WSSV infection as evidenced by an increased cumulative …
Solubility And Anti-Cancer Efficiency Enhancement Of Phytochemicals By Complexation With Β-Cyclodextrin And Derivatives, Saba Ali
Chulalongkorn University Theses and Dissertations (Chula ETD)
Phytochemicals, abundant in plants, showcase diverse pharmacological effects, with an increasing focus on their potential as anticancer agents. Three bioactive natural compounds with pharmaceutical potential are piperine (PP), oxyresveratrol (OXY), and tanshinone IIA (Tan IIA). However, these three phytochemicals have low water solubility and susceptibility to UV light degradation. To address this problem, we explored the potential of β -cyclodextrins (βCDs), renowned for their ability to enhance the solubility and stability of lipophilic drugs by encapsulating them within their molecular structure. Our focus centered on β-cyclodextrin (βCD) and its derivatives, including hydroxypropyl-β-cyclodextrin (HPβCD), dimethyl-β-cyclodextrin (DMβCD), and sulfobutylether-β-cyclodextrin (SBEβCD). In this …
Regulation Of Cell Cycle And Apoptosis By Mirna Via Jak-Stat/Akt Pathway In White Spot Syndrom Virus-Infected Shrimp, Waqar Ahmad
Regulation Of Cell Cycle And Apoptosis By Mirna Via Jak-Stat/Akt Pathway In White Spot Syndrom Virus-Infected Shrimp, Waqar Ahmad
Chulalongkorn University Theses and Dissertations (Chula ETD)
WSSV infection is one of the most serious threats to the aquaculture industry. To fight against WSSV, shrimp rely on several immune effectors and pathways, i.e. the JAK/STAT pathway, which is considered an essential communication gateway for cell function. It has been reported previously that the JAK/STAT pathway interconnects with other pathways and regulates the cell cycle and apoptosis in vertebrates, but the mechanism of this pathway in the regulation of cell cycle and apoptosis in shrimps is still unclear. Thus, the purpose of this study is to investigate how the JAK/PI3K/AKT pathway controls cell cycle and cell death, as …
Identification And Functional Characterization Of Myb Transcription Factors Regulating Flavonoid Biosynthesis In Durian Durio Zibethinus L. Pulps, Kamonwan Weerawanich
Identification And Functional Characterization Of Myb Transcription Factors Regulating Flavonoid Biosynthesis In Durian Durio Zibethinus L. Pulps, Kamonwan Weerawanich
Chulalongkorn University Theses and Dissertations (Chula ETD)
Durian fruit possesses high nutritional value due to its enriched bioactive compounds such as phenolics, carotenoids, and vitamins. While various transcription factors (TFs) regulate the phenylpropanoid biosynthetic pathway, MYB TFs play a pivotal role in controlling key genes in this pathway. In this study, we identified candidate v-Myb myeloblastosis viral oncogene homolog, MYB TFs from our transcriptome database of the Monthong cultivar including five developmental/postharvest ripening stages. MYBs that were upregulated during the ripening stage were considered as candidate transcriptional activators, based on the positive correlation observed between flavonoid biosynthetic genes and flavonoid contents in ripe durian pulps. Conversely, MYBs …
Analyzing The Impact Of Zip Subfamily Ii Mutations On The Zinc And Iron Transport Of Zupt From Escherichia Coli, Bradley Vandecar
Analyzing The Impact Of Zip Subfamily Ii Mutations On The Zinc And Iron Transport Of Zupt From Escherichia Coli, Bradley Vandecar
Wayne State University Theses
The disfunction or misregulation of the ZIP family of metal ion transporters has been linked to a plethora of diseases and cancers in humans. Zn2+ is the primary substrate for ZIPs and is transported through the M1 metal binding site, though this activity is stimulated through the binding of Fe2+ in the M2 metal binding site. The members of ZIP Subfamily II are predicted to have an inactive M2 site due to the lack of Fe2+ transport and from a previously generated homology model. This work utilizes homology modelling, whole cell metal ion uptake assays, and growth studies in minimal …
In Silico Drug Discovery For Sars-Cov-2 Papain-Like Protease, Olivia Haskin
In Silico Drug Discovery For Sars-Cov-2 Papain-Like Protease, Olivia Haskin
Wayne State University Theses
