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111.
Detection of a cystic fibrosis modifier locus for meconium ileus on human chromosome 19q13. 总被引:14,自引:0,他引:14
112.
E A Rogaeva S Premkumar J Grubber L Serneels W K Scott T Kawarai Y Song D L Hill S M Abou-Donia E R Martin J J Vance G Yu A Orlacchio Y Pei M Nishimura A Supala B Roberge A M Saunders A D Roses D Schmechel A Crane-Gatherum S Sorbi A Bruni G W Small P M Conneally J L Haines F Van Leuven P H St George-Hyslop L A Farrer M A Pericak-Vance 《Nature genetics》1999,22(1):19-22
113.
The p66shc adaptor protein controls oxidative stress response and life span in mammals 总被引:44,自引:0,他引:44
Migliaccio E Giorgio M Mele S Pelicci G Reboldi P Pandolfi PP Lanfrancone L Pelicci PG 《Nature》1999,402(6759):309-313
Gene mutations in invertebrates have been identified that extend life span and enhance resistance to environmental stresses such as ultraviolet light or reactive oxygen species. In mammals, the mechanisms that regulate stress response are poorly understood and no genes are known to increase individual life span. Here we report that targeted mutation of the mouse p66shc gene induces stress resistance and prolongs life span. p66shc is a splice variant of p52shc/p46shc (ref. 2), a cytoplasmic signal transducer involved in the transmission of mitogenic signals from activated receptors to Ras. We show that: (1) p66shc is serine phosphorylated upon treatment with hydrogen peroxide (H2O2) or irradiation with ultraviolet light; (2) ablation of p66shc enhances cellular resistance to apoptosis induced by H2O2 or ultraviolet light; (3) a serine-phosphorylation defective mutant of p66shc cannot restore the normal stress response in p66shc-/- cells; (4) the p53 and p21 stress response is impaired in p66shc-/- cells; (5) p66shc-/- mice have increased resistance to paraquat and a 30% increase in life span. We propose that p66shc is part of a signal transduction pathway that regulates stress apoptotic responses and life span in mammals. 相似文献
114.
115.
Minimum information about a microarray experiment (MIAME)-toward standards for microarray data. 总被引:36,自引:0,他引:36
A Brazma P Hingamp J Quackenbush G Sherlock P Spellman C Stoeckert J Aach W Ansorge C A Ball H C Causton T Gaasterland P Glenisson F C Holstege I F Kim V Markowitz J C Matese H Parkinson A Robinson U Sarkans S Schulze-Kremer J Stewart R Taylor J Vilo M Vingron 《Nature genetics》2001,29(4):365-371
Microarray analysis has become a widely used tool for the generation of gene expression data on a genomic scale. Although many significant results have been derived from microarray studies, one limitation has been the lack of standards for presenting and exchanging such data. Here we present a proposal, the Minimum Information About a Microarray Experiment (MIAME), that describes the minimum information required to ensure that microarray data can be easily interpreted and that results derived from its analysis can be independently verified. The ultimate goal of this work is to establish a standard for recording and reporting microarray-based gene expression data, which will in turn facilitate the establishment of databases and public repositories and enable the development of data analysis tools. With respect to MIAME, we concentrate on defining the content and structure of the necessary information rather than the technical format for capturing it. 相似文献
116.
117.
Chiang C Jacobsen JC Ernst C Hanscom C Heilbut A Blumenthal I Mills RE Kirby A Lindgren AM Rudiger SR McLaughlan CJ Bawden CS Reid SJ Faull RL Snell RG Hall IM Shen Y Ohsumi TK Borowsky ML Daly MJ Lee C Morton CC MacDonald ME Gusella JF Talkowski ME 《Nature genetics》2012,44(4):390-7, S1
We defined the genetic landscape of balanced chromosomal rearrangements at nucleotide resolution by sequencing 141 breakpoints from cytogenetically interpreted translocations and inversions. We confirm that the recently described phenomenon of 'chromothripsis' (massive chromosomal shattering and reorganization) is not unique to cancer cells but also occurs in the germline, where it can resolve to a relatively balanced state with frequent inversions. We detected a high incidence of complex rearrangements (19.2%) and substantially less reliance on microhomology (31%) than previously observed in benign copy-number variants (CNVs). We compared these results to experimentally generated DNA breakage-repair by sequencing seven transgenic animals, revealing extensive rearrangement of the transgene and host genome with similar complexity to human germline alterations. Inversion was the most common rearrangement, suggesting that a combined mechanism involving template switching and non-homologous repair mediates the formation of balanced complex rearrangements that are viable, stably replicated and transmitted unaltered to subsequent generations. 相似文献
118.
119.
The role of peroxisomes in aging 总被引:2,自引:0,他引:2
120.
G. M. Rossolini S. Schippa M. L. Riccio F. Berlutti L. E. Macaskie M. C. Thaller 《Cellular and molecular life sciences : CMLS》1998,54(8):833-850
Bacterial nonspecific acid phosphohydrolases (NSAPs) are secreted enzymes, produced as soluble periplasmic proteins or as
membrane-bound lipoproteins, that are usually able to dephosphorylate a broad array of structurally unrelated substrates and
exhibit optimal catalytic activity at acidic to neutral pH values. Bacterial NSAPs are monomeric or oligomeric proteins containing
polypeptide components with an M
r of 25 – 30 kDa. On the basis of amino acid sequence relatedness, three different molecular families of NSAPs can be distinguished,
indicated as molecular class A, B and C, respectively. Members of each class share some common biophysical and functional
features, but may also exhibit functional differences. NSAPs have been detected in several microbial taxa, and enzymes of
different classes can be produced by the same bacterial species. Structural and phyletic relationships exist among the various
bacterial NSAPs and some other bacterial and eucaryotic phosphohydrolases. Current knowledge on bacterial NSAPs is reviewed,
together with analytical tools that may be useful for their characterization. An overview is also presented concerning the
use of bacterial NSAPs in biotechnology.
Received 21 November 1997; received after revision 10 March 1998; accepted 10 March 1998 相似文献