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Full-Text Articles in Biochemistry

Mechanistic Determination Of Host Environmental Impacts On Shigella Virulence, Nicholas E. Dickenson Jul 2026

Mechanistic Determination Of Host Environmental Impacts On Shigella Virulence, Nicholas E. Dickenson

Funded Research Records

No abstract provided.


The Next Frontier In The Study Of Noncovalent Bonding: Transition Metals, Steve Scheiner Sep 2025

The Next Frontier In The Study Of Noncovalent Bonding: Transition Metals, Steve Scheiner

Chemistry and Biochemistry Faculty Publications

As work continues unabated in the study of noncovalent bonding, particularly σ-hole bonds, new challenges have emerged as the participation of transition metals in interactions of this sort is fast becoming appreciated. While there are certain similarities with the halogen, chalcogen, etc, bonds, in which the main group elements participate, there are certain unique properties of these metal atoms that must be analyzed before a complete understanding can be attained. As one example, these atoms tend to act simultaneously as both electron donors and acceptors, a synergistic action that amplifies the overall bond strength. Ideas are expressed in this paper …


Development Of Single Droplet Interface-Specific Sum Frequency Scattering Spectroscopy, Yi Rao Sep 2025

Development Of Single Droplet Interface-Specific Sum Frequency Scattering Spectroscopy, Yi Rao

Funded Research Records

No abstract provided.


Diets And Environmental Impacts - Generational Outlook, Aspen Hopper, Melanie Jex Apr 2025

Diets And Environmental Impacts - Generational Outlook, Aspen Hopper, Melanie Jex

Student Research Symposium

How different diets impact the environment: Are we aware?


Determining The Kinetic Basis Of Crispr-Cas12a2 Function, Sobita Kunwar, Thomson Hallmark, Dylan Keiser, Bronson Naegle, Sudeshna Manna, Aaron Thomas, Chase L. Beisel Apr 2025

Determining The Kinetic Basis Of Crispr-Cas12a2 Function, Sobita Kunwar, Thomson Hallmark, Dylan Keiser, Bronson Naegle, Sudeshna Manna, Aaron Thomas, Chase L. Beisel

Student Research Symposium

CRISPR- Cas (Clustered Regularly Interspaced Short Palindromic Repeats- CRISPR associated) systems are bacterial adaptive immune systems that protect bacteria against mobile genetic elements such as viruses and plasmids1,2.


Solving The Structure Of An Ancestral Protein Tyrosine Phosphatase, Natalie Turcsanski, Edna Armah Apr 2025

Solving The Structure Of An Ancestral Protein Tyrosine Phosphatase, Natalie Turcsanski, Edna Armah

Student Research Symposium

Protein tyrosine phosphatases (PTPs) regulate cell signaling by removing phosphate groups from tyrosine residues. Malfunction of these enzymes can lead to diseases such as diabetes and cancer. A conserved feature among PTPs is the catalytic acid loop, essential for phosphate removal. Computational analysis of PTP structures revealed that ancestral PTPs have considerable variation in conformations of this loop, sparking interest in their further study. The Asgard group, identified as ancestral to eukaryotic PTPs, was successfully expressed and purified under optimized conditions. Current efforts focus on optimizing crystallization to obtain larger crystals for structural analysis. This project will investigate the allosteric …


Determining The Function Of Type Iv-B Crispr-Cas Systems, Eric Jenkins, Brendon Guinn Apr 2025

Determining The Function Of Type Iv-B Crispr-Cas Systems, Eric Jenkins, Brendon Guinn

Student Research Symposium

CRISPR-Cas systems are a diverse group of prokaryotic adaptive immune systems that defend against Mobile Genetic Elements (MGEs) such as bacteriophages and plasmids. CRISPR-associated (Cas) proteins bind to guide RNAs (crRNAs) transcribed from a DNA repeat array (CRISPR array) containing spacers complementary to MGEs. Upon infection by a MGE, the Cas protein-crRNA complex binds to the target sequence in the invaders genome and cleaves the nucleic acid.


A New Crispr System Uses Energy Storage Indiscriminately, Brendon Guinn Feb 2025

A New Crispr System Uses Energy Storage Indiscriminately, Brendon Guinn

Research on Capitol Hill

CRISPR systems are Immune systems used by bacteria to defend against viruses. Recently, tools such as CRISPR Cas9 that are derived from CRISPR systems have been developed as a powerful tool to treat disease. 

Here we are studying a different CRISPR system related to the one used to develop the Cas9 tool. We study this system to discover new proteins that may be used to develop tools to cure diseases and diversify our arsenal of disease-fighting genetic sequences. 


