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Articles 301 - 330 of 402
Full-Text Articles in Biochemistry
The Effects Of Exogenously Applied Antioxidants On Plant Growth And Resilience, Aline Rodrigues De Queiroz, Connor Hines, Jeremy Brown, Seema Sahay, Jithesh Vijayan, Julie M. Stone, Nate Bickford, Melissa Wuellner, Katarzyna Glowacka, Nicole R. Buan, Rebecca Roston
The Effects Of Exogenously Applied Antioxidants On Plant Growth And Resilience, Aline Rodrigues De Queiroz, Connor Hines, Jeremy Brown, Seema Sahay, Jithesh Vijayan, Julie M. Stone, Nate Bickford, Melissa Wuellner, Katarzyna Glowacka, Nicole R. Buan, Rebecca Roston
Department of Biochemistry: Faculty Publications
Plant growth and resilience require balancing an inherently oxidative metabolism with powerful antioxidant systems that help maintain homeostasis. When the environment changes, reactive oxygen species are potent indicators of that change, allowing adaptation through re-balancing metabolism and antioxidant systems. A large body of evidence supports the use of exogenously applied antioxidants to improve both plant growth and their resilience to stress. Notably, some phenotypic effects are similar upon the application of chemically diverse antioxidants, while others are distinct. In this review, we analyze research from antioxidant treatment experiments and highlight the similarities in their practical applications and their effects on …
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 …
Observing Ceramide Pathway With Ferroptosis Via Mia Paca-2 Cell Treatment With Rsl3, Tazrin Rahman
Observing Ceramide Pathway With Ferroptosis Via Mia Paca-2 Cell Treatment With Rsl3, Tazrin Rahman
AUCTUS: The Journal of Undergraduate Research and Creative Scholarship
Composed of sphingosine and a fatty acid, ceramides are lipid molecules that serve as key metabolic signaling molecules of a sphingolipid pathway. While it acts as a precursor of complex sphingolipids, inducing ceramide generation can cause cell stress leading to subsequent cell death via apoptosis, necrosis, and even mitophagy. With regards to cell death specifically, a novel form of regulated cell death, ferroptosis, has recently been recognized of necrotic nature. Its unique morphological features and distinct properties have been observed over the last several decades; however, the molecular features were not identifiable as pure evidence of cell death, until recently …
Following Faculty Engaging In Collaborative Action Research To Approach Curricular Change In Undergraduate Biochemistry, Christopher Nix
Following Faculty Engaging In Collaborative Action Research To Approach Curricular Change In Undergraduate Biochemistry, Christopher Nix
Electronic Theses and Dissertations, 2020-2023
This study engaged in a curricular redesign of an undergraduate biochemistry course undertaken by a collaborative action research group. The initial portion of this study investigated student conceptual understanding of foundational concepts via a rigorously tested concept inventory. the impact of the redesign on the student foundational conceptual understanding was determined by comparison with a baseline data set. Findings suggest that students enter and exit the biochemistry course with little understanding of key foundational concepts. Examination of student performance after the incorporation of creative exercises showed a significant impact of the curricular changes on two of the concepts of interest. …
