Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biochemistry (185)
- Molecular Biology (185)
- Physical Sciences and Mathematics (65)
- Chemistry (58)
- Medicine and Health Sciences (40)
-
- Cell Biology (37)
- Cell and Developmental Biology (37)
- Biology (34)
- Genetics and Genomics (34)
- Genetics (32)
- Biophysics (26)
- Medical Specialties (16)
- Pharmacology, Toxicology and Environmental Health (16)
- Medical Sciences (13)
- Oncology (13)
- Pharmacology (13)
- Microbiology (12)
- Immunology and Infectious Disease (10)
- Nutrition (10)
- Physiology (10)
- Bioinformatics (9)
- Neurosciences (9)
- Analytical Chemistry (8)
- Organic Chemistry (8)
- Physics (5)
- Ecology and Evolutionary Biology (4)
- Engineering (4)
- Evolution (4)
- Keyword
-
- Biochemistry (15)
- Biological Sciences (14)
- Cancer (10)
- Drosophila (10)
- Frataxin (7)
-
- RNA (7)
- Apoptosis (6)
- Ribosome (6)
- Cisplatin (5)
- DNA (5)
- Inflammation (5)
- Splicing (5)
- Bipolar disorder (4)
- Cardiolipin (4)
- Kinase (4)
- P53 (4)
- Transcription (4)
- AMPK (3)
- ATP (3)
- ATP analogs (3)
- Autophagy (3)
- Breast cancer (3)
- Crosslinking (3)
- Cysteine desulfurase (3)
- Dosage compensation (3)
- Epigenetics (3)
- Glutathione (3)
- HIV-1 (3)
- Iron (3)
- Mitochondria (3)
- Publication Year
- Publication
- Publication Type
Articles 301 - 319 of 319
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
The Caenorhabditis Globin Gene Family Reveals Extensive Nematode-Specific Radiation And Diversification, David Hoogewijs, Sasha De Henau, Sylvia Dewilde, Luc Moens, Marjolein Couvreur, Gaetan Borgonie, Serge N. Vinogradov, Scott W. Roy, Jacques R. Vanfleteren
The Caenorhabditis Globin Gene Family Reveals Extensive Nematode-Specific Radiation And Diversification, David Hoogewijs, Sasha De Henau, Sylvia Dewilde, Luc Moens, Marjolein Couvreur, Gaetan Borgonie, Serge N. Vinogradov, Scott W. Roy, Jacques R. Vanfleteren
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Globin isoforms with variant properties and functions have been found in the pseudocoel, body wall and cuticle of various nematode species and even in the eyespots of the insect-parasite Mermis nigrescens. In fact, much higher levels of complexity exist, as shown by recent whole genome analysis studies. In silico analysis of the genome of Caenorhabditis elegans revealed an unexpectedly high number of globin genes featuring a remarkable diversity in gene structure, amino acid sequence and expression profiles.
Results
In the present study we have analyzed whole genomic data from C. briggsae, C. remanei, Pristionchus pacificus and Brugia malayi …
A Phylogenomic Profile Of Hemerythrins, The Nonheme Diiron Binding Respiratory Proteins, Xavier Bailly, Stefano Vanin, Christine Chabasse, Kenji Mizuguchi, Serge N. Vinogradov
A Phylogenomic Profile Of Hemerythrins, The Nonheme Diiron Binding Respiratory Proteins, Xavier Bailly, Stefano Vanin, Christine Chabasse, Kenji Mizuguchi, Serge N. Vinogradov
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Hemerythrins, are the non-heme, diiron binding respiratory proteins of brachiopods, priapulids and sipunculans; they are also found in annelids and bacteria, where their functions have not been fully elucidated.
