Computational Investigation of the pH Dependence of Stability of Melanosome Proteins: Implication for Melanosome formation and Disease
暂无分享,去创建一个
[1] E. Alexov,et al. pH-Dependent Interactions of Apolipophorin-III with a Lipid Disk , 2020, Journal of Computational Biophysics and Chemistry.
[2] T. Perkins,et al. Quantifying the Native Energetics Stabilizing Bacteriorhodopsin by Single-Molecule Force Spectroscopy. , 2020, Physical review letters.
[3] S. Nagamori,et al. Membrane transport proteins in melanosomes: Regulation of ions for pigmentation , 2020, Biochimica et Biophysica Acta (BBA) - Biomembranes.
[4] K. E. Johansson,et al. Global analysis of protein stability by temperature and chemical denaturation , 2020, bioRxiv.
[5] M. Marks,et al. SLC45A2 protein stability and regulation of melanosome pH determine melanocyte pigmentation , 2020, bioRxiv.
[6] W. Pavan,et al. The Genetics of Human Skin and Hair Pigmentation. , 2019, Annual review of genomics and human genetics.
[7] E. Alexov,et al. Modeling pKas of unfolded proteins to probe structural models of unfolded state , 2019, Journal of Theoretical and Computational Chemistry.
[8] Weizhong Zeng,et al. Structural mechanisms of phospholipid activation of the human TPC2 channel , 2019, eLife.
[9] Liping He,et al. DeepDDG: Predicting the Stability Change of Protein Point Mutations Using Neural Networks , 2019, J. Chem. Inf. Model..
[10] T. Rosenberg,et al. A pathogenic haplotype, common in Europeans, causes autosomal recessive albinism and uncovers missing heritability in OCA1 , 2019, Scientific Reports.
[11] Helen E. Parkinson,et al. The NHGRI-EBI GWAS Catalog of published genome-wide association studies, targeted arrays and summary statistics 2019 , 2018, Nucleic Acids Res..
[12] Jianxin Shi,et al. Cell-type–specific eQTL of primary melanocytes facilitates identification of melanoma susceptibility genes , 2017, bioRxiv.
[13] C. Berking,et al. TPC2 polymorphisms associated with a hair pigmentation phenotype in humans result in gain of channel function by independent mechanisms , 2017, Proceedings of the National Academy of Sciences.
[14] M. Soler‐Lopez,et al. Structure of Human Tyrosinase Related Protein 1 Reveals a Binuclear Zinc Active Site Important for Melanogenesis , 2017, Angewandte Chemie.
[15] Tom L. Blundell,et al. SDM: a server for predicting effects of mutations on protein stability , 2017, Nucleic Acids Res..
[16] P. Nissen,et al. Characterization of ATP7A missense mutants suggests a correlation between intracellular trafficking and severity of Menkes disease , 2017, Scientific Reports.
[17] E. Alexov,et al. Computational investigation of proton transfer, pKa shifts and pH‐optimum of protein–DNA and protein–RNA complexes , 2017, Proteins.
[18] Piero Fariselli,et al. INPS-MD: a web server to predict stability of protein variants from sequence and structure , 2016, Bioinform..
[19] K. Christian,et al. TPC2 controls pigmentation by regulating melanosome pH and size , 2016, Proceedings of the National Academy of Sciences.
[20] B. Bastian,et al. From melanocytes to melanomas , 2016, Nature Reviews Cancer.
[21] E. Alexov,et al. SAAFEC: Predicting the Effect of Single Point Mutations on Protein Folding Free Energy Using a Knowledge-Modified MM/PBSA Approach , 2016, International journal of molecular sciences.
[22] Lin Li,et al. pKa predictions for proteins, RNAs, and DNAs with the Gaussian dielectric function using DelPhi pKa , 2015, Proteins.
[23] Lin Wang,et al. DelPhiPKa web server: predicting pKa of proteins, RNAs and DNAs , 2015, Bioinform..
[24] S. Iwata,et al. Structure and mechanism of the mammalian fructose transporter GLUT5 , 2015, Nature.
[25] Michael J E Sternberg,et al. The Phyre2 web portal for protein modeling, prediction and analysis , 2015, Nature Protocols.
[26] Y. Pei,et al. Bbmsn2 acts as a pH-dependent negative regulator of secondary metabolite production in the entomopathogenic fungus Beauveria bassiana. , 2015, Environmental microbiology.
[27] The Uniprot Consortium,et al. UniProt: a hub for protein information , 2014, Nucleic Acids Res..
[28] Kamal Uddin Zaidi,et al. Purification and Characterization of Melanogenic Enzyme Tyrosinase from Button Mushroom , 2014, Enzyme research.
[29] Douglas E. V. Pires,et al. DUET: a server for predicting effects of mutations on protein stability using an integrated computational approach , 2014, Nucleic Acids Res..
