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Articles 31 - 57 of 57
Full-Text Articles in Biochemistry
Characterization Of Ranbpm Molecular Determinants That Control Its Subcellular Localization, Louisa M Salemi, Sandra O Loureiro, Caroline Schild-Poulter
Characterization Of Ranbpm Molecular Determinants That Control Its Subcellular Localization, Louisa M Salemi, Sandra O Loureiro, Caroline Schild-Poulter
Biochemistry Publications
RanBPM/RanBP9 is a ubiquitous, nucleocytoplasmic protein that is part of an evolutionary conserved E3 ubiquitin ligase complex whose function and targets in mammals are still unknown. RanBPM itself has been implicated in various cellular processes that involve both nuclear and cytoplasmic functions. However, to date, little is known about how RanBPM subcellular localization is regulated. We have conducted a systematic analysis of RanBPM regions that control its subcellular localization using RanBPM shRNA cells to examine ectopic RanBPM mutant subcellular localization without interference from the endogenously expressed protein. We show that several domains and motifs regulate RanBPM nuclear and cytoplasmic localization. …
Reversing Chromatin Accessibility Differences That Distinguish Homologous Mitotic Metaphase Chromosomes., Wahab A Khan, Peter K Rogan, Joan H M Knoll
Reversing Chromatin Accessibility Differences That Distinguish Homologous Mitotic Metaphase Chromosomes., Wahab A Khan, Peter K Rogan, Joan H M Knoll
Biochemistry Publications
BACKGROUND: Chromatin-modifying reagents that alter histone associating proteins, DNA conformation or its sequence are well established strategies for studying chromatin structure in interphase (G1, S, G2). Little is known about how these compounds act during metaphase. We assessed the effects of these reagents at genomic loci that show reproducible, non-random differences in accessibility to chromatin that distinguish homologous targets by single copy DNA probe fluorescence in situ hybridization (scFISH). By super-resolution 3-D structured illumination microscopy (3D-SIM) and other criteria, the differences correspond to 'differential accessibility' (DA) to these chromosomal regions. At these chromosomal loci, DA of the same homologous chromosome …
Megatevs: Single-Chain Dual Nucleases For Efficient Gene Disruption, Jason M Wolfs, Matthew Dasilva, Sarah E Meister, Xu Wang, Caroline Schild-Poulter, David R. Edgell
Megatevs: Single-Chain Dual Nucleases For Efficient Gene Disruption, Jason M Wolfs, Matthew Dasilva, Sarah E Meister, Xu Wang, Caroline Schild-Poulter, David R. Edgell
Biochemistry Publications
Targeting gene disruptions in complex genomes relies on imprecise repair by the non-homologous end-joining DNA pathway, creating mutagenic insertions or deletions (indels) at the break point. DNA end-processing enzymes are often co-expressed with genome-editing nucleases to enhance the frequency of indels, as the compatible cohesive ends generated by the nucleases can be precisely repaired, leading to a cycle of cleavage and non-mutagenic repair. Here, we present an alternative strategy to bias repair toward gene disruption by fusing two different nuclease active sites from I-TevI (a GIY-YIG enzyme) and I-OnuI E2 (an engineered meganuclease) into a single polypeptide chain. In vitro, …
Automating Dicentric Chromosome Detection From Cytogenetic Biodosimetry Data., Peter K Rogan, Yanxin Li, Asanka Wickramasinghe, Akila Subasinghe, Natasha Caminsky, Wahab Khan, Jagath Samarabandu, Ruth Wilkins, Farrah Flegal, Joan H Knoll
Automating Dicentric Chromosome Detection From Cytogenetic Biodosimetry Data., Peter K Rogan, Yanxin Li, Asanka Wickramasinghe, Akila Subasinghe, Natasha Caminsky, Wahab Khan, Jagath Samarabandu, Ruth Wilkins, Farrah Flegal, Joan H Knoll
Biochemistry Publications
We present a prototype software system with sufficient capacity and speed to estimate radiation exposures in a mass casualty event by counting dicentric chromosomes (DCs) in metaphase cells from many individuals. Top-ranked metaphase cell images are segmented by classifying and defining chromosomes with an active contour gradient vector field (GVF) and by determining centromere locations along the centreline. The centreline is extracted by discrete curve evolution (DCE) skeleton branch pruning and curve interpolation. Centromere detection minimises the global width and DAPI-staining intensity profiles along the centreline. A second centromere is identified by reapplying this procedure after masking the first. Dicentrics …
