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Articles 511 - 540 of 671
Full-Text Articles in Biochemistry
Selective Oma1 Protease-Mediated Proteolysis Of Cox1 Subunit Of Cytochrome Oxidase In Assembly Mutants, Oleh Khalimonchuk, Mi-Young Jeong, Talina Watts, Elliott Ferris, Dennis R. Winge
Selective Oma1 Protease-Mediated Proteolysis Of Cox1 Subunit Of Cytochrome Oxidase In Assembly Mutants, Oleh Khalimonchuk, Mi-Young Jeong, Talina Watts, Elliott Ferris, Dennis R. Winge
Department of Biochemistry: Faculty Publications
Background: Yeast lacking Coa2 are deficient in cytochrome c oxidase due to Cox1 degradation.
Results: Oma1 mediates Cox1 degradation in coa2∆ cells but not other mutants stalled in oxidase biogenesis.
Conclusion: Impaired hemylation of Cox1 in coa2∆ cells leads to misfolding and facile degradation by Oma1.
Significance: Oma1 functions in quality control of cytochrome oxidase assembly.
The Evolutionary Rewiring Of Ubiquitination Targets Has Reprogrammed The Regulation Of Carbon Assimilation In The Pathogenic Yeast Candida Albicans, Doblin Sandai, Zhikang Yin, Laura Selway, David Stead, Janet Walker, Michelle D. Leach, Iryna Bohovych, Iuliana V. Ene, Stavroula Kastora, Susan Budge, Carol A. Munro, Frank C. Odds, Neil A.R. Gow, Alistair J.P. Brown
The Evolutionary Rewiring Of Ubiquitination Targets Has Reprogrammed The Regulation Of Carbon Assimilation In The Pathogenic Yeast Candida Albicans, Doblin Sandai, Zhikang Yin, Laura Selway, David Stead, Janet Walker, Michelle D. Leach, Iryna Bohovych, Iuliana V. Ene, Stavroula Kastora, Susan Budge, Carol A. Munro, Frank C. Odds, Neil A.R. Gow, Alistair J.P. Brown
Department of Biochemistry: Faculty Publications
Microbes must assimilate carbon to grow and colonize their niches. Transcript profiling has suggested that Candida albicans, a major pathogen of humans, regulates its carbon assimilation in an analogous fashion to the model yeast Saccharomyces cerevisiae, repressing metabolic pathways required for the use of alterative nonpreferred carbon sources when sugars are available. However, we show that there is significant dislocation between the proteome and transcriptome in C. albicans. Glucose triggers the degradation of the ICL1 and PCK1 transcripts in C. albicans, yet isocitrate lyase (Icl1) and phosphoenolpyruvate carboxykinase (Pck1) are stable and are retained. Indeed, numerous …
Role Of Apoptosis-Inducing Factor, Proline Dehydrogenase, And Nadph Oxidase In Apoptosis And Oxidative Stress, Sathish Kumar Natarajan, Donald F. Becker
Role Of Apoptosis-Inducing Factor, Proline Dehydrogenase, And Nadph Oxidase In Apoptosis And Oxidative Stress, Sathish Kumar Natarajan, Donald F. Becker
Department of Biochemistry: Faculty Publications
Flavoproteins catalyze a variety of reactions utilizing flavin mononucleotide or flavin adenine dinucleotide as cofactors. The oxidoreductase properties of flavoenzymes implicate them in redox homeostasis, oxidative stress, and various cellular processes, including programmed cell death. Here we explore three critical flavoproteins involved in apoptosis and redox signaling, ie, apoptosis-inducing factor (AIF), proline dehydrogenase, and NADPH oxidase. These proteins have diverse biochemical functions and influence apoptotic signaling by unique mechanisms. The role of AIF in apoptotic signaling is two-fold, with AIF changing intracellular location from the inner mitochondrial membrane space to the nucleus upon exposure of cells to apoptotic stimuli. In …
Late-Stage Maturation Of The Rieske Fe/S Protein: Mzm1 Stabilizes Rip1 But Does Not Facilitate Its Translocation By The Aaa Atpase Bcs1, Tie-Zhong Cui, Pamela M. Smith, Jennifer L. Fox, Oleh Khalimonchuk, Dennis R. Winge
Late-Stage Maturation Of The Rieske Fe/S Protein: Mzm1 Stabilizes Rip1 But Does Not Facilitate Its Translocation By The Aaa Atpase Bcs1, Tie-Zhong Cui, Pamela M. Smith, Jennifer L. Fox, Oleh Khalimonchuk, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The final step in the assembly of the ubiquinol-cytochrome c reductase or bc1 complex involves the insertion of the Rieske Fe/S cluster protein, Rip1. Maturation of Rip1 occurs within the mitochondrial matrix prior to its translocation across the inner membrane (IM) in a process mediated by the Bcs1 ATPase and subsequent insertion into the bc1 complex. Here we show that the matrix protein Mzm1 functions as a Rip1 chaperone, stabilizing Rip1 prior to the translocation step. In the absence of Mzm1, Rip1 is prone to either proteolytic degradation or temperature-induced aggregation. A series of Rip1 truncations were engineered …