Tagging Atg5 With An Epitope Tag To Measure The Amount Of Atg12-5 Conjugation In Atg10 Mutants, Sophie Campbell
Tagging Atg5 With An Epitope Tag To Measure The Amount Of Atg12-5 Conjugation In Atg10 Mutants, Sophie Campbell
Senior Honors Theses and Projects
Autophagy is a necessary recycling process that occurs in cells, but the functions of the proteins that carry this out are not completely understood. The protein ATG10 has a distinct role in forming autophagosomes, large double membrane vesicles necessary for this process. ATG10 forms a covalent bond between the proteins ATG12 and ATG5 but its final effect on autophagosome formation is still unclear. We are using DNA manipulation techniques to add a myc epitope tag to yeast ATG5 which will allow us to measure the effect of atg10 mutants on ATG12-5 conjugation via Western Blot. These results will help us …
Establishing A Biochemical System For The Purification And Atpase Activity Of Gst-Dbp5, Sarah Utley, Rachel E. Rigsby Phd, Rebecca L. Adams Phd
Establishing A Biochemical System For The Purification And Atpase Activity Of Gst-Dbp5, Sarah Utley, Rachel E. Rigsby Phd, Rebecca L. Adams Phd
Science University Research Symposium (SURS)
The export of mRNA out of the nucleus is a crucial step for eukaryotic gene expression. The export of mRNA transcripts is aided by Mex67, which allows export through the nuclear pore complex doorways in the nuclear envelope. Once out of the nucleus, a protein known as Dbp5, bound to ATP, Gle1, and Nup42 aids in the directionality of mRNA export by helping remove Mex67 from the mRNA strand. Following interaction with RNA, Dbp5 then hydrolyzes ATP so that it unbinds the mRNA, allowing for enzyme recycling. The goal of this study is to explore the ATPase activity of Saccharomyces …
Identification Of Rickettsia Prowazekii Methionine Aminopeptidase Inhibitors And Development Of Thermal Shift Assays For Burkholderia Pseudomallei Ispf And Sars-Cov-2 3cl Protease, Ishpriya Sharma
Graduate Research Theses & Dissertations
There is a crucial need for new antibacterial agents to combat the increase in antibiotic resistance. Methionine aminopeptidase (MetAp) is an enzyme that removes the amino-terminal methionine residue from newly synthesized proteins, an important step in the maturation of proteins. As such, MetAp is a target for the development of antibacterial and anticancer agents. One such bacterial target is Rickettsia prowazekii (Rp), the causative agent of epidemic typhus. To discover new inhibitors of RpMetAp1, the MMV Malaria Box, which is a collection of 400 compounds with drug-like and probe-like compounds, was screened using a high throughput fluorescence-based RpMetAp1 enzyme inhibition …
Structure–Activity Relationship Studies On 6-Chloro-1-Phenylbenzazepines Leads To The Identification Of A New Dopamine D1 Receptor Antagonist, Rajan Giri, Hari K. Namballa, Vishwashiv Emogaje, Wayne W. Harding
Structure–Activity Relationship Studies On 6-Chloro-1-Phenylbenzazepines Leads To The Identification Of A New Dopamine D1 Receptor Antagonist, Rajan Giri, Hari K. Namballa, Vishwashiv Emogaje, Wayne W. Harding
Publications and Research
