Racemization of aspartic acid in human proteins
暂无分享,去创建一个
[1] P. Delmas,et al. Racemization and isomerization of type I collagen C-telopeptides in human bone and soft tissues: assessment of tissue turnover. , 2000, The Biochemical journal.
[2] B. Nagy,et al. Application of aspartic acid racemization to forensic odontology: post mortem designation of age at death. , 1985, Forensic science international.
[3] H. Pfeiffer,et al. Estimation of dental age using HPLC-technique to determine the degree of aspartic acid racemization. , 1994, Journal of forensic sciences.
[4] N. Robinson,et al. Prediction of protein deamidation rates from primary and three-dimensional structure , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[5] J L Bada,et al. Aspartic acid racemization in tooth enamel from living humans. , 1975, Proceedings of the National Academy of Sciences of the United States of America.
[6] A. V. Duin,et al. The effects of conformational constraints on aspartic acid racemization , 1998 .
[7] S. Ohtani,et al. Racemization of aspartic acid in human cementum with age. , 1995, Archives of oral biology.
[8] M J Ball,et al. Structural alterations in the peptide backbone of beta-amyloid core protein may account for its deposition and stability in Alzheimer's disease. , 1993, The Journal of biological chemistry.
[9] D. Aswad,et al. In vitro aging of calmodulin generates isoaspartate at multiple Asn–Gly and Asp–Gly sites in calcium‐binding domains II, III, and IV , 1993, Protein science : a publication of the Protein Society.
[10] J. Lian,et al. Osteocalcin. Biochemical considerations and clinical applications. , 1988, Clinical orthopaedics and related research.
[11] Allen J. Bailey,et al. Molecular mechanisms of ageing in connective tissues , 2001, Mechanisms of Ageing and Development.
[12] A. Turzynski,et al. Identification of osteocalcin as a permanent aging constituent of the bone matrix: basis for an accurate age at death determination. , 1996, Forensic science international.
[13] A. Perna,et al. D-amino acids in aging erythrocytes. , 1998, EXS.
[14] J L Bada,et al. Aspartic acid racemization in heavy molecular weight crystallins and water insoluble protein from normal human lenses and cataracts. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[15] P. N. Mcfadden,et al. Injury-Induced Enzymatic Methylation of Aging Collagen in the Extracellular Matrix of Blood Vessels , 1997, Journal of protein chemistry.
[16] J. Bijlsma,et al. Effect of Collagen Turnover on the Accumulation of Advanced Glycation End Products* , 2000, The Journal of Biological Chemistry.
[17] S Ritz,et al. Estimation of age at death based on aspartic acid racemization in noncollagenous bone proteins. , 1994, Forensic science international.
[18] Y. Ihara,et al. Deamidation and Isoaspartate Formation in Smeared Tau in Paired Helical Filaments , 1999, The Journal of Biological Chemistry.
[19] K. Harada,et al. Kinetic study of racemization of aspartyl residues in model peptides of alpha A-crystallin. , 2009, International journal of peptide and protein research.
[20] W. Lehmann,et al. Analysis of isoaspartate in peptides by electrospray tandem mass spectrometry , 2000, Protein science : a publication of the Protein Society.
[21] A. V. van Duin,et al. Predicting protein decomposition: the case of aspartic-acid racemization kinetics. , 1999, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[22] P. Qvist,et al. Characterization of Urinary Degradation Products Derived from Type I Collagen , 1997, The Journal of Biological Chemistry.
[23] A. Maroudas,et al. Racemization of aspartic acid in human articular cartilage. , 1992, Connective tissue research.
[24] J. Leszyk,et al. Carboxyl Methylation of Deamidated Calmodulin Increases Its Stability in Xenopus Oocyte Cytoplasm , 1998, The Journal of Biological Chemistry.
[25] D. Aswad,et al. Isoaspartate in Chrondroitin Sulfate Proteoglycans of Mammalian Brain* , 1998, The Journal of Biological Chemistry.
[26] P. J. van den Oetelaar,et al. Racemization of aspartyl residues in proteins from normal and cataractous human lenses: an aging process without involvement in cataract formation. , 1989, Experimental eye research.
[27] D. Aswad,et al. Deamidation and isoaspartate formation in peptides and proteins , 1995 .
[28] F. Bossa,et al. Deamidation of asparagine residues in a recombinant serine hydroxymethyltransferase. , 1999, Archives of biochemistry and biophysics.
[29] S. Ohtani. Rate of aspartic acid racemization in bone. , 1998, The American journal of forensic medicine and pathology.