Results
A search for putative Hrs in the genomes of 43 archaea, 444 bacteria and 135 eukaryotes, revealed their presence in 3 archaea, 118 bacteria, several fungi, one apicomplexan, a heterolobosan, a cnidarian and several annelids. About a fourth of the Hr sequences were identified as N- or C-terminal domains of chimeric, chemotactic gene regulators. The function of the remaining single domain bacterial Hrs remains to be determined. In …
Characterization And Structure Of A Zn2+ And [2fe-2s]-Containing Copper Chaperone From Archaeoglobus Fulgidus, Matthew H. Sazinsky, Benjamin Lemoine, Maria Orofino, Roman Davydov, Krisztina Z. Bencze, Timothy L. Stemmler, Brian M. Hoffman, José M. Argüello, Amy C. Rosenzweig
Characterization And Structure Of A Zn2+ And [2fe-2s]-Containing Copper Chaperone From Archaeoglobus Fulgidus, Matthew H. Sazinsky, Benjamin Lemoine, Maria Orofino, Roman Davydov, Krisztina Z. Bencze, Timothy L. Stemmler, Brian M. Hoffman, José M. Argüello, Amy C. Rosenzweig
Biochemistry and Molecular Biology Faculty Publications
Bacterial CopZ proteins deliver copper to P1B-type Cu+-ATPases that are homologous to the human Wilson and Menkes disease proteins. The genome of the hyperthermophile Archaeoglobus fulgidus encodes a putative CopZ copper chaperone that contains an unusual cysteine rich N-terminal domain of 130 amino acids in addition to a C-terminal copper-binding domain with a conserved CXXC motif. The N-terminal domain (CopZ-NT) is homologous to proteins found only in extremophiles and is the only such protein that is fused to a copper chaperone. Surprisingly, optical, electron paramagnetic resonance, and X-ray absorption spectroscopic data indicate the presence of a [2Fe-2S] cluster in CopZ-NT. …
Human Frataxin: Iron And Ferrochelatase Binding Surface, Krisztina Z. Bencze, Taejin Yoon, CéSar MilláN-Pacheco, Patrick B. Bradley, Nina Pastor, J. A. Cowan, Timothy L. Stemmler
Human Frataxin: Iron And Ferrochelatase Binding Surface, Krisztina Z. Bencze, Taejin Yoon, CéSar MilláN-Pacheco, Patrick B. Bradley, Nina Pastor, J. A. Cowan, Timothy L. Stemmler
Biochemistry and Molecular Biology Faculty Publications
The coordinated iron structure and ferrochelatase binding surface of human frataxin have been characterized to provide insight into the protein’s ability to serve as the iron chaperone during heme biosynthesis.
Wide Diversity In Structure And Expression Profiles Among Members Of The Caenorhabditis Elegans Globin Protein Family, David Hoogewijs, Eva Geuens, Sylvia Dewilde, Andy Vierstraete, Luc Moens, Serge Vinogradov, Jacques R. Vanfleteren
Wide Diversity In Structure And Expression Profiles Among Members Of The Caenorhabditis Elegans Globin Protein Family, David Hoogewijs, Eva Geuens, Sylvia Dewilde, Andy Vierstraete, Luc Moens, Serge Vinogradov, Jacques R. Vanfleteren
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
The emergence of high throughput genome sequencing facilities and powerful high performance bioinformatic tools has highlighted hitherto unexpected wide occurrence of globins in the three kingdoms of life. In silico analysis of the genome of C. elegans identified 33 putative globin genes. It remains a mystery why this tiny animal might need so many globins. As an inroad to understanding this complexity we initiated a structural and functional analysis of the globin family in C. elegans.
Results
All 33 C. elegans putative globin genes are transcribed. The translated sequences have the essential signatures of single domain bona fide …
A Proteome-Wide Protein Interaction Map For Campylobacter Jejuni, Jodi R. Parrish, Jingkai Yu, Guozhen Liu, Julie A. Hines, Jason E. Chan, Bernie A. Mangiola, Huamei Zhang, Svetlana Pacifico, Farshad Fotouhi, Victor J. Dirita, Trey Ideker, Phillip Andrews, Russell L. Finley Jr
A Proteome-Wide Protein Interaction Map For Campylobacter Jejuni, Jodi R. Parrish, Jingkai Yu, Guozhen Liu, Julie A. Hines, Jason E. Chan, Bernie A. Mangiola, Huamei Zhang, Svetlana Pacifico, Farshad Fotouhi, Victor J. Dirita, Trey Ideker, Phillip Andrews, Russell L. Finley Jr
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Data from large-scale protein interaction screens for humans and model eukaryotes have been invaluable for developing systems-level models of biological processes. Despite this value, only a limited amount of interaction data is available for prokaryotes. Here we report the systematic identification of protein interactions for the bacterium Campylobacter jejuni, a food-borne pathogen and a major cause of gastroenteritis worldwide.