The 1-phenylbenzazepine template has yielded a number of D1R-like ligands, which, though useful as pharmacological tools, have significant drawbacks in terms of selectivity versus D5R as well as pharmacokinetic behavior. A number of 1-phenylbenzazepines contain a 6-chloro functional group, but extensive SAR studies around the 6-chloro-1-phenylbenzazepine framework have not been reported in the literature. To further understand the tolerance of the 6-chloro-1-phenylbenzazepine template for various substituent groups towards affinity and selectivity at D1R, we synthesized two series of analogs with structural variations at the C-7, C-8, N-3, C-3′ and C-4′ positions. The series 2 analogs differed from …
Plastic Recognition And Electrogenic Uniport Translocation Of 1st-, 2nd-, And 3rd-Row Transition And Post-Transition Metals By Primary-Active Transmembrane P1b-2-Type Atpase Pumps, Sameera S. Abeyrathna, Nisansala S. Abeyrathna, Priyanka Basak, Gordon W. Irvine, Limei Zhang, Gabriele Meloni
Plastic Recognition And Electrogenic Uniport Translocation Of 1st-, 2nd-, And 3rd-Row Transition And Post-Transition Metals By Primary-Active Transmembrane P1b-2-Type Atpase Pumps, Sameera S. Abeyrathna, Nisansala S. Abeyrathna, Priyanka Basak, Gordon W. Irvine, Limei Zhang, Gabriele Meloni
Department of Biochemistry: Faculty Publications
Transmembrane P-type ATPase pumps catalyze the extrusion of transition metal ions across cellular lipid membranes to maintain essential cellular metal homeostasis and detoxify toxic metals. Zn()-pumps of the P-type subclass, in addition to Zn , select diverse metals (Pb, Cdand Hg) at their transmembrane binding site and feature promiscuous metal-dependent ATP hydrolysis in the presence of these metals. Yet, a comprehensive understanding of the transport of these metals, their relative translocation rates, and transport mechanism remain elusive. We developed a platform for the characterization of primary-active Zn()-pumps in proteoliposomes to study metal selectivity, translocation events and transport mechanism in real-time, …
The Role Of Myocardin In The Progression Of Non-Small Cell Lung Cancer, Soromidayo Akinsiku
The Role Of Myocardin In The Progression Of Non-Small Cell Lung Cancer, Soromidayo Akinsiku
Biotechnology Theses
Lung cancer is the leading cause of cancer-related mortality in the world and NSCLC accounts for 85% of all lung cancer cases. The mainstay of treatment for patients with stage I, II and IIIA NSCLC is surgery, followed by post-operative cisplatin-based chemotherapy. Additional adjuvant therapy involving targeted tyrosine kinase inhibitors has been in use, however even for the targeted therapy, resistance eventually develops. Therefore, there is a need for identifying novel targets for this life-threatening disease. Given that preliminary studies in Ikebe lab revealed that myocardin knockdown significantly promoted caspase-3 degradation, in this study, using myocardin siRNA, we investigated the …
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 …
การเกิดภาวะพหุสัณฐานทางพันธุกรรมของยีนในวิถีวิตามินดีและความเสี่ยงต่อภาวะออทิซึมสเปกตรัมในประชากรไทย, ชาญณรงค์ แซ่ฉั่ว
การเกิดภาวะพหุสัณฐานทางพันธุกรรมของยีนในวิถีวิตามินดีและความเสี่ยงต่อภาวะออทิซึมสเปกตรัมในประชากรไทย, ชาญณรงค์ แซ่ฉั่ว
Chulalongkorn University Theses and Dissertations (Chula ETD)