Substrate Channeling In Proline Metabolism, Benjamin W. Arentson, Nikhilesh Sanyal, Donald F. Becker
Substrate Channeling In Proline Metabolism, Benjamin W. Arentson, Nikhilesh Sanyal, Donald F. Becker
Department of Biochemistry: Faculty Publications
Proline metabolism is an important pathway that has relevance in several cellular functions such as redox balance, apoptosis, and cell survival. Results from different groups have indicated that substrate channeling of proline metabolic intermediates may be a critical mechanism. One intermediate is pyrroline-5-carboxylate (P5C), which upon hydrolysis opens to glutamic semialdehyde (GSA). Recent structural and kinetic evidence indicate substrate channeling of P5C/ GSA occurs in the proline catabolic pathway between the proline dehydrogenase and P5C dehydrogenase active sites of bifunctional proline utilization A (PutA). Substrate channeling in PutA is proposed to facilitate the hydrolysis of P5C to GSA which is …
Glutaredoxin 1 Protects Dopaminergic Cells By Increased Protein Glutathionylation In Experimental Parkinson's Disease, Humberto Rodriguez-Rocha, Aracely Garcia Garcia, Laura Zavala-Flores, Sumin Li, Nandakumar Madayiputhiya, Rodrigo Franco
Glutaredoxin 1 Protects Dopaminergic Cells By Increased Protein Glutathionylation In Experimental Parkinson's Disease, Humberto Rodriguez-Rocha, Aracely Garcia Garcia, Laura Zavala-Flores, Sumin Li, Nandakumar Madayiputhiya, Rodrigo Franco
Department of Biochemistry: Faculty Publications
Aims: Chronic exposure to environmental toxicants, such as paraquat, has been suggested as a risk factor for Parkinson's disease (PD). Although dopaminergic cell death in PD is associated with oxidative damage, the molecular mechanisms involved remain elusive. Glutaredoxins (GRXs) utilize the reducing power of glutathione to modulate redox-dependent signaling pathways by protein glutathionylation. We aimed to determine the role of GRX1 and protein glutathionylation in dopaminergic cell death. Results: In dopaminergic cells, toxicity induced by paraquat or 6-hydroxydopamine (6-OHDA) was inhibited by GRX1 overexpression, while its knock-down sensitized cells to paraquat-induced cell death. Dopaminergic cell death was paralleled by protein …
Ergodic Sets As Cell Phenotype Of Budding Yeast Cell Cycle, Robert G. Todd, Tomáš Helikar
Ergodic Sets As Cell Phenotype Of Budding Yeast Cell Cycle, Robert G. Todd, Tomáš Helikar
Department of Biochemistry: Faculty Publications
It has been suggested that irreducible sets of states in Probabilistic Boolean Networks correspond to cellular phenotype. In this study, we identify such sets of states for each phase of the budding yeast cell cycle. We find that these ‘‘ergodic sets’’ underly the cyclin activity levels during each phase of the cell cycle. Our results compare to the observations made in several laboratory experiments as well as the results of differential equation models. Dynamical studies of this model: (i) indicate that under stochastic external signals the continuous oscillating waves of cyclin activity and the opposing waves of CKIs …
The Cell Collective: Toward An Open And Collaborative Approach To Systems Biology, Tomáš Helikar, Bryan Kowal, Sean Mcclenathan, Mitchell Bruckner, Thaine Rowley, Alex Madrahimov, Ben Wicks, Manish Shrestha, Kahani Limbu, Jim A. Rogers
The Cell Collective: Toward An Open And Collaborative Approach To Systems Biology, Tomáš Helikar, Bryan Kowal, Sean Mcclenathan, Mitchell Bruckner, Thaine Rowley, Alex Madrahimov, Ben Wicks, Manish Shrestha, Kahani Limbu, Jim A. Rogers
Department of Biochemistry: Faculty Publications
Background: Despite decades of new discoveries in biomedical research, the overwhelming complexity of cells has been a significant barrier to a fundamental understanding of how cells work as a whole. As such, the holistic study of biochemical pathways requires computer modeling. Due to the complexity of cells, it is not feasible for one person or group to model the cell in its entirety.