Soil Organic Matter Processes From The Treetops To The Clay Particle: The Role Of Climate, Minerals, And Organic Matter Chemistry In Soil Carbon Accumulation And Stability, Jessica G. Murray Dec 2024

Soil Organic Matter Processes From The Treetops To The Clay Particle: The Role Of Climate, Minerals, And Organic Matter Chemistry In Soil Carbon Accumulation And Stability, Jessica G. Murray

All Graduate Theses and Dissertations, Fall 2023 to Present

Soils store more carbon than plants and the atmosphere, yet release ten times more carbon dioxide (CO2) to the atmosphere than human activities each year. Small shifts in the balance of soil carbon storage and soil carbon emissions could make climate change less severe, by acting as a sink for the carbon plants pull from the atmosphere, or make climate change worse, by releasing even more planet-warming greenhouse gases. The processes governing whether soils store or release carbon depend on tiny soil microorganisms which convert plant carbon to soil organic matter, releasing CO2 in the process. In …


A Preliminary Fuzzy Inference System For Predicting Atmospheric Ozone In An Intermountain Basin, John R. Lawson, Seth N. Lyman Sep 2024

A Preliminary Fuzzy Inference System For Predicting Atmospheric Ozone In An Intermountain Basin, John R. Lawson, Seth N. Lyman

Mathematics and Statistics Faculty Publications

High concentrations of ozone in the Uinta Basin, Utah, can occur after sufficient snowfall and a strong atmospheric anticyclone creates a persistent cold pool that traps emissions from oil and gas operations, where sustained photolysis of the precursors builds ozone to unhealthy concentrations. The basin's winter-ozone system is well understood by domain experts and supported by archives of atmospheric observations. Rules of the system can be formulated in natural language ("sufficient snowfall and high pressure leads to high ozone"), lending itself to analysis with a fuzzy-logic inference system. This method encodes human expertise as machine intelligence in a more prescribed …


A Structural Role For Tryptophan In Proteins, And The Ubiquitous Trp CΔ1—H&Centerdot;&Centerdot;&Centerdot;O=C (Backbone) Hydrogen Bond, Michal Szczygiel, Urszula Derewenda, Steve Scheiner, Wladek Minor, Zygmunt S. Derewenda Jun 2024

A Structural Role For Tryptophan In Proteins, And The Ubiquitous Trp CΔ1—H&Centerdot;&Centerdot;&Centerdot;O=C (Backbone) Hydrogen Bond, Michal Szczygiel, Urszula Derewenda, Steve Scheiner, Wladek Minor, Zygmunt S. Derewenda

Chemistry and Biochemistry Faculty Publications

Tryptophan is the most prominent amino acid found in proteins, with multiple functional roles. Its side chain is made up of the hydrophobic indole moiety, with two groups that act as donors in hydrogen bonds: the Nε—H group, which is a potent donor in canonical hydrogen bonds, and a polarized Cδ1—H group, which is capable of forming weaker, noncanonical bonds. Due to adjacent electron-withdrawing moieties, C—H···O hydrogen bonds are ubiquitous in macromolecules, albeit contingent on the polarization of the donor C—H group. Consequently, Cα groups (adjacent to the carbonyl and amino groups of flanking peptide …


Ancient Nitrogenases Are Atp Dependent, Derek F. Harris, Holly R. Rucker, Amanda K. Garcia, Zhi-Yong Yang, Scott D. Chang, Hannah Feinsilber, Betül Kaçar, Lance C. Seefeldt Jun 2024

Ancient Nitrogenases Are Atp Dependent, Derek F. Harris, Holly R. Rucker, Amanda K. Garcia, Zhi-Yong Yang, Scott D. Chang, Hannah Feinsilber, Betül Kaçar, Lance C. Seefeldt

Chemistry and Biochemistry Faculty Publications

Life depends on a conserved set of chemical energy currencies that are relics of early biochemistry. One of these is ATP, a molecule that, when paired with a divalent metal ion such as Mg2+, can be hydrolyzed to support numerous cellular and molecular processes. Despite its centrality to extant biochemistry, it is unclear whether ATP supported the function of ancient enzymes. We investigate the evolutionary necessity of ATP by experimentally reconstructing an ancestral variant of the N2-reducing enzyme nitrogenase. The Proterozoic ancestor is predicted to be ~540–2,300 million years old, post-dating the Great Oxidation Event. Growth …


An Investigation Of Protein Arginine Methyltransferase 1 Substrate Recognition Through Ribonucleoprotein Modifications, Isabella Beverly Lonardo May 2024