กลุ่มอาการออทิซึมสเปกตรัม (Autism spectrum disorder; ASD) เป็นปัญหาสุขภาพระดับโลกที่สำคัญ โดยพบว่ามีความชุกของโรคที่เพิ่มสูงขึ้น อย่างไรก็ตามสาเหตุและกลไกในการเกิดภาวะออทิซึมสเปกตรัมยังไม่ทราบแน่ชัดอาจเกี่ยวข้องกับปัจจัยด้านพันธุกรรมและสิ่งแวดล้อม โดยปัจจุบันมีรายงานถึงบทบาทของวิตามินกับภาวะออทิซึมสเปกตรัม วัตถุประสงค์ของการศึกษานี้คือศึกษาการเกิดภาวะพหุสัณฐานทางพันธุกรรมของยีนในวิถีเมทาบอลิกของวิตามินดีและความเสี่ยงต่อการเกิดภาวะออทิซึมสเปกตรัมและระดับความรุนแรงของโรคในเด็กไทย การศึกษานี้มีจำนวนอาสาสมัคร 276 ราย โดยเป็นกลุ่มเด็กที่มีภาวะออทิซึมสเปกตรัม 169 ราย และกลุ่มควบคุมเป็นเด็กที่ไม่มีโรคทางระบบประสาท 107 ราย ซึ่งได้ทำการตรวจวิเคราะห์ภาวะพหุสัณฐานทางพันธุกรรมของยีน CYP2R1, CYP27B1, GC และ VDR โดยเทคนิค TaqMan-based real-time Polymerase Chain Reaction (PCR) และตรวจวิเคราะห์ระดับวิตามินดีในกระแสเลือดโดยใช้เทคนิค Chemiluminescence Immunoassay (CLIA) โดยเด็กที่พบภาวะออทิซึมสเปกตรัมจะได้รับการตรวจระดับความรุนแรงของภาวะออทิซึมสเปกตรัมด้วย Childhood Autism Rating Scale, 2nd Edition (CARS2) โดยผลที่ได้จากการศึกษาพบว่า การเกิดภาวะพหุสัณฐานทางพันธุกรรมของยีน CYP2R1, CYP27B1, VDR และ GC (rs4588) ไม่มีความสัมพันธ์กับการเกิดภาวะออทิซึมสเปกตรัมและความรุนแรงของอาการออทิซึมสเปกตรัม อย่างไรก็ตามการศึกษาชี้ให้เห็นว่า การเกิดภาวะพหุสัณฐานทางพันธุกรรมของยีน GC (rs7041 (A>C)) มีความสัมพันธ์อย่างมีนัยสำคัญกับความเสี่ยงที่เพิ่มขึ้นต่อการเกิดภาวะออทิซึมสเปกตรัมและความรุนแรงของอาการออทิซึมสเปกตรัมด้วย โดยเฉพาะอย่างยิ่งบุคคลที่มีการขาดระดับวิตามินดีร่วมด้วย นอกจากนี้ผลศึกษาพบว่าไอโซฟอร์มของ GC1s และ GC1s-GC1s ฟีโนไทป์มีความสัมพันธ์อย่างมีนัยสำคัญกับความเสี่ยงต่อการเกิดภาวะออทิซึมสเปกตรัมตลอดจนความรุนแรงของอาการออทิซึมสเปกตรัม โดยสรุปการศึกษาวิจัยในครั้งนี้ชี้ให้เห็นว่า การเกิดภาวะพหุสัณฐานทางพันธุกรรมของยีน GC (rs7041 (A>C)) และไอโซฟอร์ม GC1s อาจเป็นตัวบ่งชี้ทางพันธุกรรมที่สามารถช่วยในการประเมินความเสี่ยงต่อการเกิดภาวะออทิซึมสเปกตรัมและความรุนแรงของอาการออทิซึมสเปกตรัมในเด็กไทยได้ในอนาคต อย่างไรก็ตามการศึกษาในอนาคตควรศึกษาในกลุ่มประชากรที่ใหญ่ขึ้นเพื่อยืนยันผลการศึกษาวิจัยครั้งนี้
Development And Biological Evaluation Of Selective Small-Molecule Inhibitors Of The Human Cytochrome P450 1b1, Austin Hachey
Development And Biological Evaluation Of Selective Small-Molecule Inhibitors Of The Human Cytochrome P450 1b1, Austin Hachey
Theses and Dissertations--Chemistry
The human cytochrome P450 1B1 (CYP1B1) is an emerging target for small- molecule therapeutics. Several solid tumors overexpress CYP1B1 to the degree that it has been referred to as a universal tumor antigen. Conversely, its expression is low in healthy tissues. CYP1B1 may drive tumorigenesis through promoting the formation of reactive toxins from environmental pollutants or from endogenous hormone substrates. Additionally, the expression of CYP1B1 in tumors is associated with resistance to several common chemotherapies and with poor prognoses in cancer patients. However, inhibiting CYP1B1 with small molecules has been demonstrated in cellular and murine model systems to reverse this …
Modulatory Effects Of Deacetylated Sialic Acids (A Sugar Residue) In Nk-Mediated Cytotoxicity And Targeted Therapy By Receptor Tyrosine Kinase Inhibitors, Mathias Tawiah Anim
Modulatory Effects Of Deacetylated Sialic Acids (A Sugar Residue) In Nk-Mediated Cytotoxicity And Targeted Therapy By Receptor Tyrosine Kinase Inhibitors, Mathias Tawiah Anim
Electronic Theses and Dissertations
The complex nature of the biology of cancer is still an unraveling science, yielding several biomarkers that have served as molecular targets for detection and treatment of the disease. How sugars, glycans, play a role has remained relatively uninvestigated. Sialic acid (Sia), a sugar residue on the surface of cells, has been identified as a hallmark of cancer and its progression. Sialic acid can be highly functionalized, but we became interested in acetylated Sias. This functional group is modulated by Sialate O- acetylesterase (encoded by the gene SIAE) and Sialate O-acetyltransferase (encoded by CASD1), enzymes that play a crucial role …