Results: The Cell Collective is a platform that allows the world-wide scientific community to create these models collectively. Its interface enables users to build and use models without specifying any mathematical equations or computer code - addressing …
A Framework Genetic Map For Miscanthus Sinensis From Rnaseq-Based Markers Shows Recent Tetraploidy, Kankshita Swaminathan, Won Byoung Chae, Therese Mitros, Kranthi Varala, Liang Xie, Adam Barling, Katarzyna Glowacka, Megan Hall, Stanislaw Jezowski, Ray Ming, Matthew Hudson, John A. Juvik, Daniel S. Rokhsar, Stephen P. Moose
A Framework Genetic Map For Miscanthus Sinensis From Rnaseq-Based Markers Shows Recent Tetraploidy, Kankshita Swaminathan, Won Byoung Chae, Therese Mitros, Kranthi Varala, Liang Xie, Adam Barling, Katarzyna Glowacka, Megan Hall, Stanislaw Jezowski, Ray Ming, Matthew Hudson, John A. Juvik, Daniel S. Rokhsar, Stephen P. Moose
Department of Biochemistry: Faculty Publications
Background: Miscanthus (subtribe Saccharinae, tribe Andropogoneae, family Poaceae) is a genus of temperate perennial C4 grasses whose high biomass production makes it, along with its close relatives sugarcane and sorghum, attractive as a biofuel feedstock. The base chromosome number of Miscanthus (x = 19) is different from that of other Saccharinae and approximately twice that of the related Sorghum bicolor (x = 10), suggesting largescale duplications may have occurred in recent ancestors of Miscanthus. Owing to the complexity of the Miscanthus genome and the complications of self-incompatibility, a complete genetic map with a high density of markers has not …
Reactions With Platinum (Ll) Complexes And Selenium-Containing Amino Acids, Stephanie Robey
Reactions With Platinum (Ll) Complexes And Selenium-Containing Amino Acids, Stephanie Robey
Mahurin Honors College Capstone Experience/Thesis Projects
We have reacted [Pt(Me4en)(D2O)2]2+ [Me4En=N,N,N’N’-tetramethylethylenediamine] with Selenomethionine (SeMet), Methionine (Met), and Methylselenocysteine (MeSeCys). When MeSeCys was reacted with [Pt(Me4en)(D2O)2]2+, we observed both stereoisomers of Se,N chelates, as well as [Pt(Me4en)(MeSeCys)Cl]+ from 1H NMR Spectroscopy; the latter formed due to the presence of Cl- in the solution. Both isomers of the chelate seemed to form proportionally to one another, not favoring a specific stereoisomer. Eventually the [Pt(Me4en)(MeSeCys)Cl]+ products became Se,N chelates. We incubated SeMet with …
Boron Stress Activates The General Amino Acid Control Mechanism And Inhibits Protein Synthesis, Irem Uluisik, Alaattin Kaya, Dmitri E. Fomenko, Huseyin C. Karakaya, Bradley A. Carlson, Vadim N. Gladyshev, Ahmet Koc
Boron Stress Activates The General Amino Acid Control Mechanism And Inhibits Protein Synthesis, Irem Uluisik, Alaattin Kaya, Dmitri E. Fomenko, Huseyin C. Karakaya, Bradley A. Carlson, Vadim N. Gladyshev, Ahmet Koc
Department of Biochemistry: Faculty Publications
Boron is an essential micronutrient for plants, and it is beneficial for animals. However, at high concentrations boron is toxic to cells although the mechanism of this toxicity is not known. Atr1 has recently been identified as a boron efflux pump whose expression is upregulated in response to boron treatment. Here, we found that the expression of ATR1 is associated with expression of genes involved in amino acid biosynthesis. These mechanisms are strictly controlled by the transcription factor Gcn4 in response to boron treatment. Further analyses have shown that boron impaired protein synthesis by promoting phosphorylation of eIF2α in a …
Iron Insufficiency Compromises Motor Neurons And Their Mitochondrial Function In Irp2-Null Mice, Suh Young Jeong, Daniel R. Crooks, Hayden Wilson-Ollivierre, Manik C. Ghosh, Rachid Sougrat, Jaekwon Lee, Sharon Cooperman, James B. Mitchell, Carole Beaumont, Tracey A. Rouault
Iron Insufficiency Compromises Motor Neurons And Their Mitochondrial Function In Irp2-Null Mice, Suh Young Jeong, Daniel R. Crooks, Hayden Wilson-Ollivierre, Manik C. Ghosh, Rachid Sougrat, Jaekwon Lee, Sharon Cooperman, James B. Mitchell, Carole Beaumont, Tracey A. Rouault
Department of Biochemistry: Faculty Publications