An Investigation Of Protein Arginine Methyltransferase 1 Substrate Recognition Through Ribonucleoprotein Modifications, Isabella Beverly Lonardo

Undergraduate Honors Capstone Projects

Just as humans need to communicate with each other, our cells have a series of processes that allows them to communicate from one to another. Protein Arginine Methyltransferase I is an enzyme that helps mediate cellular communication by selectively binding to target proteins and performing chemistry that has broad-reaching downstream effects. However, the mechanisms that underly PRMT1 selectivity have yet to be elucidated. This study uses alterations to a series of known targets, called ribonucleoproteins, to identify some of the characteristics that govern recognition by the PRMT1 enzyme. I have made significant progress in the creation, expression, and purification of …


Relation Between Halogen Bond Strength And Ir And Nmr Spectroscopic Markers, Akhtam Amonov, Steve Scheiner Nov 2023

Relation Between Halogen Bond Strength And Ir And Nmr Spectroscopic Markers, Akhtam Amonov, Steve Scheiner

Chemistry and Biochemistry Faculty Publications

The relationship between the strength of a halogen bond (XB) and various IR and NMR spectroscopic quantities is assessed through DFT calculations. Three different Lewis acids place a Br or I atom on a phenyl ring; each is paired with a collection of N and O bases of varying electron donor power. The weakest of the XBs display a C–X bond contraction coupled with a blue shift in the associated frequency, whereas the reverse trends occur for the stronger bonds. The best correlations with the XB interaction energy are observed with the NMR shielding of the C atom directly bonded …


C···O And Si···O Tetrel Bonds: Substituent Effects And Transfer Of The Sif3 Group, Zhihao Niu, Qiaozhuo Wu, Qingzhong Li, Steve Scheiner Jul 2023

C···O And Si···O Tetrel Bonds: Substituent Effects And Transfer Of The Sif3 Group, Zhihao Niu, Qiaozhuo Wu, Qingzhong Li, Steve Scheiner

Chemistry and Biochemistry Faculty Publications

The tetrel bond (TB) between 1,2-benzisothiazol-3-one-2-TF3-1,1-dioxide (T = C, Si) and the O atom of pyridine-1-oxide (PO) and its derivatives (PO-X, X = H, NO2, CN, F, CH3, OH, OCH3, NH2, and Li) is examined by quantum chemical means. The Si···O TB is quite strong, with interaction energies approaching a maximum of nearly 70 kcal/mol, while the C···O TB is an order of magnitude weaker, with interaction energies between 2.0 and 2.6 kcal/mol. An electron-withdrawing substituent on the Lewis base weakens this TB, while an electron-donating group has the opposite …


Ranchsatdb: A Genome-Wide Simple Sequence Repeat (Ssr) Markers Database Of Livestock Species For Mutant Germplasm Characterization And Improving Farm Animal Health, Naveen Duhan, Simardeep Kaur, Rakesh Kaundal Jul 2023

Ranchsatdb: A Genome-Wide Simple Sequence Repeat (Ssr) Markers Database Of Livestock Species For Mutant Germplasm Characterization And Improving Farm Animal Health, Naveen Duhan, Simardeep Kaur, Rakesh Kaundal

Plants, Soils and Climate Student Research

Microsatellites, also known as simple sequence repeats (SSRs), are polymorphic loci that play an important role in genome research, animal breeding, and disease control. Ranch animals are important components of agricultural landscape. The ranch animal SSR database, ranchSATdb, is a web resource which contains 15,520,263 putative SSR markers. This database provides a comprehensive tool for performing end-to-end marker selection, from SSRs prediction to generating marker primers and their cross-species feasibility, visualization of the resulting markers, and finding similarities between the genomic repeat sequences all in one place without the need to switch between other resources. The user-friendly online interface …


Growth, Morphological, And Biochemical Responses Of Four Native Species To Salinity Stress, Asmita Paudel, Youping Sun May 2023

Growth, Morphological, And Biochemical Responses Of Four Native Species To Salinity Stress, Asmita Paudel, Youping Sun

Plants, Soils, and Climate Faculty Publications

Native plants are of great value in landscape maintenance. Despite their importance in the landscape, the salt tolerance of most native plants has received little attention. The present research was designed to assess morphological, physiological, and biochemical responses of four Utah-native plants [Arctostaphylos uva-ursi (kinnikinnick), Cercocarpus ledifolius (curl-leaf mountain mahogany), Cercocarpus montanus ‘Coy’ (alder-leaf mountain mahogany), and Shepherdia ×utahensis ‘Torrey’ (hybrid buffaloberry)] at different salinity levels. Each species was irrigated with a nutrient solution at an electrical conductivity (EC) of 1.2 dS·m-1 (control) or saline solutions at ECs of 5.0 or 10.0 dS·m-1 for 8 …