Validation Of Predicted Mrna Splicing Mutations Using High-Throughput Transcriptome Data, Coby Viner, Stephanie Dorman, Ben Shirley, Peter Rogan
Validation Of Predicted Mrna Splicing Mutations Using High-Throughput Transcriptome Data, Coby Viner, Stephanie Dorman, Ben Shirley, Peter Rogan
Biochemistry Publications
Interpretation of variants present in complete genomes or exomes reveals numerous sequence changes, only a fraction of which are likely to be pathogenic. Mutations have been traditionally inferred from allele frequencies and inheritance patterns in such data. Variants predicted to alter mRNA splicing can be validated by manual inspection of transcriptome sequencing data, however this approach is intractable for large datasets. These abnormal mRNA splicing patterns are characterized by reads demonstrating either exon skipping, cryptic splice site use, and high levels of intron inclusion, or combinations of these properties. We present, Veridical, an in silico method for the automatic validation …
Validation Of Predicted Mrna Splicing Mutations Using High-Throughput Transcriptome Data., Coby Viner, Stephanie N Dorman, Ben C Shirley, Peter K Rogan
Validation Of Predicted Mrna Splicing Mutations Using High-Throughput Transcriptome Data., Coby Viner, Stephanie N Dorman, Ben C Shirley, Peter K Rogan
Biochemistry Publications
Interpretation of variants present in complete genomes or exomes reveals numerous sequence changes, only a fraction of which are likely to be pathogenic. Mutations have been traditionally inferred from allele frequencies and inheritance patterns in such data. Variants predicted to alter mRNA splicing can be validated by manual inspection of transcriptome sequencing data, however this approach is intractable for large datasets. These abnormal mRNA splicing patterns are characterized by reads demonstrating either exon skipping, cryptic splice site use, and high levels of intron inclusion, or combinations of these properties. We present, Veridical, an in silico method for the automatic validation …
Splicing Mutation Analysis Reveals Previously Unrecognized Pathways In Lymph Node-Invasive Breast Cancer., Stephanie N Dorman, Coby Viner, Peter K Rogan
Splicing Mutation Analysis Reveals Previously Unrecognized Pathways In Lymph Node-Invasive Breast Cancer., Stephanie N Dorman, Coby Viner, Peter K Rogan
Biochemistry Publications
Somatic mutations reported in large-scale breast cancer (BC) sequencing studies primarily consist of protein coding mutations. mRNA splicing mutation analyses have been limited in scope, despite their prevalence in Mendelian genetic disorders. We predicted splicing mutations in 442 BC tumour and matched normal exomes from The Cancer Genome Atlas Consortium (TCGA). These splicing defects were validated by abnormal expression changes in these tumours. Of the 5,206 putative mutations identified, exon skipping, leaky or cryptic splicing was confirmed for 988 variants. Pathway enrichment analysis of the mutated genes revealed mutations in 9 NCAM1-related pathways, which were significantly increased in samples with …
Localized, Non-Random Differences In Chromatin Accessibility Between Homologous Metaphase Chromosomes., Wahab A Khan, Peter K Rogan, Joan Hm Knoll
Localized, Non-Random Differences In Chromatin Accessibility Between Homologous Metaphase Chromosomes., Wahab A Khan, Peter K Rogan, Joan Hm Knoll
Biochemistry Publications
BACKGROUND: Condensation differences along the lengths of homologous, mitotic metaphase chromosomes are well known. This study reports molecular cytogenetic data showing quantifiable localized differences in condensation between homologs that are related to differences in accessibility (DA) of associated DNA probe targets. Reproducible DA was observed for ~10% of locus-specific, short (1.5-5 kb) single copy DNA probes used in fluorescence in situ hybridization.