Genetic ablation of Iron Regulatory Protein 2 (Irp2, Ireb2), which post-transcriptionally regulates iron metabolism genes, causes a gait disorder in mice that progresses to hind-limb paralysis. Here we have demonstrated that misregulation of iron metabolism from loss of Irp2 causes lower motor neuronal degeneration with significant spinal cord axonopathy. Mitochondria in the lumbar spinal cord showed significantly decreased Complex I and II activities, and abnormal morphology. Lower motor neurons appeared to be the most adversely affected neurons, and we show that functional iron starvation due to misregulation of iron import and storage proteins, including transferrin receptor 1 …
Beta-Lysine Discrimination By Lysyl-Trna Synthetase, Marla S. Gilreath, Hervé Roy, Tammy J. Bullwinkle, Assaf Katz, Michael Ibba, William Wiley Navarre
Beta-Lysine Discrimination By Lysyl-Trna Synthetase, Marla S. Gilreath, Hervé Roy, Tammy J. Bullwinkle, Assaf Katz, Michael Ibba, William Wiley Navarre
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Elongation factor P is modified with (R)‐β‐lysine by the lysyl‐tRNA synthetase (LysRS) paralog PoxA. PoxA specificity is orthogonal to LysRS, despite their high similarity. To investigate α‐ and β‐lysine recognition by LysRS and PoxA, amino acid replacements were made in the LysRS active site guided by the PoxA structure. A233S LysRS behaved as wild type with α‐lysine, while the G469A and A233S/G469A variants decreased stable α‐lysyl‐adenylate formation. A233S LysRS recognized β‐lysine better than wildtype, suggesting a role for this residue in discriminating α‐ and β‐amino acids. Both enantiomers of β‐lysine were substrates for tRNA aminoacylation by LysRS, which, together with …
The Trna Synthetase Paralog Poxa Modifies Elongation Factor-P With (R)-Β-Lysine, Hervé Roy, S. Betty Zou, Tammy J. Bullwinkle, Benjamin S. Wolfe, Marla S. Gilreath, Craig J. Forsyth, William Wiley Navarre, Michael Ibba
The Trna Synthetase Paralog Poxa Modifies Elongation Factor-P With (R)-Β-Lysine, Hervé Roy, S. Betty Zou, Tammy J. Bullwinkle, Benjamin S. Wolfe, Marla S. Gilreath, Craig J. Forsyth, William Wiley Navarre, Michael Ibba
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
The lysyl-tRNA synthetase paralog PoxA modifies elongation factor P (EF-P) with α-lysine at low efficiency. Cell-free extracts containing non–α-lysine substrates of PoxA modified EF-P with a change in mass consistent with addition of β-lysine, a substrate also predicted by genomic analyses. EF-P was efficiently functionally modified with (R)-β-lysine but not (S)-β-lysine or genetically encoded α-amino acids, indicating that PoxA has evolved an activity orthogonal to that of the canonical aminoacyl-tRNA synthetases.
Effects Of Canola And Corn Oil Mimetic On Jurkat Cells, Gabriela Ion, Kayla Fazio, Juliana A. Akinsete, W. Elaine Hardman
Effects Of Canola And Corn Oil Mimetic On Jurkat Cells, Gabriela Ion, Kayla Fazio, Juliana A. Akinsete, W. Elaine Hardman
Biochemistry and Microbiology
BACKGROUND: The Western diet is high in omega-6 fatty acids and low in omega-3 fatty acids. Canola oil contains a healthier omega 3 to omega 6 ratio than corn oil. Jurkat T leukemia cells were treated with free fatty acids mixtures in ratios mimicking that found in commercially available canola oil (7% α-linolenic, 30% linoleic, 54% oleic) or corn oil (59% linoleic, 24% oleic) to determine the cell survival or cell death and changes in expression levels of inflammatory cytokines and receptors following oil treatment.
METHODS: Fatty acid uptake was assessed by gas chromatography. Cell survival and cell death were …
Functional Studies Of Human Cellular Detoxification Enzymes, Melanie Neely Willis
Functional Studies Of Human Cellular Detoxification Enzymes, Melanie Neely Willis
Department of Biochemistry: Dissertations, Theses, and Student Research
Cellular detoxification allows for the maintenance of cellular homeostasis and prevention of abnormal cell growth by clearing harmful xenobiotics and endobiotics. After oxygenation by phase I enzymes, phase II enzymes such as glucuronosyltransferases and glutathione-s-transferases conjugate a small molecule to the compound, marking it for subsequent export. Many up-stream enzymes are also essential to cellular detoxification by supplying the small compounds for conjugation. These up-stream enzymes include UDP-glucose dehydrogenase, which synthesizes UDP-glucuronate, and glutamate cysteine ligase, which catalyzes the first and rate-limiting step in the synthesis of glutathione.