Results
Using high-throughput yeast two-hybrid screens we detected and reproduced 11,687 interactions. The resulting interaction map includes 80% of the predicted C. jejuni NCTC11168 proteins and places a large number of poorly characterized proteins into networks that provide initial …
The Structure And Function Of Frataxin, Krisztina Z. Bencze, Kalyan C. Kondapalli, Jeremy D. Cook, Stephen Mcmahon, César Millán-Pacheco, Nina Pastor, Timothy L. Stemmler
The Structure And Function Of Frataxin, Krisztina Z. Bencze, Kalyan C. Kondapalli, Jeremy D. Cook, Stephen Mcmahon, César Millán-Pacheco, Nina Pastor, Timothy L. Stemmler
Biochemistry and Molecular Biology Faculty Publications
Frataxin, a highly conserved protein found in prokaryotes and eukaryotes, is required for efficient regulation of cellular iron homeostasis. Humans with a frataxin deficiency have the cardio- and neurodegenerative disorder Friedreich’s ataxia, commonly resulting from a GAA trinucleotide repeat expansion in the frataxin gene. While frataxin’s specific function remains a point of controversy, a general consensus is the protein assists in controlling cellular iron homeostasis by directly binding iron. This review focuses on the structural and biochemical aspects of iron binding by the frataxin orthologs and outlines molecular attributes that may help explain the protein’s role in different cellular pathways.
Three-Dimensional Structure Of The Bacterial Cell Wall Peptidoglycan, Samy O. Meroueh, Krisztina Z. Bencze, Dusan Hesek, Mijoon Lee, Timothy L. Stemmler, Shahriar Mobashery
Three-Dimensional Structure Of The Bacterial Cell Wall Peptidoglycan, Samy O. Meroueh, Krisztina Z. Bencze, Dusan Hesek, Mijoon Lee, Timothy L. Stemmler, Shahriar Mobashery
Biochemistry and Molecular Biology Faculty Publications
The 3D structure of the bacterial peptidoglycan, the major constit- uent of the cell wall, is one of the most important, yet still unsolved, structural problems in biochemistry. The peptidoglycan comprises alternating N-acetylglucosamine (NAG) and N-acetylmu- ramic disaccharide (NAM) saccharides, the latter of which has a peptide stem. Adjacent peptide stems are cross-linked by the transpeptidase enzymes of cell wall biosynthesis to provide the cell wall polymer with the structural integrity required by the bacte- rium. The cell wall and its biosynthetic enzymes are targets of antibiotics. The 3D structure of the cell wall has been elusive because of its …
A Phylogenomic Profile Of Globins, Serge N. Vinogradov, David Hoogewijs, Xavier Bailly, Raãºl Arredondo-Peter, Julian Gough, Sylvia Dewilde, Luc Moens, Jacques R. Vanfleteren
A Phylogenomic Profile Of Globins, Serge N. Vinogradov, David Hoogewijs, Xavier Bailly, Raãºl Arredondo-Peter, Julian Gough, Sylvia Dewilde, Luc Moens, Jacques R. Vanfleteren
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Globins occur in all three kingdoms of life: they can be classified into single-domain globins and chimeric globins. The latter comprise the flavohemoglobins with a C-terminal FAD-binding domain and the gene-regulating globin coupled sensors, with variable C-terminal domains. The single-domain globins encompass sequences related to chimeric globins and «truncated» hemoglobins with a 2-over-2 instead of the canonical 3-over-3 α-helical fold.