[30] V. Hearing,et al. Melanocytes and their diseases. , 2014, Cold Spring Harbor perspectives in medicine.
[31] Douglas E. V. Pires,et al. mCSM: predicting the effects of mutations in proteins using graph-based signatures , 2013, Bioinform..
[32] Chi-Wei Chen,et al. iStable: off-the-shelf predictor integration for predicting protein stability changes , 2013, BMC Bioinformatics.
[33] Da-Neng Wang,et al. Structure and mechanism of a bacterial sodium-dependent dicarboxylate transporter , 2012, Nature.
[34] Emil Alexov,et al. An X-linked channelopathy with cardiomegaly due to a CLIC2 mutation enhancing ryanodine receptor channel activity. , 2012, Human molecular genetics.
[35] Céline Charavay,et al. Flexible-meccano: a tool for the generation of explicit ensemble descriptions of intrinsically disordered proteins and their associated experimental observables , 2012, Bioinform..
[36] Emil Alexov,et al. A missense mutation in CLIC2 associated with intellectual disability is predicted by in silico modeling to affect protein stability and dynamics , 2011, Proteins.
[37] P. Nissen,et al. Crystal structure of a copper-transporting PIB-type ATPase , 2011, Nature.
[38] Emil Alexov,et al. In silico modeling of pH‐optimum of protein–protein binding , 2011, Proteins.
[39] Emil Alexov,et al. On the pH‐optimum of activity and stability of proteins , 2010, Proteins.
[40] Bertrand Garcia-Moreno,et al. Adaptations of proteins to cellular and subcellular pH , 2009, Journal of biology.
[41] K. Fritsche,et al. A Role for the ATP7A Copper-transporting ATPase in Macrophage Bactericidal Activity* , 2009, The Journal of Biological Chemistry.
[42] Javier Sancho,et al. ProtSA: a web application for calculating sequence specific protein solvent accessibilities in the unfolded ensemble , 2009, BMC Bioinformatics.
[43] T. Kupiec,et al. Association of the SLC45A2 gene with physiological human hair colour variation , 2008, Journal of Human Genetics.
[44] J. Benítez,et al. SLC45A2: a novel malignant melanoma‐associated gene , 2008, Human mutation.
[45] Nicholas G Martin,et al. A single SNP in an evolutionary conserved region within intron 86 of the HERC2 gene determines human blue-brown eye color. , 2008, American journal of human genetics.
[46] Hans Eiberg,et al. Blue eye color in humans may be caused by a perfectly associated founder mutation in a regulatory element located within the HERC2 gene inhibiting OCA2 expression , 2008, Human Genetics.
[47] Wei Chen,et al. A three-single-nucleotide polymorphism haplotype in intron 1 of OCA2 explains most human eye-color variation. , 2007, American journal of human genetics.
[48] Arlo Z. Randall,et al. Prediction of protein stability changes for single‐site mutations using support vector machines , 2005, Proteins.
[49] Laxmikant V. Kalé,et al. Scalable molecular dynamics with NAMD , 2005, J. Comput. Chem..
[50] Piero Fariselli,et al. I-Mutant2.0: predicting stability changes upon mutation from the protein sequence or structure , 2005, Nucleic Acids Res..
[51] Conrad C. Huang,et al. UCSF Chimera—A visualization system for exploratory research and analysis , 2004, J. Comput. Chem..
[52] Emil Alexov,et al. Numerical calculations of the pH of maximal protein stability. The effect of the sequence composition and three-dimensional structure. , 2003, European journal of biochemistry.
[53] A. Monaco,et al. Novel membrane traffic steps regulate the exocytosis of the Menkes disease ATPase. , 2002, Human molecular genetics.
[54] K. Wakamatsu,et al. Melanosomal pH controls rate of melanogenesis, eumelanin/phaeomelanin ratio and melanosome maturation in melanocytes and melanoma cells. , 2001, Experimental cell research.
[55] M. Brilliant. The mouse p (pink-eyed dilution) and human P genes, oculocutaneous albinism type 2 (OCA2), and melanosomal pH. , 2001, Pigment cell research.
[56] J. Nicell,et al. Characterization of tyrosinase for the treatment of aqueous phenols , 2000 .
[57] Martin Karplus,et al. pH-Dependence of Protein Stability: Absolute Electrostatic Free Energy Differences between Conformations† , 1997 .
[58] M. Karplus,et al. CHARMM: A program for macromolecular energy, minimization, and dynamics calculations , 1983 .
[59] Emil Alexov,et al. Modeling electrostatics in molecular biology: A tutorial of DelPhi and associated resources [Article v1.0] , 2019, Living Journal of Computational Molecular Science.
[60] N. Guex,et al. SWISS‐MODEL and the Swiss‐Pdb Viewer: An environment for comparative protein modeling , 1997, Electrophoresis.