Discovery And Characterization Of A Prophage Encoded Anti-Crispr Against The Type Iv-A Crispr System, Andrew Williams Apr 2023

Discovery And Characterization Of A Prophage Encoded Anti-Crispr Against The Type Iv-A Crispr System, Andrew Williams

Student Research Symposium

CRISPR Systems are adaptive immune systems in bacteria used to defend against mobile genetic elements such as bacteriophages, or bacterial viruses, and plasmids. They use a protein complexed with a guide RNA to target the protein to a foreign invader and neutralize it by cleaving its genetic information. In order to survive and keep infecting bacteria, bacteriophages likewise have developed machinery used to inhibit CRISPR immunity in the form of anti-CRISPR (Acr) proteins. The type IV-A system is a recently discovered and characterized system by the Jackson lab. It has been shown to defend against plasmids, but further data on …


Cycloaddition Of Aryldiazoacetates With Terminal Alkynes And Nitriles Via A Bioinspired Cobalt Complex, Liming Tan Apr 2023

Cycloaddition Of Aryldiazoacetates With Terminal Alkynes And Nitriles Via A Bioinspired Cobalt Complex, Liming Tan

Student Research Symposium

In this study, we present a novel method for the efficient cycloaddition of aryl diazoacetates with both terminal alkynes and nitriles, employing a bioinspired cobalt complex as a catalyst. Our findings indicate that terminal alkynes react with aryl diazoacetates to yield a cyclopropenation product through a 2+1 cycloaddition reaction. Meanwhile, nitriles react with aryl diazoacetates to produce an oxazole product via a 2+3 cycloaddition reaction. These results have significant implications for the development of new synthetic routes towards cyclopropenation and oxazole compounds.


Functional Characterization Of The Newly Discovered Type V Crispr-Cas Protein Cas12a2, Dylan J. Keiser Dec 2022

Functional Characterization Of The Newly Discovered Type V Crispr-Cas Protein Cas12a2, Dylan J. Keiser

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Similarly to people, bacteria are under the treat of infection by viruses. To circumvent these threats, bacteria evolve complex immune systems. Our understanding of some of these immune systems has led to many advancements in the field of Biotechnology including tools that made expressing proteins for study in a lab easier, tools that revolutionized the feasibility of gene editing, and tools that could change the way we think about viral diagnostics and cancer therapeutics. A certain type of immune system that bacteria use to fight virus is called a CRISPR system. Presented here is work to understand the function of …


Structural And Functional Studies Of Mtr4 And The Tramp Rna Surveillance Complex, Sean Johnson Sep 2022

Structural And Functional Studies Of Mtr4 And The Tramp Rna Surveillance Complex, Sean Johnson

Funded Research Records

No abstract provided.


Collaborative Research: Developing Advanced Magnesium Electrolytes Toward Low Cost, High Energy Density Mg Batteries, Tianbiao Liu Aug 2022

Collaborative Research: Developing Advanced Magnesium Electrolytes Toward Low Cost, High Energy Density Mg Batteries, Tianbiao Liu

Funded Research Records

No abstract provided.


Collaborative Research: Surface-Specific Aerosol Chemistry: Direct Observations, Kinetics, And Environmental Impact, Yi Rao Jun 2022

Collaborative Research: Surface-Specific Aerosol Chemistry: Direct Observations, Kinetics, And Environmental Impact, Yi Rao

Funded Research Records

No abstract provided.


Utah Tick Surveillance An Animated Public Service Announcement, Keith Wilson May 2022

Utah Tick Surveillance An Animated Public Service Announcement, Keith Wilson

Undergraduate Honors Capstone Projects

As the United States’ population grows, we develop more land into housing and recreate farther into wilderness areas, consequentially encountering ticks with increasing frequency. As the climate continues to change, tick population distributions are also changing, influencing our population’s exposure to tick-borne diseases. Lyme disease, a tick-borne disease named after Lyme, Connecticut, is one of the fastest growing emerging diseases in North America, and the most prevalent vector-borne infection in the United States. There are two species of tick in North America, Ixodes scapularis and Ixodes pacificus, known to be carriers of the causative agent of Lyme disease, a …


Test-Driving The Next Generation Of Crispr Gene Editing, Olivia Gornichec, Kailey Mayer Feb 2022

Test-Driving The Next Generation Of Crispr Gene Editing, Olivia Gornichec, Kailey Mayer