RESULTS: Fourteen probes (from chromosomes 1, 5, 9, 11, 15, 17, 22) targeting genic and intergenic regions were developed and hybridized to cells from 10 individuals with cytogenetically-distinguishable homologs. Differences in hybridization between homologs were non-random for 8 …
Interpretation Of Mrna Splicing Mutations In Genetic Disease: Review Of The Literature And Guidelines For Information-Theoretical Analysis., Natasha Caminsky, Eliseos J Mucaki, Peter K Rogan
Interpretation Of Mrna Splicing Mutations In Genetic Disease: Review Of The Literature And Guidelines For Information-Theoretical Analysis., Natasha Caminsky, Eliseos J Mucaki, Peter K Rogan
Biochemistry Publications
The interpretation of genomic variants has become one of the paramount challenges in the post-genome sequencing era. In this review we summarize nearly 20 years of research on the applications of information theory (IT) to interpret coding and non-coding mutations that alter mRNA splicing in rare and common diseases. We compile and summarize the spectrum of published variants analyzed by IT, to provide a broad perspective of the distribution of deleterious natural and cryptic splice site variants detected, as well as those affecting splicing regulatory sequences. Results for natural splice site mutations can be interrogated dynamically with Splicing Mutation Calculator, …
Individual Interactions Of The B Subunits Within The Stator Of The Escherichia Coli Atp Synthase., Karsten Brandt, Sarah Maiwald, Brigitte Herkenhoff-Hesselmann, Kerstin Gnirss, Joerg-Christian Greie, Stanley D Dunn, Gabriele Deckers-Hebestreit
Individual Interactions Of The B Subunits Within The Stator Of The Escherichia Coli Atp Synthase., Karsten Brandt, Sarah Maiwald, Brigitte Herkenhoff-Hesselmann, Kerstin Gnirss, Joerg-Christian Greie, Stanley D Dunn, Gabriele Deckers-Hebestreit
Biochemistry Publications
FOF1 ATP synthases are rotary nanomotors that couple proton translocation across biological membranes to the synthesis/hydrolysis of ATP. During catalysis, the peripheral stalk, composed of two b subunits and subunit δ in Escherichia coli, counteracts the torque generated by the rotation of the central stalk. Here we characterize individual interactions of the b subunits within the stator by use of monoclonal antibodies and nearest neighbor analyses via intersubunit disulfide bond formation. Antibody binding studies revealed that the C-terminal region of one of the two b subunits is principally involved in binding of subunit δ, while the other one is accessible …
Fuzzy Complex Formation Between The Intrinsically Disordered Prothymosin Α And The Kelch Domain Of Keap1 Involved In The Oxidative Stress Response., Halema Khan, Elio A Cino, Anne Brickenden, Jingsong Fan, Daiwen Yang, Wing-Yiu Choy
Fuzzy Complex Formation Between The Intrinsically Disordered Prothymosin Α And The Kelch Domain Of Keap1 Involved In The Oxidative Stress Response., Halema Khan, Elio A Cino, Anne Brickenden, Jingsong Fan, Daiwen Yang, Wing-Yiu Choy
Biochemistry Publications
Kelch-like ECH-associated protein 1 (Keap1) is an inhibitor of nuclear factor erythroid 2-related factor 2 (Nrf2), a key transcription factor for cytoprotective gene activation in the oxidative stress response. Under unstressed conditions, Keap1 interacts with Nrf2 in the cytoplasm via its Kelch domain and suppresses the transcriptional activity of Nrf2. During oxidative stress, Nrf2 is released from Keap1 and is translocated into the nucleus, where it interacts with the small Maf protein to initiate gene transcription. Prothymosin α (ProTα), an intrinsically disordered protein, also interacts with the Kelch domain of Keap1 and mediates the import of Keap1 into the nucleus …
(1)H, (15)N And (13)C Backbone Resonance Assignments Of The Tpr1 And Tpr2a Domains Of Mouse Sti1., Andrzej Maciejewski, Marco A Prado, Wing-Yiu Choy
(1)H, (15)N And (13)C Backbone Resonance Assignments Of The Tpr1 And Tpr2a Domains Of Mouse Sti1., Andrzej Maciejewski, Marco A Prado, Wing-Yiu Choy
Biochemistry Publications
Hop/STI1 (Hsp-organizing protein/stress-induced-phosphoprotein 1) is a molecular co-chaperone, which coordinates Hsp70 and Hsp90 activity during client protein folding through interactions with its TPR1 and TPR2A domains. Hsp90 substrates include a diverse set of proteins, many of which have been implicated in tumorigenesis. Over-expression of Hsp90 in cancer cells stabilizes mutant oncoproteins promoting cancer cell survival. Disruption of Hsp90 and its co-chaperone machinery has become a promising strategy for the treatment of cancer. STI1 has also been described as a neurotrophic signaling molecule through its interactions with the prion protein (PrP(C)). Here, we report the (1)H, (13)C and (15)N backbone assignments …