Approaches To Avoid Proteolysis During Protein Expression And Purification, Gary T. Henehan, Barry J. Ryan, Gemma K. Kinsella
Approaches To Avoid Proteolysis During Protein Expression And Purification, Gary T. Henehan, Barry J. Ryan, Gemma K. Kinsella
Books/Book Chapters/ Proceedings
All cells contain proteases, which hydrolyze the peptide bonds between amino acids of a protein backbone. Typically, proteases are prevented from nonspecific proteolysis by regulation and by their physical separation into different subcellular compartments; however, this segregation is not retained during cell lysis, which is the initial step in any protein isolation procedure. Prevention of proteolysis during protein purification often takes the form of a two-pronged approach: first, inhibition of proteolysis in situ, followed by the early separation of the protease from the protein of interest via chromatographic purification. Protease inhibitors are routinely used to limit the effect of the …
Structural And Spectroscopic Study Of New Copper(Ii) And Zinc(Ii) Complexes Of Coumarin Oxyacetate Ligands And Determination Of Their Antimicrobial Activity, Muhammad Mujahid, Natasha Trendafilova, Georgina Rosair, Kevin Kavanagh, Maureen Walsh, Bernadette Creaven, Ivelina Georgieva
Structural And Spectroscopic Study Of New Copper(Ii) And Zinc(Ii) Complexes Of Coumarin Oxyacetate Ligands And Determination Of Their Antimicrobial Activity, Muhammad Mujahid, Natasha Trendafilova, Georgina Rosair, Kevin Kavanagh, Maureen Walsh, Bernadette Creaven, Ivelina Georgieva
Articles
Tackling antimicrobial resistance is of increasing concern in a post-pandemic world where overuse of antibiotics has increased the threat of another pandemic caused by antimicrobial-resistant pathogens. Derivatives of coumarins, a naturally occurring bioactive compound, and its metal complexes have proven therapeutic potential as antimicrobial agents and in this study a series of copper(II) and zinc(II) complexes of coumarin oxyacetate ligands were synthesised and characterised by spectroscopic techniques (IR, 1H, 13C NMR, UV-Vis) and by X-ray crystallography for two of the zinc complexes. The experimental spectroscopic data were then interpreted on the basis of molecular structure modelling and subsequent spectra simulation …
Structural Files For The Etr1 Ethylene-Receptor Dimer Based On Computational Modeling, Beenish J. Azhar, Safdar Abbas, Sitwat Aman, Maria V. Yamburenko, Wei Chen, Lena Muller, Buket Uzun, David A. Jewell, Jian Dong, Samina N. Shakeel, Georg Groth, Brad M. Binder, Gevorg Grigoryan, G. Eric Schaller
Structural Files For The Etr1 Ethylene-Receptor Dimer Based On Computational Modeling, Beenish J. Azhar, Safdar Abbas, Sitwat Aman, Maria V. Yamburenko, Wei Chen, Lena Muller, Buket Uzun, David A. Jewell, Jian Dong, Samina N. Shakeel, Georg Groth, Brad M. Binder, Gevorg Grigoryan, G. Eric Schaller
Dartmouth Scholarship
Structural models for the ETR1 homodimer were generated with AlphaFold-Multimer. Coppers were modeled under two potential coordinations involving Cys65 and His69 of the ETR1 homodimer, one in which the two coppers are bound independently and do not share an interaction with each other, and another where they are closely bonded.