Research on Capitol Hill

USU team Kailey, recent graduate of animal science, and Olivia, senior in biochemistry, have led and funded this project through a student grant. CRISPR has been making waves in the scientific community for its potential to help us edit genomes. However, that is just one of the known types of CRISPR, and other types aren’t in forms that are accessible to study. Kailey and Olivia have successfully cloned Type IV-B into a plasmid that can now be used to perform further research into what this system does. The two students never expected that, as undergrads, they would make a foundation-level …


Discovering Virally Encoded Proteins That Block Type Iv Crispr Immune Systems, Andrew Williams Dec 2021

Discovering Virally Encoded Proteins That Block Type Iv Crispr Immune Systems, Andrew Williams

Fall Student Research Symposium 2021

Bacteria and the viruses that infect them have been at war from the beginnings of life until today. Due to selective pressure from viral infection, bacteria have evolved various biological defense systems, including CRISPR-Cas systems that use a genetic memory of previous viral encounters to protect against future invasions. However, recently it has been shown that viruses have evolved counter-strategies to evade CRISPR systems. Virally encoded proteins called anti-CRISPRs use a variety of mechanisms to block the activity of CRISPR immune systems in order to infect bacterial cells. The Jackson lab at USU recently showed that a Type IV-A CRISPR-Cas …


Characterization Of The Atpase Activity Of Casding, Christian Cahoon Dec 2021

Characterization Of The Atpase Activity Of Casding, Christian Cahoon

Fall Student Research Symposium 2021

The battle between bacteria and phage has been ongoing for eons. This battle has generated the evolutionary pressure necessary for the development of microbial immune systems. Characterization of these systems has led to the discovery of molecular tools such CRISPR-Cas systems. This system uses a genetic memory of past viral infections coupled with associated proteins to form ribonucleoprotein complexes which seek out and destroy foreign genetic elements. These systems have been repurposed by scientists to create powerful gene editing tools such as Cas9. With such powerful molecular tools being discovered, we have pursued the characterization of a relatively unknown system, …


Characterizing The Mechanisms Of C. Elegans Prmt1 Temperature Dependence, Arianna Towne Dec 2021

Characterizing The Mechanisms Of C. Elegans Prmt1 Temperature Dependence, Arianna Towne

Fall Student Research Symposium 2021

Over time, cellular enzymes evolve through amino acid mutations which allow them to remain functional at temperatures specific to the host organism. This activity may be partially or completely lost when enzymes are removed from their optimal temperature range, as is observed for the C. elegans protein arginine methyltransferase 1 (cPRMT1). This construct demonstrates maximum enzymatic activity at the C. elegans optimum of 20°C, but no activity at 37°C where activity for mammalian PRMT1 variants is observed. Given dysregulation of PRMT1 has been linked to various disease states, we are interested in exploiting the biophysical mechanisms of cPRMT1 temperature dependence …


Determining The Nucleic Acid Binding Affinities Of Crispr-Associated Ding (Casding), Matt Armbrust Dec 2021

Determining The Nucleic Acid Binding Affinities Of Crispr-Associated Ding (Casding), Matt Armbrust

Fall Student Research Symposium 2021

CRISPR-Cas systems are adaptive prokaryotic immune systems that enable host cells to defend against attack from foreign nucleic acids such as phage infections or plasmids. CRISPR-Cas systems are diverse and encompass 2 classes, 6 types, and 33 subtypes. The Type IV-A CRISPR-Cas system from Pseudomonas aeruginosa strain 83 is composed of five different genes (csf1, csf2, csf3, cas6, and dinG). Type IV-A systems are poorly understood, and currently there is little research detailing their biological and biochemical mechanism of immunity. CasDinG, an ancillary protein within the Type IV-A system, is required for an immune response in vivo. However, the role …


Determination Of The Structure, Function, And Mechanism Of Type Iv Crispr-Cas Prokaryotic Defense Systems, Hannah Nicole Taylor Aug 2021

Determination Of The Structure, Function, And Mechanism Of Type Iv Crispr-Cas Prokaryotic Defense Systems, Hannah Nicole Taylor

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Bacteria are under constant threat of invasion by bacteriophage (viruses which infect bacteria). To prevent bacteriophage from entering and overtaking the bacteria, bacteria utilize defense systems to identify and destroy foreign elements. One method of defense is called CRISPR-Cas (Clustered Regularly Interspaced Short Palindromic Repeats – CRISPR-Associated). Many different bacteria and most archaea use CRISPR-Cas systems. There are many diverse types of CRISPR-Cas systems, each of which provides defense in a slightly different way. One such CRISPR-Cas type is called type IV. The type IV CRISPR-Cas system is poorly understood and there are very few studies published on type IV …