UDP-glucose dehydrogenase (UGDH) is an important enzyme in human development and in …
Mne1 Is A Novel Component Of The Mitochondrial Splicing Apparatus Responsible For Processing Of A Cox1 Group I Intron In Yeast, Talina Watts, Oleh Khalimonchuk, Rachel Z. Wolf, Edward M. Turk, Georg Mohr, Dennis R. Winge
Mne1 Is A Novel Component Of The Mitochondrial Splicing Apparatus Responsible For Processing Of A Cox1 Group I Intron In Yeast, Talina Watts, Oleh Khalimonchuk, Rachel Z. Wolf, Edward M. Turk, Georg Mohr, Dennis R. Winge
Department of Biochemistry: Faculty Publications
Saccharomyces cerevisiae cells lacking Mne1 are deficient in
intron splicing in the gene encoding the Cox1 subunit of cytochrome
oxidase but contain wild-type levels of the bc1 complex.
Thus, Mne1 has no role in splicing of COB introns or expression
of the COB gene. Northern experiments suggest that splicing of
the COX1 aI5β intron is dependent on Mne1 in addition to the
previously known Mrs1, Mss116, Pet54, and Suv3 factors. Processing
of the aI5_ intron is similarly impaired in mne1∆ and
mrs1∆ cells and overexpression of Mrs1 partially restores the
respiratory function of mne1∆ cells. Mrs1 …
Hydrogen Peroxide Probes Directed To Different Cellular Compartments, Mikalai Malinouski, You Zhou, Vsevolod V. Belousov, Dolph L. Hatfield, Vadim N. Gladyshev
Hydrogen Peroxide Probes Directed To Different Cellular Compartments, Mikalai Malinouski, You Zhou, Vsevolod V. Belousov, Dolph L. Hatfield, Vadim N. Gladyshev
Department of Biochemistry: Faculty Publications
Background: Controlled generation and removal of hydrogen peroxide play important roles in cellular redox homeostasis and signaling. We used a hydrogen peroxide biosensor HyPer, targeted to different compartments, to examine these processes in mammalian cells.
Principal Findings: Reversible responses were observed to various redox perturbations and signaling events. HyPer expressed in HEK 293 cells was found to sense low micromolar levels of hydrogen peroxide. When targeted to various cellular compartments, HyPer occurred in the reduced state in the nucleus, cytosol, peroxisomes, mitochondrial intermembrane space and mitochondrial matrix, but low levels of the oxidized form of the biosensor were also observed …
Targeted Deletion Of The Mouse Mitoferrin1 Gene: From Anemia To Protoporphyria, Marie-Berengere Troadec, David Warner, Jared Wallace, Kirk Thomas, Gerald J. Spangrude, John Phillips, Oleh Khalimonchuk, Barry H. Paw, Diane Mcvey Ward, Jerry Kaplan
Targeted Deletion Of The Mouse Mitoferrin1 Gene: From Anemia To Protoporphyria, Marie-Berengere Troadec, David Warner, Jared Wallace, Kirk Thomas, Gerald J. Spangrude, John Phillips, Oleh Khalimonchuk, Barry H. Paw, Diane Mcvey Ward, Jerry Kaplan
Department of Biochemistry: Faculty Publications
Mitoferrin1 is 1 of 2 homologous mitochondrial iron transporters and is required for mitochondrial iron delivery in developing erythroid cells. We show that total deletion of Mfrn1 in embryos leads to embryonic lethality. Selective deletion of Mfrn1 in adult hematopoietic tissues leads to severe anemia because of a deficit in erythroblast formation. Deletion of Mfrn1 in hepatocytes has no phenotype or biochemical effect under normal conditions. In the presence of increased porphyrin synthesis, however, deletion of Mfrn1 in hepatocytes results in a decreased ability to convert protoporphyrin IX into heme, leading to protoporphyria, cholestasis, and bridging cirrhosis. Our results show …
Reduced Utilization Of Selenium By Naked Mole Rats Due To A Specific Defect In Gpx1 Expression, Marina V. Kasaikina, Alexei V. Lobanov, Mikalai I. Malinouski, Byung Cheon Lee, Javier Seravalli, Dmitri E. Fomenko, Anton A. Turanov, Lydia Finney, Stefan Vogt, Thomas J. Park, Richard A. Miller, Dolph L. Hatfield, Vadim N. Gladyshev
Reduced Utilization Of Selenium By Naked Mole Rats Due To A Specific Defect In Gpx1 Expression, Marina V. Kasaikina, Alexei V. Lobanov, Mikalai I. Malinouski, Byung Cheon Lee, Javier Seravalli, Dmitri E. Fomenko, Anton A. Turanov, Lydia Finney, Stefan Vogt, Thomas J. Park, Richard A. Miller, Dolph L. Hatfield, Vadim N. Gladyshev