See the following publication for details: Azhar, B.J., Abbas, S., Aman, S., Yamburenko, M.V., Chen, W., Müller, L., Uzun, B., Jewell, D.A., Dong, J., Shakeel, S.N., Groth, G., Binder, B.M., Grigoryan, G., Schaller, G.E. (2023) Basis for high-affinity ethylene binding by the ethylene receptor ETR1 of Arabidopsis. Proc. Natl. Acad. …
Design Of Block Copolymer With Tunable Hydrophobic/Hydrophilic/Fluorophilic Interactions, Tatiane De Fatima Dutra
Design Of Block Copolymer With Tunable Hydrophobic/Hydrophilic/Fluorophilic Interactions, Tatiane De Fatima Dutra
Theses, Dissertations and Culminating Projects
Block copolymers (BCP) with balanced interactions and their resultant bulk-phase self-assembly have become increasingly important in advancing nanotechnology, separation, and energy applications. However, a few reports have addressed the synthesis challenge and bulk-phase self-assembly of such triblock copolymers. This thesis presents a facile route for preparing triblock copolymer via controlled radical and organocatalytic ring-opening polymerization that allows precise control over the incorporation of individual moieties in resultant polymer, responsible for balanced hydrophilic, hydrophobic/lipophilic, and fluorophilic interactions. Synthesized polymer with suggested self-assembled 2D lamellar nanostructure exhibits high-temperature stability. The long-term goal of this work is to selectively use this polymer class …
A Computational Study Of The Copper-Catalyzed Trifluoromethylation Of Boronic Acids, Kevin Nyhuis
A Computational Study Of The Copper-Catalyzed Trifluoromethylation Of Boronic Acids, Kevin Nyhuis
Theses, Dissertations and Culminating Projects
This work is a computational study of a reaction mechanism for the trifluoromethylation of boronic acids. Three steps of the proposed reaction mechanism are studied, •CF3 addition to a copper catalyst center, base promoted transmetalation between copper and aryl boronic acid, and bond forming reductive elimination in which the CF3 and aryl substituent form a bond. Limited information is known about this mechanism. This study uses computational methods to attempt to elucidate the mechanism and provide the groundwork for potential improvement. Quantum chemical methods in conjunction with tight-binding based conformational sampling methods are used to investigate the possible …
Investigating The Roles Of Active Site Residues K59, K119 And E168 In M. Tuberculosis Indole-3-Glycerol Phosphate Synthase, Maryum M. Bhatti
Investigating The Roles Of Active Site Residues K59, K119 And E168 In M. Tuberculosis Indole-3-Glycerol Phosphate Synthase, Maryum M. Bhatti
Theses, Dissertations and Culminating Projects
Tuberculosis (TB) is a disease that is caused by a bacteria called Mycobacterium tuberculosis and primarily attacks the lungs but can spread to other areas of the body as well. TB can develop resistance to drugs that may be used to cure the disease. Multidrug resistant TB is especially a growing issue as it does not respond to the two most powerful anti-TB drugs, isoniazid and rifampicin. For this reason, finding new ways to target TB are critically needed. One possible way to do this is to target the enzymes in the tryptophan biosynthetic pathway of M. tuberculosis. Studies have …
Arginine-178 Is An Essential Residue For Itpa Function, Nicholas E. Burgis, Caitlin April, Kandise Vanwormer
Arginine-178 Is An Essential Residue For Itpa Function, Nicholas E. Burgis, Caitlin April, Kandise Vanwormer
Chemistry and Biochemistry Faculty Publications
The inosine triphosphate pyrophosphatase (ITPA) enzyme plays a critical cellular role by removing noncanonical nucleoside triphosphates from nucleotide pools. One of the first pathological ITPA mutants identified is R178C (rs746930990), which causes a fatal infantile encephalopathy, termed developmental and epileptic encephalopathy 35 (DEE 35). The accumulation of noncanonical nucleotides such as inosine triphosphate (ITP), is suspected to affect RNA and/or interfere with normal nucleotide function, leading to development of DEE 35. Molecular dynamics simulations have shown that the very rare R178C mutation does not significantly perturb the overall structure of the protein, but results in a high level of structural …
Role Of Grb2 Intracellular Localization In Progesterone Receptor Positive Breast Cancer, Nattamolphan Wittayavimol