Results
A census of globins in 26 archaeal, 245 bacterial and 49 eukaryote genomes was carried out. Only ~25% of archaea have globins, including globin coupled sensors, related single domain globins and 2-over-2 globins. From one to seven …
The Importance Of A Critical Protonation State And The Fate Of The Catalytic Steps In Class A Β-Lactamases And Penicillin-Binding Proteins, Dasantila Golemi-Kotra, Samy O. Meroueh, Choonkeun Kim, Sergei B. Vakulenko, Alexey Bulychev, Ann J. Stemmler, Timothy L. Stemmler, Shahriar Mobashery
The Importance Of A Critical Protonation State And The Fate Of The Catalytic Steps In Class A Β-Lactamases And Penicillin-Binding Proteins, Dasantila Golemi-Kotra, Samy O. Meroueh, Choonkeun Kim, Sergei B. Vakulenko, Alexey Bulychev, Ann J. Stemmler, Timothy L. Stemmler, Shahriar Mobashery
Biochemistry and Molecular Biology Faculty Publications
b-Lactamases and penicillin-binding proteins are bacterial enzymes involved in antibiotic resistance to b-lactam antibiotics and biosynthetic assembly of cell wall, respectively. Members of these large families of enzymes all experience acylation by their respective substrates at an active-site serine as the first step in their catalytic activities. A Ser-X-X-Lys sequence motif is seen in all these proteins and crystal structures demonstrate that the side chain functions of the serine and lysine are in contact with one another. Three independent methods were used in this report to address the question of the protonation state of this important lysine (Lys73) in the …
Integrated Allosteric Regulation In The S. Cerevisiae Carbamylphosphate Synthetase – Aspartate Transcarbamylase Multifunctional Protein, Valã©Rie Serre, Bernadette Penverne, Jean-Luc Souciet, Serge Potier, Hedeel Guy, David Evans, Patrick Vicart, Guy Hervã©
Integrated Allosteric Regulation In The S. Cerevisiae Carbamylphosphate Synthetase – Aspartate Transcarbamylase Multifunctional Protein, Valã©Rie Serre, Bernadette Penverne, Jean-Luc Souciet, Serge Potier, Hedeel Guy, David Evans, Patrick Vicart, Guy Hervã©
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
The S. cerevisiae carbamylphosphate synthetase – aspartate transcarbamylase multifunctional protein catalyses the first two reactions of the pyrimidine pathway. In this organism, these two reactions are feedback inhibited by the end product UTP. In the present work, the mechanisms of these integrated inhibitions were studied.
Results
The results obtained show that the inhibition is competitive in the case of carbamylphosphate synthetase and non-competitive in the case of aspartate transcarbamylase. They also identify the substrate whose binding is altered by this nucleotide and the step of the carbamylphosphate synthetase reaction which is inhibited. Furthermore, the structure of the domains …
A Drosophila Protein-Interaction Map Centered On Cell-Cycle Regulators, Clement A. Stanyon, Guozhen Liu, Bernardo A. Mangiola, Nishi Patel, Loic Giot, Bing Kuang, Huamei Zhang, Jinhui Zhong, Russell L. Finley Jr
A Drosophila Protein-Interaction Map Centered On Cell-Cycle Regulators, Clement A. Stanyon, Guozhen Liu, Bernardo A. Mangiola, Nishi Patel, Loic Giot, Bing Kuang, Huamei Zhang, Jinhui Zhong, Russell L. Finley Jr
Wayne State University Associated BioMed Central Scholarship
Abstract
Background
Maps depicting binary interactions between proteins can be powerful starting points for understanding biological systems. A proven technology for generating such maps is high-throughput yeast two-hybrid screening. In the most extensive screen to date, a Gal4-based two-hybrid system was used recently to detect over 20,000 interactions among Drosophila proteins. Although these data are a valuable resource for insights into protein networks, they cover only a fraction of the expected number of interactions.