Elastic Deformations Of The Rotary Double Motor Of Single F(O)F(1)-Atp Synthases Detected In Real Time By Förster Resonance Energy Transfer., Stefan Ernst, Monika G Düser, Nawid Zarrabi, Stanley D Dunn, Michael Börsch
Elastic Deformations Of The Rotary Double Motor Of Single F(O)F(1)-Atp Synthases Detected In Real Time By Förster Resonance Energy Transfer., Stefan Ernst, Monika G Düser, Nawid Zarrabi, Stanley D Dunn, Michael Börsch
Biochemistry Publications
Elastic conformational changes of the protein backbone are essential for catalytic activities of enzymes. To follow relative movements within the protein, Förster-type resonance energy transfer (FRET) between two specifically attached fluorophores can be applied. FRET provides a precise ruler between 3 and 8nm with subnanometer resolution. Corresponding submillisecond time resolution is sufficient to identify conformational changes in FRET time trajectories. Analyzing single enzymes circumvents the need for synchronization of various conformations. F(O)F(1)-ATP synthase is a rotary double motor which catalyzes the synthesis of adenosine triphosphate (ATP). A proton-driven 10-stepped rotary F(O) motor in the Escherichia coli enzyme is connected to …
(1)H, (15)N And (13)C Backbone Resonance Assignments Of The Kelch Domain Of Mouse Keap1., Elio Cino, Jingsong Fan, Daiwen Yang, Wing-Yiu Choy
(1)H, (15)N And (13)C Backbone Resonance Assignments Of The Kelch Domain Of Mouse Keap1., Elio Cino, Jingsong Fan, Daiwen Yang, Wing-Yiu Choy
Biochemistry Publications
Kelch-like ECH-associated Protein 1 (Keap1) is a multi-domain protein that functions as an inhibitor of the transcription factor nuclear factor E2-related factor 2 (Nrf2) in the cellular response to oxidative stress. Under normal conditions, Keap1 binds to Nrf2 via its C-terminal Kelch domain and the interaction ultimately leads to the ubiquitin-dependent degradation of Nrf2. It has been proposed that designing molecules to selectively disrupt the Keap1-Nrf2 interaction can be a potential therapeutic approach for enhancing the expression of cytoprotective genes. Here, we reported the (1)H, (13)C, and (15)N backbone chemical shift assignments of the Kelch domain of mouse Keap1. Further, …
Stomatin-Like Protein 2 Binds Cardiolipin And Regulates Mitochondrial Biogenesis And Function., Darah Christie, Caitlin D Lemke, Isaac M Elias, Luan A Chau, Mark G Kirchhof, Bo Li, Eric H Ball, Stanley D Dunn, Grant M Hatch, Joaquín Madrenas
Stomatin-Like Protein 2 Binds Cardiolipin And Regulates Mitochondrial Biogenesis And Function., Darah Christie, Caitlin D Lemke, Isaac M Elias, Luan A Chau, Mark G Kirchhof, Bo Li, Eric H Ball, Stanley D Dunn, Grant M Hatch, Joaquín Madrenas
Biochemistry Publications
Stomatin-like protein 2 (SLP-2) is a widely expressed mitochondrial inner membrane protein of unknown function. Here we show that human SLP-2 interacts with prohibitin-1 and -2 and binds to the mitochondrial membrane phospholipid cardiolipin. Upregulation of SLP-2 expression increases cardiolipin content and the formation of metabolically active mitochondrial membranes and induces mitochondrial biogenesis. In human T lymphocytes, these events correlate with increased complex I and II activities, increased intracellular ATP stores, and increased resistance to apoptosis through the intrinsic pathway, ultimately enhancing cellular responses. We propose that the function of SLP-2 is to recruit prohibitins to cardiolipin to form cardiolipin-enriched …
Two Rotary Motors In F-Atp Synthase Are Elastically Coupled By A Flexible Rotor And A Stiff Stator Stalk., André Wächter, Yumin Bi, Stanley D Dunn, Brian D Cain, Hendrik Sielaff, Frank Wintermann, Siegfried Engelbrecht, Wolfgang Junge
Two Rotary Motors In F-Atp Synthase Are Elastically Coupled By A Flexible Rotor And A Stiff Stator Stalk., André Wächter, Yumin Bi, Stanley D Dunn, Brian D Cain, Hendrik Sielaff, Frank Wintermann, Siegfried Engelbrecht, Wolfgang Junge
Biochemistry Publications
ATP is synthesized by ATP synthase (F(O)F(1)-ATPase). Its rotary electromotor (F(O)) translocates protons (in some organisms sodium cations) and generates torque to drive the rotary chemical generator (F(1)). Elastic power transmission between F(O) and F(1) is essential for smoothing the cooperation of these stepping motors, thereby increasing their kinetic efficiency. A particularly compliant elastic domain is located on the central rotor (c(10-15)/ε/γ), right between the two sites of torque generation and consumption. The hinge on the active lever on subunit β adds further compliance. It is under contention whether or not the peripheral stalk (and the "stator" as a whole) …