Role Of Grb2 Intracellular Localization In Progesterone Receptor Positive Breast Cancer, Nattamolphan Wittayavimol
Chulalongkorn University Theses and Dissertations (Chula ETD)
Progesterone receptor (PR) extranuclear signaling mediates mainly through PR polyproline domain (PPD) interaction with SH3 domain of cytoplasmic signaling molecules. PR-PPD interfered with Grb2-SOS binding through SH3 interaction resulting in decreased cell proliferation and correlates with a good prognosis in PR positive breast cancer. Grb2 is a key adaptor molecule and expressed in both nucleus and cytoplasm. We hypothesized that change in Grb2 localization alters PR transcription resulting in better clinical outcomes in PR positive breast cancer. BT-474 breast cancer cells expressing inducible Grb2-SV402x (nuclear Grb2, nuGrb2) or Grb2-MYR (membrane Grb2, memGrb2) were constructed. MemGrb2-BT-474 showed higher levels of PR …
Roles Of Progesterone Signaling On Dna Repair And Cell Survival In Ovarian Cancer Cells, Pattarasiri Rangsrikitphoti
Roles Of Progesterone Signaling On Dna Repair And Cell Survival In Ovarian Cancer Cells, Pattarasiri Rangsrikitphoti
Chulalongkorn University Theses and Dissertations (Chula ETD)
Every year over 300,000 women worldwide are diagnosed with ovarian cancer and half of these patients die from this disease. The symptoms of ovarian cancer are very general and often confused with other common female diseases making ovarian cancer a challenging disease to diagnose and treat. Platinum-based chemotherapy, including cisplatin, stands as the first-line treatment for ovarian cancer. However, chemotherapy resistance remains a continuing problem, contributing to a high mortality rate. Progesterone receptor (PR) signaling has been implicated in various aspects of ovarian cancer biology. Clinical studies show a positive correlation between PR expression, improved patient survival and cisplatin response, …
Cisplatin - Loaded Calcium Citrate Nanoparticlesfor Inhibition Of Lung Cancer Cell Growthand Quantum Mechanical Study Of Cisplatin And Citrate, Lipika Oopkaew
Cisplatin - Loaded Calcium Citrate Nanoparticlesfor Inhibition Of Lung Cancer Cell Growthand Quantum Mechanical Study Of Cisplatin And Citrate, Lipika Oopkaew
Chulalongkorn University Theses and Dissertations (Chula ETD)
The International Organization for Research on Cancer (International Agency for Research on Cancer (IARC) issued a statement saying lung cancer is a cancer with high incidence rates of new cases and deaths. Although there are current therapeutic approaches such as surgery, radiation therapy, and chemotherapy. However, these treatments exhibit ineffectiveness; the main limitation is severe side effects to normal cells or non-target organs. To address this challenge, the development of targeted therapy by nanoparticle-based drug delivery system is applied to increase drug stability and control the specificity to cancer cells with target-specific proteins that play an important role in intracellular …
The Molecular Mechanisms Of Ifn-Γ Promoted Necroptosis In Macrophages, Meghan R. Vogt
The Molecular Mechanisms Of Ifn-Γ Promoted Necroptosis In Macrophages, Meghan R. Vogt
Biotechnology Theses
Necroptosis, a form of programmed lytic cell death, has emerged as a driving factor in the pathogenesis of acute lung injury. One specific inflammatory mediator that is of interest is interferon-γ (IFN-γ). Our laboratory has reported that IFN-γ is the most potent enhancer of necroptosis in primary lung epithelial cells and macrophages by upregulating MLKL expression. How IFN-γ enhances necroptosis and MLKL upregulation is currently unknown. In this research, we utilized multiple approaches to study the potential molecular mechanisms of IFN-γ promoted necroptosis in macrophages. We found that MLKL and ZBP1 are significantly upregulated by IFN-γ through an unknown pathway …
Investigating The Relationship Between Metabolic Reprogramming And Peripheral Cd4+ T-Cell Inflammation In Human Type 2 Diabetes Pathogenesis, Gabriella Kalantar
Investigating The Relationship Between Metabolic Reprogramming And Peripheral Cd4+ T-Cell Inflammation In Human Type 2 Diabetes Pathogenesis, Gabriella Kalantar
Theses and Dissertations--Microbiology, Immunology, and Molecular Genetics