Department of Biochemistry: Faculty Publications
Naked mole rat (MR) Heterocephalus glaber is a rodent model of delayed aging because of its unusually long life span (>28 years). It is also not known to develop cancer. In the current work, tissue imaging by x-ray fluorescence microscopy and direct analyses of trace elements revealed low levels of selenium in the MR liver and kidney, whereas MR and mouse brains had similar selenium levels. This effect was not explained by uniform selenium deficiency because methionine sulfoxide reductase activities were similar in mice and MR. However, glutathione peroxidase activity was an order of magnitude lower inMRliver and kidney …
A 4-Selenocysteine, 2-Selenocysteine Insertion Sequence (Secis) Element Methionine Sulfoxide Reductase From Metridium Senile Reveals A Non-Catalytic Function Of Selenocysteines, Byung Cheon Lee, Alexey V. Lobanov, Stefano M. Marino, Alaattin Kaya, Javier Seravalli, Dolph L. Hatfield, Vadim N. Gladyshev
A 4-Selenocysteine, 2-Selenocysteine Insertion Sequence (Secis) Element Methionine Sulfoxide Reductase From Metridium Senile Reveals A Non-Catalytic Function Of Selenocysteines, Byung Cheon Lee, Alexey V. Lobanov, Stefano M. Marino, Alaattin Kaya, Javier Seravalli, Dolph L. Hatfield, Vadim N. Gladyshev
Department of Biochemistry: Faculty Publications
Selenocysteine (Sec) residues occur in thiol oxidoreductase families, and functionally characterized selenoenzymes typically have a single Sec residue used directly for redox catalysis. However, how new Sec residues evolve and whether non-catalytic Sec residues exist in proteins is not known. Here, we computationally identified several genes with multiple Sec insertion sequence (SECIS) elements, one of which was a methionine-Rsulfoxide reductase (MsrB) homolog from Metridium senile that has four in-frame UGA codons and two nearly identical SECIS elements. One of the UGA codons corresponded to the conserved catalytic Sec or Cys in MsrBs, whereas the three other UGA codons evolved recently …
Escherichia Coli Thioredoxin-Like Protein Ybbn Contains An Atypical Tetratricopeptide Repeat Motif And Is A Negative Regulator Of Groel, Jiusheng Lin, Mark A. Wilson
Escherichia Coli Thioredoxin-Like Protein Ybbn Contains An Atypical Tetratricopeptide Repeat Motif And Is A Negative Regulator Of Groel, Jiusheng Lin, Mark A. Wilson
Department of Biochemistry: Faculty Publications
Many proteins contain a thioredoxin (Trx)-like domain fused with one or more partner domains that diversify protein function by the modular construction of new molecules. The Escherichia coli protein YbbN is a Trx-like protein that contains a C-terminal domain with low homology to tetratricopeptide repeat motifs. YbbN has been proposed to act as a chaperone or co-chaperone that aids in heat stress response andDNAsynthesis. We report the crystal structure of YbbN, which is an elongated molecule with a mobile Trx domain and four atypical tetratricopeptide repeat motifs. The Trx domain lacks a canonical CXXC active site architecture and is not …
Defining A Relationship Between Dietary Fatty Acids And The Cytochrome P450 System In A Mouse Model Of Fatty Liver Disease, Monika Gonzalez, Whitney Sealls, Elliot D. Jesch, M. Julia Brosnan, Istvan Ladunga, Xinxin Ding, Paul N. Black, Concetta C. Dirusso
Defining A Relationship Between Dietary Fatty Acids And The Cytochrome P450 System In A Mouse Model Of Fatty Liver Disease, Monika Gonzalez, Whitney Sealls, Elliot D. Jesch, M. Julia Brosnan, Istvan Ladunga, Xinxin Ding, Paul N. Black, Concetta C. Dirusso
Department of Biochemistry: Faculty Publications
Liver-specific ablation of cytochrome P450 reductase in mice (LCN) results in hepatic steatosis that can progress to steatohepatitis characterized by inflammation and fibrosis. The specific cause of the fatty liver phenotype is poorly understood but is hypothesized to result from elevated expression of genes encoding fatty acid synthetic genes. Since expression of these genes is known to be suppressed by polyunsaturated fatty acids, we performed physiological and genomics studies to evaluate the effects of dietary linoleic and linolenic fatty acids (PUFA) or arachidonic and decosahexaenoic acids (HUFA) on the hepatic phenotypes of control and LCN mice by comparison with a …
