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261.
J. Rosmus Olga Vančíková J. Marc Z. Deyl 《Cellular and molecular life sciences : CMLS》1967,23(11):898-898
Zusammenfassung Die Reaktion zwischen Kollagen und FeIII wurde studiert. Es zeigte sich, dass das Eisen an die Sequenzen des Typs Ala-Asp-Gly gebunden wird. Weiter wurde gefunden, dass 1 mol Ratten-Tropokollagen 1 mol Cystein als Sequenz Cys-Ala-Asp-Gly enthält.
S. Bump, Z. Deyl andJ. Rosmus, Communication IV, Experientia23, 518 (1967). 相似文献
S. Bump, Z. Deyl andJ. Rosmus, Communication IV, Experientia23, 518 (1967). 相似文献
262.
263.
Sladek R Rocheleau G Rung J Dina C Shen L Serre D Boutin P Vincent D Belisle A Hadjadj S Balkau B Heude B Charpentier G Hudson TJ Montpetit A Pshezhetsky AV Prentki M Posner BI Balding DJ Meyre D Polychronakos C Froguel P 《Nature》2007,445(7130):881-885
Type 2 diabetes mellitus results from the interaction of environmental factors with a combination of genetic variants, most of which were hitherto unknown. A systematic search for these variants was recently made possible by the development of high-density arrays that permit the genotyping of hundreds of thousands of polymorphisms. We tested 392,935 single-nucleotide polymorphisms in a French case-control cohort. Markers with the most significant difference in genotype frequencies between cases of type 2 diabetes and controls were fast-tracked for testing in a second cohort. This identified four loci containing variants that confer type 2 diabetes risk, in addition to confirming the known association with the TCF7L2 gene. These loci include a non-synonymous polymorphism in the zinc transporter SLC30A8, which is expressed exclusively in insulin-producing beta-cells, and two linkage disequilibrium blocks that contain genes potentially involved in beta-cell development or function (IDE-KIF11-HHEX and EXT2-ALX4). These associations explain a substantial portion of disease risk and constitute proof of principle for the genome-wide approach to the elucidation of complex genetic traits. 相似文献
264.
Raghoebarsing AA Pol A van de Pas-Schoonen KT Smolders AJ Ettwig KF Rijpstra WI Schouten S Damsté JS Op den Camp HJ Jetten MS Strous M 《Nature》2006,440(7086):918-921
Modern agriculture has accelerated biological methane and nitrogen cycling on a global scale. Freshwater sediments often receive increased downward fluxes of nitrate from agricultural runoff and upward fluxes of methane generated by anaerobic decomposition. In theory, prokaryotes should be capable of using nitrate to oxidize methane anaerobically, but such organisms have neither been observed in nature nor isolated in the laboratory. Microbial oxidation of methane is thus believed to proceed only with oxygen or sulphate. Here we show that the direct, anaerobic oxidation of methane coupled to denitrification of nitrate is possible. A microbial consortium, enriched from anoxic sediments, oxidized methane to carbon dioxide coupled to denitrification in the complete absence of oxygen. This consortium consisted of two microorganisms, a bacterium representing a phylum without any cultured species and an archaeon distantly related to marine methanotrophic Archaea. The detection of relatives of these prokaryotes in different freshwater ecosystems worldwide indicates that the reaction presented here may make a substantial contribution to biological methane and nitrogen cycles. 相似文献