Results
To complement the Gal4-based interaction data, we used the same set of Drosophila open reading frames to construct arrays for a LexA-based two-hybrid system. We …
Purified Particulate Methane Monooxygenase From Methylococcus Capsulatus (Bath) Is A Dimer With Both Mononuclear Copper And A Copper-Containing Cluster, Raquel L. Lieberman, Deepak B. Shrestha, Peter E. Doan, Brian M. Hoffman, Timothy L. Stemmler, Amy C. Rosenzweig
Purified Particulate Methane Monooxygenase From Methylococcus Capsulatus (Bath) Is A Dimer With Both Mononuclear Copper And A Copper-Containing Cluster, Raquel L. Lieberman, Deepak B. Shrestha, Peter E. Doan, Brian M. Hoffman, Timothy L. Stemmler, Amy C. Rosenzweig
Biochemistry and Molecular Biology Faculty Publications
Particulate methane monooxygenase (pMMO) is a membrane-bound enzyme that catalyzes the oxidation of methane to methanol in methanotropic bacteria. Understanding how this enzyme hydroxylates methane at ambient temperature and pressure is of fundamental chemical and potential commercial importance. Difficulties in solubilizing and purifying active pMMO have led to conflicting reports regarding its biochemical and biophysical properties, however. We have purified pMMO from Methylococcus capsulatus (Bath) and detected activity. The purified enzyme has a molecular mass of ~200 kDa, probably corresponding to an a2b2g2 polypeptide arrangement. Each 200 kDa pMMO complex contains 4.8 ± 0.8 copper ions and 1.5 ± 0.7 …
The Crystal Structure Of Recombinant Human Neutrophil-Activating Peptide-2 (M6l) At 1.9-Å Resolution, Michael G. Malkowski, Jean Yang Wu, Jerome B. Lazar, Paul H. Johnson, Brian Fp Edwards
The Crystal Structure Of Recombinant Human Neutrophil-Activating Peptide-2 (M6l) At 1.9-Å Resolution, Michael G. Malkowski, Jean Yang Wu, Jerome B. Lazar, Paul H. Johnson, Brian Fp Edwards
Biochemistry and Molecular Biology Faculty Publications
Neutrophil-activating peptide-2 (NAP-2) is a 70-residue carboxyl-terminal fragment of platelet basic protein, which is found in the a-granules of human platelets. NAP-2, which belongs to the CXC family of chemokines that includes Interleukin-B and platelet factor 4, binds to the interleukin-8 type II receptor and induces a rise in cytosolic calcium, chemotaxis of neutrophils, and exocytosis. Crystals of recombinant NAP-2 in which the single methionine at position 6 was replaced by leucine to facilitate expression belong to space group PI (unit cell parameters a = 40.8, b = 43.8, and c = 44.7 A and a = 98.4°, fl = …
The Structure Of A Complex Of Bovine Ɑ-Thrombin And Recombinant Hirudin At 2.8-Å Resolution, Jacqueline Vitali, Philip D. Martin, Michael G. Malkowski, William D. Robertson, Jerome B. Lazar, Richard C. Winant, Paul H. Johnson, Brian Fp Edwards
The Structure Of A Complex Of Bovine Ɑ-Thrombin And Recombinant Hirudin At 2.8-Å Resolution, Jacqueline Vitali, Philip D. Martin, Michael G. Malkowski, William D. Robertson, Jerome B. Lazar, Richard C. Winant, Paul H. Johnson, Brian Fp Edwards
Biochemistry and Molecular Biology Faculty Publications
Crystals of the complex of bovine alpha-thrombin with recombinant hirudin variant 1 have space group C222(1) with cell constants a = 59.11, b = 102.62, and c = 143.26 A. The orientation and position of the thrombin component was determined by molecular replacement and the hirudin molecule was fit in 2 magnitude of Fo - magnitude of Fc electron density maps. The structure was refined by restrained least squares and simulated annealing to R = 0.161 at 2.8-A resolution. The binding of hirudin to thrombin is generally similar to that observed in the crystals of human thrombin-hirudin. Several differences in …
The Structure Of Residues 7-16 Of The Aɑ-Chain Of Human Fibrinogen Bound To Bovine Thrombin At 2.3 Å Resolution, Philip D. Martin, William Robertson, Dusan Turk, Robert Huber, Wolfram Bode, Brian Fp Edwards
