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排序方式: 共有124条查询结果,搜索用时 15 毫秒
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Hennies HC Kornak U Zhang H Egerer J Zhang X Seifert W Kühnisch J Budde B Nätebus M Brancati F Wilcox WR Müller D Kaplan PB Rajab A Zampino G Fodale V Dallapiccola B Newman W Metcalfe K Clayton-Smith J Tassabehji M Steinmann B Barr FA Nürnberg P Wieacker P Mundlos S 《Nature genetics》2008,40(12):1410-1412
Gerodermia osteodysplastica is an autosomal recessive disorder characterized by wrinkly skin and osteoporosis. Here we demonstrate that gerodermia osteodysplastica is caused by loss-of-function mutations in SCYL1BP1, which is highly expressed in skin and osteoblasts. The protein localizes to the Golgi apparatus and interacts with Rab6, identifying SCYL1BP1 as a golgin. These results associate abnormalities of the secretory pathway with age-related changes in connective tissues. 相似文献
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Toxicity of open air to a variety of microorganisms 总被引:2,自引:0,他引:2
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R.C. May 《Cellular and molecular life sciences : CMLS》2001,58(11):1607-1626
In recent years the Arp2/3 complex has emerged as a central regulator of actin dynamics, assembling and cross-linking actin
filaments to produce a diverse array of cellular structures. Here I discuss our current state of knowledge about this actin-remodelling
machine. The predicted structure of the Arp2/3 complex can be directly correlated with its ability to nucleate, cap and cross-link
actin filaments. A growing family of Arp2/3 complex activators such as the WASP family, type I myosins, and the newly identified
activators cortactin and Abp1p tightly regulate this activity within the cell. Localised activation of the Arp2/3 complex
produces structures such as lamellipodia or actin patches via a process termed dendritic nucleation. Furthermore, several
pathogenic microorganisms have evolved strategies to 'hijack' the Arp2/3 complex to their own advantage. Finally, I discuss
some of the questions which remain unanswered about this fascinating complex.
Received 2 April 2001; received after revision 15 May 2001; accepted 18 May 2001 相似文献
116.
Trefoil factors 总被引:7,自引:0,他引:7
The present review will include the mammalian trefoil factors, TFF1, TFF2 and TFF3. It will summarise the amino acid sequences from different species, their posttranslational modifications and their structures determined by X-ray analysis and nuclear magnetic resonance studies. Trefoil factors all have a well-defined, structurally conserved trefoil domain. The trefoil domain consists of 42 or 43 amino acid residues and contains 6 cysteine residues that form disulphide bonds in a 1-5, 2-4 and 3-6 configuration. By the establishment of an additional intra-molecular disulphide bond at the C-terminal end, TFF1 and TFF3 form homodimers or heterodimers. This dimer formation of TFF1 and TFF3 will be discussed, and the possible implications for biological activity will be reviewed. The physicochemical characteristics including protease stability of trefoil factors will be summarised. The biological implications of different molecular forms of trefoil factors and their interaction with mucins will be discussed together with other functional insights. 相似文献
117.
Crossover between the human sex chromosomes during male meiosis is restricted to the terminal pseudoautosomal pairing regions. An obligatory exchange occurs in PAR1, an Xp/Yp pseudoautosomal region of 2.6 Mb, which creates a male-specific recombination 'hot domain' with a recombination rate that is about 20 times higher than the genome average. Low-resolution analysis of PAR1 suggests that crossovers are distributed fairly randomly. By contrast, linkage disequilibrium (LD) and sperm crossover analyses indicate that crossovers in autosomal regions tend to cluster into 'hot spots' of 1-2 kb that lie between islands of disequilibrium of tens to hundreds of kilobases. To determine whether at high resolution this autosomal pattern also applies to PAR1, we have examined linkage disequilibrium over an interval of 43 kb around the gene SHOX. Here we show that in northern European populations, disequilibrium decays rapidly with physical distance, which is consistent with this interval of PAR1 being recombinationally active in male meiosis. Analysis of a subregion of 9.9 kb in sperm shows, however, that crossovers are not distributed randomly, but instead cluster into an intense recombination hot spot that is very similar in morphology to autosomal hot spots. Thus, PAR1 crossover activity may be influenced by male-specific hot spots that are highly suitable for characterization by sperm DNA analysis. 相似文献
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Lippman Z Gendrel AV Black M Vaughn MW Dedhia N McCombie WR Lavine K Mittal V May B Kasschau KD Carrington JC Doerge RW Colot V Martienssen R 《Nature》2004,430(6998):471-476
Heterochromatin has been defined as deeply staining chromosomal material that remains condensed in interphase, whereas euchromatin undergoes de-condensation. Heterochromatin is found near centromeres and telomeres, but interstitial sites of heterochromatin (knobs) are common in plant genomes and were first described in maize. These regions are repetitive and late-replicating. In Drosophila, heterochromatin influences gene expression, a heterochromatin phenomenon called position effect variegation. Similarities between position effect variegation in Drosophila and gene silencing in maize mediated by "controlling elements" (that is, transposable elements) led in part to the proposal that heterochromatin is composed of transposable elements, and that such elements scattered throughout the genome might regulate development. Using microarray analysis, we show that heterochromatin in Arabidopsis is determined by transposable elements and related tandem repeats, under the control of the chromatin remodelling ATPase DDM1 (Decrease in DNA Methylation 1). Small interfering RNAs (siRNAs) correspond to these sequences, suggesting a role in guiding DDM1. We also show that transposable elements can regulate genes epigenetically, but only when inserted within or very close to them. This probably accounts for the regulation by DDM1 and the DNA methyltransferase MET1 of the euchromatic, imprinted gene FWA, as its promoter is provided by transposable-element-derived tandem repeats that are associated with siRNAs. 相似文献
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