Decreased Stability And Increased Formation Of Soluble Aggregates By Immature Superoxide Dismutase Do Not Account For Disease Severity In Als., Kenrick A Vassall, Helen R Stubbs, Heather A Primmer, Ming Sze Tong, Sarah M Sullivan, Ryan Sobering, Saipraveen Srinivasan, Lee-Ann K Briere, Stanley D Dunn, Wilfredo Colón, Elizabeth M Meiering
Decreased Stability And Increased Formation Of Soluble Aggregates By Immature Superoxide Dismutase Do Not Account For Disease Severity In Als., Kenrick A Vassall, Helen R Stubbs, Heather A Primmer, Ming Sze Tong, Sarah M Sullivan, Ryan Sobering, Saipraveen Srinivasan, Lee-Ann K Briere, Stanley D Dunn, Wilfredo Colón, Elizabeth M Meiering
Biochemistry Publications
Protein aggregation is a hallmark of many diseases, including amyotrophic lateral sclerosis (ALS), where aggregation of Cu/Zn superoxide dismutase (SOD1) is implicated in causing neurodegeneration. Recent studies have suggested that destabilization and aggregation of the most immature form of SOD1, the disulfide-reduced, unmetallated (apo) protein is particularly important in causing ALS. We report herein in depth analyses of the effects of chemically and structurally diverse ALS-associated mutations on the stability and aggregation of reduced apo SOD1. In contrast with previous studies, we find that various reduced apo SOD1 mutants undergo highly reversible thermal denaturation with little aggregation, enabling quantitative thermodynamic …
Nip/Duoxa Is Essential For Drosophila Embryonic Development And Regulates Oxidative Stress Response., Xiaojun Xie, Jack Hu, Xiping Liu, Hanjuan Qin, Anthony Percival-Smith, Yong Rao, Shawn S C Li
Nip/Duoxa Is Essential For Drosophila Embryonic Development And Regulates Oxidative Stress Response., Xiaojun Xie, Jack Hu, Xiping Liu, Hanjuan Qin, Anthony Percival-Smith, Yong Rao, Shawn S C Li
Biochemistry Publications
NIP/DuoxA, originally cloned as a protein capable of binding to the cell fate determinant Numb in Drosophila, was recently identified as a modulator of reactive oxygen species (ROS) production in mammalian systems. Despite biochemical and cellular studies that link NIP/DuoxA to the generation of ROS through the dual oxidase (Duox) enzyme, the in vivo function of NIP/DuoxA has not been characterized to date. Here we report a genetic and functional characterization of nip in Drosophila melanogaster. We show that nip is essential for Drosophila development as nip null mutants die at the 1(st) larval instar. Expression of UAS-nip, but not …
Structural Basis Of Error-Prone Replication And Stalling At A Thymine Base By Human Dna Polymerase Iota, Kevin N. Kirouac, Hong Ling
Structural Basis Of Error-Prone Replication And Stalling At A Thymine Base By Human Dna Polymerase Iota, Kevin N. Kirouac, Hong Ling
Biochemistry Publications
Human DNA polymerase iota (pol iota) is a unique member of Y-family polymerases, which preferentially misincorporates nucleotides opposite thymines (T) and halts replication at T bases. The structural basis of the high error rates remains elusive. We present three crystal structures of pol complexed with DNA containing a thymine base, paired with correct or incorrect incoming nucleotides. A narrowed active site supports a pyrimidine to pyrimidine mismatch and excludes Watson-Crick base pairing by pol. The template thymine remains in an anti conformation irrespective of incoming nucleotides. Incoming ddATP adopts a syn conformation with reduced base stacking, whereas incorrect dGTP and …
Ab Initio Exon Definition Using An Information Theory-Based Approach, Peter K. Rogan
Ab Initio Exon Definition Using An Information Theory-Based Approach, Peter K. Rogan
Biochemistry Publications
Transcribed exons in genes are joined together at donor and acceptor splice sites precisely and efficiently to generate mRNAs capa ble of being translated into proteins. The sequence variability in individual splice sites can be modeled using Shannon information theory. In the laboratory, the degree of individual splice site use is inferred from the structures of mRNAs and their relative abundance. These structures can be predicted using a bipartite information theory framework that is guided by current knowledge of biological mechanisms for exon recognition. We present the results of this analysis for the complete dataset of all expressed human exons.