SARS-CoV-2 Papain-like protease is an essential viral protein for viral replication. In our lab, we hypothesize that successful inhibition of this protease will stop viral replication and allow for clearance of the infection by the host. The work described here aimed to design and execute an in silico drug discovery workflow for successfully selecting PLpro inhibitors from the Mcule purchasable compound database. This work reports such a workflow and nine potential compounds for in vitro testing. This work also describes structural activity relationship analysis of a proprietary set of PLpro inhibitors synthesized by medicinal chemistry collaborators and makes recommendations for …
The Gastrointestinal-Brain-Microbiota Axis: A Promising Therapeutic Target For Ischemic Stroke, Yan-Hao Wei, Ren-Tang Bi, Yan-Mei Qiu, Chun-Lin Zhang, Jian-Zhuang Li, Ya-Nan Li, Bo Hu
The Gastrointestinal-Brain-Microbiota Axis: A Promising Therapeutic Target For Ischemic Stroke, Yan-Hao Wei, Ren-Tang Bi, Yan-Mei Qiu, Chun-Lin Zhang, Jian-Zhuang Li, Ya-Nan Li, Bo Hu
Faculty, Staff and Student Publications
Ischemic stroke is a highly complex systemic disease characterized by intricate interactions between the brain and gastrointestinal tract. While our current understanding of these interactions primarily stems from experimental models, their relevance to human stroke outcomes is of considerable interest. After stroke, bidirectional communication between the brain and gastrointestinal tract initiates changes in the gastrointestinal microenvironment. These changes involve the activation of gastrointestinal immunity, disruption of the gastrointestinal barrier, and alterations in gastrointestinal microbiota. Importantly, experimental evidence suggests that these alterations facilitate the migration of gastrointestinal immune cells and cytokines across the damaged blood-brain barrier, ultimately infiltrating the ischemic brain. …
Isotopic Evidence For Sources Of Dissolved Carbon And The Role Of Organic Matter Respiration In The Fraser River Basin, Canada, Britta M. Voss, Timothy I. Eglinton, Bernhard Peucker-Ehrenbrink, Valier Galy, Susan Q. Lang, Cameron Mcintyre, Robert G.M. Spencer, Ekaterina Bulygina, Zhaohui Aleck Wang, Katherine A. Guay
Isotopic Evidence For Sources Of Dissolved Carbon And The Role Of Organic Matter Respiration In The Fraser River Basin, Canada, Britta M. Voss, Timothy I. Eglinton, Bernhard Peucker-Ehrenbrink, Valier Galy, Susan Q. Lang, Cameron Mcintyre, Robert G.M. Spencer, Ekaterina Bulygina, Zhaohui Aleck Wang, Katherine A. Guay
OES Faculty Publications
Sources of dissolved and particulate carbon to the Fraser River system vary significantly in space and time. Tributaries in the northern interior of the basin consistently deliver higher concentrations of dissolved organic carbon (DOC) to the main stem than other tributaries. Based on samples collected near the Fraser River mouth throughout 2013, the radiocarbon age of DOC exported from the Fraser River does not change significantly across seasons despite a spike in DOC concentration during the freshet, suggesting modulation of heterogeneous upstream chemical and isotopic signals during transit through the river basin. Dissolved inorganic carbon (DIC) concentrations are highest in …
Unraveling The Regulatory Basis Of The Desiccation Tolerance Trait In Selaginella Lepidophylla, Madhavi Anuradha Ariyarathne Hewa Babarandhage
Unraveling The Regulatory Basis Of The Desiccation Tolerance Trait In Selaginella Lepidophylla, Madhavi Anuradha Ariyarathne Hewa Babarandhage
Dissertations and Theses
Desiccation tolerance was a crucial adaptation for plants during their transition to terrestrial environments. Some spike mosses, including S. lepidophylla, have evolved the remarkable ability to tolerate extreme desiccation, enabling survival in arid regions of the world. However, the regulatory basis of this trait remains unknown. This dissertation aims to unravel the genetic basis of desiccation tolerance in Selaginella lepidophylla and its potential for improving crop abiotic stress tolerance. To achieve this goal, three objectives were pursued. Objective 1 focused on determining the regulatory role of the SlbHLH transcription factor (TF) by overexpressing it in Arabidopsis thaliana to assess its …