The Structure Of Residues 7-16 Of The Aɑ-Chain Of Human Fibrinogen Bound To Bovine Thrombin At 2.3 Å Resolution, Philip D. Martin, William Robertson, Dusan Turk, Robert Huber, Wolfram Bode, Brian Fp Edwards
Biochemistry and Molecular Biology Faculty Publications
The tetradecapeptide Ac-D-F-L-A-E-G-G-G-V-R-G-P-R-V-OMe, which mimics residues 7f-20f of the A alpha-chain of human fibrinogen, has been co-crystallized with bovine thrombin from ammonium sulfate solutions in space group P2(1) with unit cell dimensions of a = 83.0 A, b = 89.4 A, c = 99.3 A, and beta = 106.6 degrees. Three crystallographically independent complexes were located in the asymmetric unit by molecular replacement using the native bovine thrombin structure as a model. The standard crystallographic R-factor is 0.167 at 2.3-A resolution. Excellent electron density could be traced for the decapeptide, beginning with Asp-7f and ending with Arg-16f in the active …
Structural Changes That Accompany The Reduced Catalytic Efficiency Of Two Semisynthetic Ribonuclease Analogs, V. Srini J. De Mel, Philip D. Martin, Marilynn S. Doscher, Brian Fp Edwards
Structural Changes That Accompany The Reduced Catalytic Efficiency Of Two Semisynthetic Ribonuclease Analogs, V. Srini J. De Mel, Philip D. Martin, Marilynn S. Doscher, Brian Fp Edwards
Biochemistry and Molecular Biology Faculty Publications
The structures of two catalytically defective semi-synthetic RNases obtained by replacing aspartic acid 121 with asparagine or alanine have been determined and refined at a resolution of 2.0 A (R = 0.186 and 0.172, respectively). When these structures are compared with the refined 1.8-A structure (R = 0.204) of the fully active aspartic acid-containing enzyme (Martin, P.D., Doscher, M.S., and Edwards, B. F. P. (1987) J. Biol. Chem. 262, 15930-15938), numerous and widespread changes, much greater in number and magnitude than the small structural variations noted previously between the semisynthetic complex and RNase A, are found to have occurred. These …
The Three-Dimensional Structure Of Bovine Platelet Factor 4 At 3.0-Å Resolution, Robert St. Charles, Daniel A. Walz, Brian Fp Edwards
The Three-Dimensional Structure Of Bovine Platelet Factor 4 At 3.0-Å Resolution, Robert St. Charles, Daniel A. Walz, Brian Fp Edwards
Biochemistry and Molecular Biology Faculty Publications
Platelet factor 4 (PF4), which is released by platelets during coagulation, binds very tightly to negatively charged oligosaccharides such as heparin. To date, six other proteins are known that are homologous in sequence with PF4 but have quite different functions. The structure of a tetramer of bovine PF4 complexed with one Ni(CN)42− molecule has been determined at 3.0 Å resolution and refined to an R factor of 0.28. The current model contains residues 24–85, no solvent, and one overall temperature factor. Residues 1–13, which carried an oligosaccharide chain, were removed with elastase to induce crystallization; residues 14–23 and presumably 86–88 …
The Refined Crystal Structure Of A Fully Active Semisynthetic Ribonuclease At 1.8 Å Resolution, Philip D. Martin, Marilynn S. Doscher, Brian Fp Edwards
The Refined Crystal Structure Of A Fully Active Semisynthetic Ribonuclease At 1.8 Å Resolution, Philip D. Martin, Marilynn S. Doscher, Brian Fp Edwards
Biochemistry and Molecular Biology Faculty Publications
A fully active, semisynthetic analog of bovine ribonuclease A, comprised of residues 1-118 of the molecule in a noncovalent complex with the synthetic peptide analog of residues 111-124, has been crystallized in space group P3(2)21 from a solution of 1.3 M ammonium sulfate and 3.0 M cesium chloride at pH 5.2. The crystallographic structure was determined by rotation and translation searches utilizing the coordinates for ribonuclease A reported by Wlodawer and Sjolin (Wlodawer, A., and Sjolin, L. (1983) Biochemistry 22, 2720-2728) and has been refined at 1.8-A resolution to an agreement factor of 0.204. Most of the structure of the …