The Proton-Translocating A Subunit Of F0f1-Atp Synthase Is Allocated Asymmetrically To The Peripheral Stalk., Monika G Düser, Yumin Bi, Nawid Zarrabi, Stanley D Dunn, Michael Börsch
The Proton-Translocating A Subunit Of F0f1-Atp Synthase Is Allocated Asymmetrically To The Peripheral Stalk., Monika G Düser, Yumin Bi, Nawid Zarrabi, Stanley D Dunn, Michael Börsch
Biochemistry Publications
The position of the a subunit of the membrane-integral F0 sector of Escherichia coli ATP synthase was investigated by single molecule fluorescence resonance energy transfer studies utilizing a fusion of enhanced green fluorescent protein to the C terminus of the a subunit and fluorescent labels attached to specific positions of the epsilon or gamma subunits. Three fluorescence resonance energy transfer levels were observed during rotation driven by ATP hydrolysis corresponding to the three resting positions of the rotor subunits, gamma or epsilon, relative to the a subunit of the stator. Comparison of these positions of the rotor sites with those …
Domain Compliance And Elastic Power Transmission In Rotary F(O)F(1)-Atpase., Hendrik Sielaff, Henning Rennekamp, André Wächter, Hao Xie, Florian Hilbers, Katrin Feldbauer, Stanley D Dunn, Siegfried Engelbrecht, Wolfgang Junge
Domain Compliance And Elastic Power Transmission In Rotary F(O)F(1)-Atpase., Hendrik Sielaff, Henning Rennekamp, André Wächter, Hao Xie, Florian Hilbers, Katrin Feldbauer, Stanley D Dunn, Siegfried Engelbrecht, Wolfgang Junge
Biochemistry Publications
The 2 nanomotors of rotary ATP synthase, ionmotive F(O) and chemically active F(1), are mechanically coupled by a central rotor and an eccentric bearing. Both motors rotate, with 3 steps in F(1) and 10-15 in F(O). Simulation by statistical mechanics has revealed that an elastic power transmission is required for a high rate of coupled turnover. Here, we investigate the distribution in the F(O)F(1) structure of compliant and stiff domains. The compliance of certain domains was restricted by engineered disulfide bridges between rotor and stator, and the torsional stiffness (kappa) of unrestricted domains was determined by analyzing their thermal rotary …
Tethering Polypeptides Through Bifunctional Peg Cross-Linking Agents To Probe Protein Function: Application To Atp Synthase., Daniel J Cipriano, Stanley D Dunn
Tethering Polypeptides Through Bifunctional Peg Cross-Linking Agents To Probe Protein Function: Application To Atp Synthase., Daniel J Cipriano, Stanley D Dunn
Biochemistry Publications
Chemical crosslinking mediated by short bifunctional reagents has been widely used for determining physical relationships among polypeptides in multisubunit proteins, but less often for functional studies. Here we introduce the approach of tethering polypeptides by using bifunctional reagents containing a lengthy, flexible PEG linker as a form of crosslinking especially suited to functional analyses. The rotary molecular motor ATP synthase was used as a model subject. Single cysteine residues were introduced into selected positions of ATP synthase epsilon subunit, a component of the rotor subcomplex of the enzyme, and the unrelated maltose binding protein (MBP), then the two purified recombinant …
Probing The Functional Tolerance Of The B Subunit Of Escherichia Coli Atp Synthase For Sequence Manipulation Through A Chimera Approach., Yumin Bi, Joel C Watts, Pamela Krauss Bamford, Lee-Ann K Briere, Stanley D Dunn
Probing The Functional Tolerance Of The B Subunit Of Escherichia Coli Atp Synthase For Sequence Manipulation Through A Chimera Approach., Yumin Bi, Joel C Watts, Pamela Krauss Bamford, Lee-Ann K Briere, Stanley D Dunn
Biochemistry Publications