Chronic, low-grade systemic inflammation rises in obesity and promotes type 2 diabetes (T2D). Circulating immune cells are key indicators of obesity and T2D pathogenesis. T cells outnumber monocytes, in blood, suggesting that T cells might fuel peripheral inflammation in obesity/T2D. Our lab’s work supports this idea by identification of a Th17 cytokine profile in T2D from T-cell stimulated peripheral blood mononuclear cells. Work described herein further supported this work by demonstrating that T cells dominate peripheral inflammation over monocytes across the spectrum of obesity and glycemic control. Our lab has also recently shown that inflammation changes during prediabetes (preT2D), identified …
Developing A Biocatalytic Toolbox To Aid In Understanding Nucleoside Antibiotics, Jasmine Brianna Woods
Developing A Biocatalytic Toolbox To Aid In Understanding Nucleoside Antibiotics, Jasmine Brianna Woods
Theses and Dissertations--Pharmacy
Antibiotic resistance happens when bacteria develop the ability to survive medications that normally terminate them. Instead, these super germs are able to survive in the body and produce a community of antibiotic resistance germs which can cause human fatalities. It is important to discover and develop new compounds and molecules that will improve this clinical obstacle. This research focused on analyzing the biosynthesis that incorporates distinctive chemical characteristic of various nucleoside antibiotics, ß-hydroxy amino acids and α-methyl-amino acids. ß-hydroxy amino acids and α-methyl-amino acids are considered an important class of industrially useful compounds, particularly for pharmaceutical development, and are found …
Impact Of Sample Conditions On Dna Phosphodiester Backbone Bi/Bii Conformational Equilibrium Dynamics, Autumn C. Pilarski
Impact Of Sample Conditions On Dna Phosphodiester Backbone Bi/Bii Conformational Equilibrium Dynamics, Autumn C. Pilarski
Graduate Theses/Dissertations
DNA damage, such as single base lesions and mismatches, is highly prevalent within cells. If these DNA damage events are not repaired, they could lead to mutations and thus disease and cancer. Intricate repair mechanisms are in place to fix these damage events, one such being Base Excision Repair (BER) and associated enzyme: Thymine DNA Glycosylase (TDG). The first step of this repair process, recognition of the lesion by TDG, is not well understood. The following thesis presents results to better understand the fundamental biophysical question of how a DNA lesion within a mismatch context is recognized in a million …
Investigation Of Mechanical Regulation On Stat3 Activity And Mmp Production, Jaxson R. Libby
Investigation Of Mechanical Regulation On Stat3 Activity And Mmp Production, Jaxson R. Libby
Honors Theses and Capstones
Transcription factor, STAT3, is inappropriately expressed in cancer cells, and has contrasting activation in 2D versus 3D microenvironments. 2D plates are often used for drug screening and do not always recapitulate in vivo responses. To combat inaccurate 2D drug studies, a 3D hydrogel was created to support the growth of cancer cells into a tumor-like environment. The hydrogel consists of a biocompatible dextran homopolysaccharide, cell adhesion RGD sequences, and crosslinker MMP labile peptides. A pH dependent reaction couples the RGD sequences to dextran then the polymers are crosslinked into a gel. Crosslinking is accomplished using terminal cysteine peptide sequences, allowing …
Molecular Mechanisms Of Wild-Type And Mutant Prion Formation, Daniel J. Walsh
Molecular Mechanisms Of Wild-Type And Mutant Prion Formation, Daniel J. Walsh
Dartmouth College Ph.D Dissertations
Prion diseases are a class of infectious neurodegenerative disorders which affect humans and many other mammalian species. The causative agent is a unique pathogen known as a prion or PrPSc, a misfolded form of a host-encoded glycoprotein which replicates by templated conformational change. Distinct strains of prions with unique phenotypic and pathologic presentations appear to be encoded by subtle conformational changes within the misfolded protein. While the general manner of prion transmission is known, our detailed understanding of these mechanisms remains incomplete, limiting efforts for the discovery or design of therapeutic treatments for these fatal diseases. In vitro synthesis of …