Functional Diversification Of Thylakoidal Processing Peptidases In Arabidopsis Thaliana, Shih-Chi Hsu, Joshua K. Endow, Nicholas J. Ruppel, Rebecca Roston, Amy J. Baldwin, Kentaro Inoue
Functional Diversification Of Thylakoidal Processing Peptidases In Arabidopsis Thaliana, Shih-Chi Hsu, Joshua K. Endow, Nicholas J. Ruppel, Rebecca Roston, Amy J. Baldwin, Kentaro Inoue
Department of Biochemistry: Faculty Publications
Thylakoidal processing peptidase (TPP) is responsible for removing amino-terminal thylakoid-transfer signals from several proteins in the thylakoid lumen. Three TPP isoforms are encoded by the nuclear genome of Arabidopsis thaliana. Previous studies showed that one of them termed plastidic type I signal peptidase 1 (Plsp1) was necessary for processing three thylakoidal proteins and one protein in the chloroplast envelope in vivo. The lack of Plsp1 resulted in seedling lethality, apparently due to disruption of proper thylakoid development. The physiological roles of the other two TPP homologs remain unknown. Here we show that the three A. thaliana TPP isoforms …
Enzymatic Defects Underlying Hereditary Glutamate Cysteine Ligase Deficiency Are Mitigated By Association Of The Catalytic And Regulatory Subunits, Melanie Neely Willis, Yilin Liu, Ekaterina I. Biterova, Melanie A. Simpson, Heejeong Kim, Jaekwon Lee, Joseph J. Barycki
Enzymatic Defects Underlying Hereditary Glutamate Cysteine Ligase Deficiency Are Mitigated By Association Of The Catalytic And Regulatory Subunits, Melanie Neely Willis, Yilin Liu, Ekaterina I. Biterova, Melanie A. Simpson, Heejeong Kim, Jaekwon Lee, Joseph J. Barycki
Department of Biochemistry: Faculty Publications
Glutamate cysteine ligase (GCL) deficiency is a rare autosomal recessive trait that compromises
production of glutathione, a critical redox buffer and enzymatic cofactor. Patients have markedly
reduced levels of erythrocyte glutathione, leading to hemolytic anemia and in some cases,
impaired neurological function. Human glutamate cysteine ligase is a heterodimer comprised of a
catalytic (GCLC) and a regulatory subunit (GCLM), which catalyzes the initial rate limiting step
in glutathione production. Four clinical missense mutations have been identified within GCLC:
Arg127Cys, Pro158Leu, His370Leu, and Pro414Leu. Here, we have evaluated the impacts of
these mutations on enzymatic function in vivo and in vitro …
The Lyr Protein Mzm1 Functions In The Insertion Of The Rieske Fe/S Protein In Yeast Mitochondria, Aaron Atkinson, Pamela Smith, Jennifer L. Fox, Tie-Shong Cui, Oleh Khalimonchuk, Dennis R. Winge
The Lyr Protein Mzm1 Functions In The Insertion Of The Rieske Fe/S Protein In Yeast Mitochondria, Aaron Atkinson, Pamela Smith, Jennifer L. Fox, Tie-Shong Cui, Oleh Khalimonchuk, Dennis R. Winge
Department of Biochemistry: Faculty Publications
The assembly of the cytochrome bc1 complex in Saccharomyces cerevisiae is shown to be conditionally dependent on a novel factor, Mzm1. Cells lacking Mzm1 exhibit a modest bc1 defect at 30°C, but the defect is exacerbated at elevated temperatures. Formation of bc1 is stalled in mzm1 Δ cells at a late assembly intermediate lacking the Rieske iron-sulfur protein Rip1. Rip1 levels are markedly attenuated in mzm1 Δ cells at elevated temperatures. Respiratory growth can be restored in the mutant cells by the overexpression of the Rip1 subunit. Elevated levels of Mzm1 enhance the stabilization of Rip1 through …
Rpir Homologues May Link Staphylococcus Aureus Rnaiii Synthesis And Pentose Phosphate Pathway Regulation, Yefei Zhu, Nandakumar Madayiputhiya, Marat R. Sadykov, Nandakumar Madayiputhiya, Thanh T. Luong, Rosmarie Gaupp, Chia Y. Lee, Greg Somerville
Rpir Homologues May Link Staphylococcus Aureus Rnaiii Synthesis And Pentose Phosphate Pathway Regulation, Yefei Zhu, Nandakumar Madayiputhiya, Marat R. Sadykov, Nandakumar Madayiputhiya, Thanh T. Luong, Rosmarie Gaupp, Chia Y. Lee, Greg Somerville
Department of Biochemistry: Faculty Publications