[30] W. D. de Jong,et al. Site‐specific racemization in aging α‐crystallin , 1990 .
[31] S. Capasso,et al. Kinetic and thermodynamic control of the relative yield of the deamidation of asparagine and isomerization of aspartic acid residues. , 2000, The journal of peptide research : official journal of the American Peptide Society.
[32] J. Bada. [9] In Vivo racemization in mammalian proteins , 1984 .
[33] C. Fan,et al. Age estimation using a modified HPLC determination of ratio of aspartic acid in dentin. , 1995, Forensic science international.
[34] N. Robinson,et al. Molecular clocks. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[35] R. Schneiderman,et al. Aggrecan turnover in human articular cartilage: use of aspartic acid racemization as a marker of molecular age. , 1998, Archives of biochemistry and biophysics.
[36] D. Aswad,et al. Isoaspartate in peptides and proteins: formation, significance, and analysis. , 2000, Journal of pharmaceutical and biomedical analysis.
[37] V. Zappia,et al. Protein damage and methylation-mediated repair in the erythrocyte. , 1995, The Biochemical journal.
[38] K. Kvenvolden,et al. Evidence for Extraterrestrial Amino-acids and Hydrocarbons in the Murchison Meteorite , 1970, Nature.
[39] S. Ritz,et al. Aspartic acid racemization in intervertebral discs as an aid to postmortem estimation of age at death. , 1993, Journal of forensic sciences.
[40] Hendrik Zipse,et al. ACCELERATED RACEMIZATION OF ASPARTIC ACID AND ASPARAGINE RESIDUES VIA SUCCINIMIDE INTERMEDIATES : AN AB INITIO THEORETICAL EXPLORATION OF MECHANISM , 1996 .
[41] K. Harada,et al. D-aspartic acid in aged mouse skin and lens. , 1987, Journal of radiation research.
[42] J. McKerrow,et al. Non-enzymatic, post-translational, amino acid modifications in ageing. A brief review , 1979, Mechanisms of Ageing and Development.
[43] S. Capasso,et al. Effect of the three-dimensional structure on the deamidation reaction of ribonuclease A. , 1999, The journal of peptide research : official journal of the American Peptide Society.
[44] D. Urry,et al. Nonenzymatic deamidation of asparaginyl and glutaminyl residues in proteins. , 1991, Critical reviews in biochemistry and molecular biology.
[45] S. Clarke,et al. Does the chemical instability of aspartyl and asparaginyl residues in proteins contribute to erythrocyte aging? The role of protein carboxyl methylation reactions. , 1988, Blood cells.
[46] G. Goodfriend. Perspectives in amino acid and protein geochemistry , 2000 .
[47] A. Neuberger. Stereochemistry of amino acids. , 1948, Advances in protein chemistry.
[48] C. Fledelius,et al. Collagen fragments in urine derived from bone resorption are highly racemized and isomerized: a biological clock of protein aging with clinical potential. , 2000, The Biochemical journal.
[49] R. Schowen,et al. Secondary structure and protein deamidation. , 1999, Journal of pharmaceutical sciences.
[50] P Zioupos,et al. The role of collagen in the declining mechanical properties of aging human cortical bone. , 1999, Journal of biomedical materials research.
[51] S. Clarke. Propensity for spontaneous succinimide formation from aspartyl and asparaginyl residues in cellular proteins. , 2009, International journal of peptide and protein research.
[52] T. Shirasawa,et al. Isoaspartate formation and neurodegeneration in Alzheimer's disease. , 2000, Archives of biochemistry and biophysics.
[53] M. Takita,et al. Specific Racemization and Isomerization of the Aspartyl Residue of αA-Crystallin Due to UV-B Irradiation ☆ , 1997 .
[54] S. Ohtani. Estimation of Age from Dentin by Using the Racemization Reaction of Aspartic Acid , 1995, The American journal of forensic medicine and pathology.
[55] D. Aswad,et al. Identification and Topography of Substrates for Protein Carboxyl Methyltransferase in Synaptic Membrane and Myelin‐Enriched Fractions of Bovine and Rat Brain , 1985, Journal of neurochemistry.
[56] J. Bada,et al. Racemization reaction of aspartic Acid and its use in dating fossil bones. , 1973, Proceedings of the National Academy of Sciences of the United States of America.
[57] N. Ueta,et al. Fraction dependent variation of aspartic acid racemization age of fossil bone , 1980, Nature.