A dimer of 156-residue b subunits forms the peripheral stator stalk of eubacterial ATP synthase. Dimerization is mediated by a sequence with an unusual 11-residue (hendecad) repeat pattern, implying a right-handed coiled coil structure. We investigated the potential for producing functional chimeras in the b subunit of Escherichia coli ATP synthase by replacing parts of its sequence with corresponding regions of the b subunits from other eubacteria, sequences from other polypeptides having similar hendecad patterns, and sequences forming left-handed coiled coils. Replacement of positions 55-110 with corresponding sequences from Bacillus subtilis and Thermotoga maritima b subunits resulted in fully functional …
Crystal Structures Of The Streptomyces Coelicolor Tetr-Like Protein Actr Alone And In Complex With Actinorhodin Or The Actinorhodin Biosynthetic Precursor (S)-Dnpa., A R Willems, K Tahlan, T Taguchi, K Zhang, Z Z Lee, K Ichinose, M S Junop, J R Nodwell
Crystal Structures Of The Streptomyces Coelicolor Tetr-Like Protein Actr Alone And In Complex With Actinorhodin Or The Actinorhodin Biosynthetic Precursor (S)-Dnpa., A R Willems, K Tahlan, T Taguchi, K Zhang, Z Z Lee, K Ichinose, M S Junop, J R Nodwell
Biochemistry Publications
Actinorhodin, an antibiotic produced by Streptomyces coelicolor, is exported from the cell by the ActA efflux pump. actA is divergently transcribed from actR, which encodes a TetR-like transcriptional repressor. We showed previously that ActR represses transcription by binding to an operator from the actA/actR intergenic region. Importantly, actinorhodin itself or various actinorhodin biosynthetic intermediates can cause ActR to dissociate from its operator, leading to derepression. This suggests that ActR may mediate timely self-resistance to an endogenously produced antibiotic by responding to one of its biosynthetic precursors. Here, we report the structural basis for this precursor-mediated derepression with crystal structures of …
The Stator Complex Of The A1a0-Atp Synthase--Structural Characterization Of The E And H Subunits., Erik Kish-Trier, Lee-Ann K Briere, Stanley D Dunn, Stephan Wilkens
The Stator Complex Of The A1a0-Atp Synthase--Structural Characterization Of The E And H Subunits., Erik Kish-Trier, Lee-Ann K Briere, Stanley D Dunn, Stephan Wilkens
Biochemistry Publications
Archaeal ATP synthase (A-ATPase) is the functional homolog to the ATP synthase found in bacteria, mitochondria and chloroplasts, but the enzyme is structurally more related to the proton-pumping vacuolar ATPase found in the endomembrane system of eukaryotes. We have cloned, overexpressed and characterized the stator-forming subunits E and H of the A-ATPase from the thermoacidophilic Archaeon, Thermoplasma acidophilum. Size exclusion chromatography, CD, matrix-assisted laser desorption ionization time-of-flight mass spectrometry and NMR spectroscopic experiments indicate that both polypeptides have a tendency to form dimers and higher oligomers in solution. However, when expressed together or reconstituted, the two individual polypeptides interact with …
Development Of An Unbiased Statistical Method For The Analysis Of Unigenic Evolution, Colleen D. Behrsin, Chris J. Brandl, David W. Litchfield, Brian H. Shilton, Lindi M. Wahl
Development Of An Unbiased Statistical Method For The Analysis Of Unigenic Evolution, Colleen D. Behrsin, Chris J. Brandl, David W. Litchfield, Brian H. Shilton, Lindi M. Wahl
Biochemistry Publications
Background: Unigenic evolution is a powerful genetic strategy involving random mutagenesis of a single gene product to delineate functionally important domains of a protein. This method involves selection of variants of the protein which retain function, followed by statistical analysis comparing expected and observed mutation frequencies of each residue. Resultant mutability indices for each residue are averaged across a specified window of codons to identify hypomutable regions of the protein. As originally described, the effect of changes to the length of this averaging window was not fully eludicated. In addition, it was unclear when sufficient functional variants had been examined …