Staphylococcus aureus is a medically important pathogen that synthesizes a wide range of virulence determinants. The synthesis of many staphylococcal virulence determinants is regulated in part by stress-induced changes in the activity of the tricarboxylic acid (TCA) cycle. One metabolic change associated with TCA cycle stress is an increased concentration of ribose, leading us to hypothesize that a pentose phosphate pathway (PPP)-responsive regulator mediates some of the TCA cycle-dependent regulatory effects. Using bioinformatics, we identified three potential ribose-responsive regulators that belong to the RpiR family of transcriptional regulators. To determine whether these RpiR homologues affect PPP activity and virulence determinant …
In Vivo Liver Endocytosis Followed By Purification Of Liver Cells By Liver Perfusion, Sandhya Gopalakrishnan, Edward N. Harris
In Vivo Liver Endocytosis Followed By Purification Of Liver Cells By Liver Perfusion, Sandhya Gopalakrishnan, Edward N. Harris
Department of Biochemistry: Faculty Publications
The liver is the metabolic center of the mammalian body and serves as a filter for the blood. The basic architecture of the liver is illustrated in figure 1 in which more than 85% of the liver mass is composed of hepatocytes and the remaining 15% of the cellular mass is composed of Kupffer cells (KCs), stellate cells (HSCs), and sinusoidal endothelial cells (SECs). SECs form the blood vessel walls within the liver and contain specialized morphology called fenestrae within in the cytoplasm. Fenestration of the cytoplasm is the appearance of holes (˜100 μm) within the cells so that the …
An Archaeal Trna-Synthetase Complex That Enhances Aminoacylation Under Extreme Conditions, Vlatka Godinic-Mikulcic, Jelena Jaric, Corinne D. Hausmann, Michael Ibba, Ivana Weygand-Durasevic
An Archaeal Trna-Synthetase Complex That Enhances Aminoacylation Under Extreme Conditions, Vlatka Godinic-Mikulcic, Jelena Jaric, Corinne D. Hausmann, Michael Ibba, Ivana Weygand-Durasevic
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Aminoacyl-tRNA synthetases (aaRSs) play an integral role in protein synthesis, functioning to attach the correct amino acid with its cognate tRNA molecule. AaRSs are known to associate into higher-order multi-aminoacyl-tRNA synthetase complexes (MSC) involved in archaeal and eukaryotic translation, although the precise biological role remains largely unknown. To gain further insights into archaeal MSCs, possible protein-protein interactions with the atypical Methanothermobacter thermautotrophicus seryl-tRNA synthetase (MtSerRS) were investigated. Yeast two-hybrid analysis revealed arginyl-tRNA synthetase (MtArgRS) as an interacting partner of MtSerRS. Surface plasmon resonance confirmed stable complex formation, with a dissociation constant (KD) of 250 nm. Formation of the MtSerRS·MtArgRS complex …
Poxa, Yjek And Elongation Factor P Coordinately Modulate Virulence And Drug Resistance In Salmonella Enterica, William Wiley Navarre, Shicong Zou, Hervé Roy, Jinglin Lucy Xie, Alexei Savchenko, Alexander Singer, Elena Edvokimova, Lynne R. Prost, Runjun Kumar, Michael Ibba, Ferric C. Fang
Poxa, Yjek And Elongation Factor P Coordinately Modulate Virulence And Drug Resistance In Salmonella Enterica, William Wiley Navarre, Shicong Zou, Hervé Roy, Jinglin Lucy Xie, Alexei Savchenko, Alexander Singer, Elena Edvokimova, Lynne R. Prost, Runjun Kumar, Michael Ibba, Ferric C. Fang
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
We report an interaction between poxA, encoding a paralog of lysyl tRNA-synthetase, and the closely linked yjeK gene, encoding a putative 2,3-β-lysine aminomutase, that is critical for virulence and stress resistance in Salmonella enterica. Salmonella poxA and yjeK mutants share extensive phenotypic pleiotropy, including attenuated virulence in mice, an increased ability to respire under nutrient-limiting conditions, hypersusceptibility to a variety of diverse growth inhibitors, and altered expression of multiple proteins, including several encoded on the SPI-1 pathogenicity island. PoxA mediates posttranslational modification of bacterial elongation factor P (EF-P), analogous to the modification of the eukaryotic EF-P homolog, eIF5A, with …