[58] S Capasso. Estimation of the deamidation rate of asparagine side chains. , 2000, The journal of peptide research : official journal of the American Peptide Society.
[59] A. Kossiakoff,et al. Tertiary structure is a principal determinant to protein deamidation. , 1988, Science.
[60] R. Shapira,et al. Differential racemization of aspartate and serine in human myelin basic protein. , 1987, Biochemical and biophysical research communications.
[61] Stephen G. Young,et al. Limited Accumulation of Damaged Proteins inl-Isoaspartyl (d-Aspartyl)O-Methyltransferase-deficient Mice* , 2001, The Journal of Biological Chemistry.
[62] W. Kuhn. Katalytische Erzeugung optisch aktiver Stoffe und chemische Notwendigkeit eines einseitigen Ablaufs biochemischer Vorgänge , 1936 .
[63] S. Clarke,et al. Do damaged proteins accumulate in Caenorhabditis elegans L-isoaspartate methyltransferase (pcm-1) deletion mutants? , 1999, Archives of biochemistry and biophysics.
[64] S. Ohtani,et al. Evaluation of aspartic acid racemization ratios in the human femur for age estimation. , 1998, Journal of forensic sciences.
[65] R. Kagan,et al. Targeted gene disruption of the Caenorhabditis elegans L-isoaspartyl protein repair methyltransferase impairs survival of dauer stage nematodes. , 1997, Archives of biochemistry and biophysics.
[66] V. Schirch,et al. Role of peptide conformation in the rate and mechanism of deamidation of asparaginyl residues. , 1988, Biochemistry.
[67] R. Kagan,et al. Molecular phylogenetics of a protein repair methyltransferase. , 1997, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[68] K N Houk,et al. Neighboring side chain effects on asparaginyl and aspartyl degradation: an ab initio study of the relationship between peptide conformation and backbone NH acidity. , 2001, Journal of the American Chemical Society.
[69] M. Benson,et al. Induction of beta-sheet structure in amyloidogenic peptides by neutralization of aspartate: a model for amyloid nucleation. , 1999, Journal of molecular biology.
[70] J. Bada,et al. Aspartic acid racemisation in dentine as a measure of ageing , 1976, Nature.
[71] H. Mantsch,et al. Synthetic post-translationally modified human Aβ peptide exhibits a markedly increased tendency to form β-pleated sheets in vitro , 1994 .
[72] L. Mazzarella,et al. Deamidation via cyclic imide of asparaginyl peptides: dependence on salts, buffers and organic solvents. , 1991, Peptide research.
[73] S. Ritz-Timme. Lebensaltersbestimmung aufgrund des Razemisierungsgrades von Asparaginsäure : Grundlagen, Methodik, Möglichkeiten, Grenzen, Anwendungsbereiche , 1999 .
[74] S. Clarke,et al. Spontaneous degradation of polypeptides at aspartyl and asparaginyl residues: Effects of the solvent dielectric , 1993, Protein science : a publication of the Protein Society.
[75] L. Vitagliano,et al. Deamidation in proteins: the crystal structure of bovine pancreatic ribonuclease with an isoaspartyl residue at position 67. , 1996, Journal of molecular biology.
[76] J. Powell,et al. On the accumulation of D-aspartate in elastin and other proteins of the ageing aorta. , 1992, Atherosclerosis.
[77] J L Bada,et al. Considerations on the role of aspartic acid racemization in the aging process. , 1977, Gerontology.
[78] S. Clarke,et al. Recognition of D-aspartyl residues in polypeptides by the erythrocyte L-isoaspartyl/D-aspartyl protein methyltransferase. Implications for the repair hypothesis. , 1992, The Journal of biological chemistry.
[79] D. Aswad,et al. Molecular aging of tubulin: accumulation of isoaspartyl sites in vitro and in vivo. , 1996, Biochemistry.
[80] S. Robins,et al. Isoaspartyl bond formation within N-terminal sequences of collagen type I: implications for their use as markers of collagen degradation. , 1999, Clinical science.
[81] Paul J Thornalley. THE CLINICAL SIGNIFICANCE OF GLYCATION , 1999 .
[82] S. Yen,et al. Detection of d-aspartate in tau proteins associated with Alzheimer paired helical filaments , 1995, Brain Research.
[83] J. Bada,et al. Aspartic acid racemisation in the human lens during ageing and in cataract formation , 1977, Nature.
[84] S. Clarke,et al. Polymorphic forms of the protein L-isoaspartate (D-aspartate) O-methyltransferase involved in the repair of age-damaged proteins , 1999, Journal of Human Genetics.
[85] N Fujii,et al. Formation of four isomers at the asp-151 residue of aged human alphaA-crystallin by natural aging. , 1999, Biochemical and biophysical research communications.
[86] W. Kuhn. Possible relation between optical activity and aging. , 2006, Advances in enzymology and related subjects of biochemistry.
[87] G. Fisher,et al. D-aspartic acid in purified myelin and myelin basic protein. , 1986, Biochemical and Biophysical Research Communications - BBRC.
[88] S. Clarke,et al. Age-dependent accumulation of protein residues which can be hydrolyzed to D-aspartic acid in human erythrocytes. , 1986, The Journal of biological chemistry.
[89] H. Kawano,et al. Deficiency in Protein l-Isoaspartyl Methyltransferase Results in a Fatal Progressive Epilepsy , 1998, The Journal of Neuroscience.
[90] T. Shirasawa,et al. Racemization of Asp23 residue affects the aggregation properties of Alzheimer amyloid beta protein analogues. , 1994, The Journal of biological chemistry.
[91] K. Wilkinson,et al. Racemization of Individual Aspartate Residues in Human Myelin Basic Protein , 1988, Journal of neurochemistry.
[92] S. Clarke,et al. The l-Isoaspartyl Protein Repair Methyltransferase Enhances Survival of Aging Escherichia coli Subjected to Secondary Environmental Stresses , 1998, Journal of bacteriology.
[93] J. George,et al. Age and growth estimates of bowhead whales (Balaena mysticetus) via aspartic acid racemization , 1999 .
[94] G. Fisher,et al. Altered aspartate in Alzheimer neurofibrillary tangles , 1992, Neurochemical Research.
[95] M. Takita,et al. The mechanisms of simultaneous stereoinversion, racemization, and isomerization at specific aspartyl residues of aged lens proteins , 1999, Mechanisms of Ageing and Development.
[96] Y. Satow,et al. Succinimide and isoaspartate residues in the crystal structures of hen egg-white lysozyme complexed with tri-N-acetylchitotriose. , 1998, Journal of molecular biology.
[97] M. Kuwabara,et al. Deamidation of human erythrocyte protein 4.1: possible role in aging. , 1992, Blood.
[98] A. B. Robinson,et al. Controlled deamidation of peptides and proteins: an experimental hazard and a possible biological timer. , 1970, Proceedings of the National Academy of Sciences of the United States of America.
[99] S. Clarke,et al. Conversion of isoaspartyl peptides to normal peptides: implications for the cellular repair of damaged proteins. , 1987, Proceedings of the National Academy of Sciences of the United States of America.
[100] S. Clarke,et al. Deamidation, isomerization, and racemization at asparaginyl and aspartyl residues in peptides. Succinimide-linked reactions that contribute to protein degradation. , 1987, The Journal of biological chemistry.
[101] W. Lehmann,et al. The amino terminus of PKA catalytic subunit—A site for introduction of posttranslation heterogeneities by deamidation: D‐Asp2 and D‐isoAsp2 containing isozymes , 2000, Protein science : a publication of the Protein Society.
[102] J A Pierce,et al. Marked longevity of human lung parenchymal elastic fibers deduced from prevalence of D-aspartate and nuclear weapons-related radiocarbon. , 1991, The Journal of clinical investigation.
[103] L. Mazzarella,et al. Spontaneous cyclization of the aspartic acid side chain to the succinimide derivative , 1992 .
[104] S. Clarke,et al. D-aspartate content of erythrocyte membrane proteins is decreased in uremia: implications for the repair of damaged proteins. , 1997, Journal of the American Society of Nephrology : JASN.
[105] G. Fisher,et al. Accumulation of D-aspartic acid with age in the human brain. , 1983, Science.
[106] P. Christen,et al. Spontaneous deamidation and isomerization of Asn108 in prion peptide 106-126 and in full-length prion protein. , 1999, Biochemical and biophysical research communications.
[107] S. Young,et al. Deficiency of a protein-repair enzyme results in the accumulation of altered proteins, retardation of growth, and fatal seizures in mice. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[108] R. Rosenberger. Senescence and the accumulation of abnormal proteins. , 1991, Mutation research.
[109] Protein aging hypothesis of Alzheimer disease , 2000 .
[110] B. Clark,et al. Protein Synthesis, Posttranslational Modifications, and Aging a , 1992, Annals of the New York Academy of Sciences.