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中心粒卫星是与人类纤毛病相关的蛋白质的组装点,包括口腔面指综合征 1。

Centriolar satellites are assembly points for proteins implicated in human ciliopathies, including oral-facial-digital syndrome 1.

机构信息

Department of Biochemistry, University of Leicester, Lancaster Road, Leicester LE1 9HN, UK.

出版信息

J Cell Sci. 2011 Feb 15;124(Pt 4):600-12. doi: 10.1242/jcs.077156. Epub 2011 Jan 25.

DOI:10.1242/jcs.077156
PMID:21266464
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3031371/
Abstract

Ciliopathies are caused by mutations in genes encoding proteins required for cilia organization or function. We show through colocalization with PCM-1, that OFD1 (the product of the gene mutated in oral-facial-digital syndrome 1) as well as BBS4 and CEP290 (proteins encoded by other ciliopathy genes) are primarily components of centriolar satellites, the particles surrounding centrosomes and basal bodies. RNA interference experiments reveal that satellite integrity is mutually dependent upon each of these proteins. Upon satellite dispersal, through mitosis or forced microtubule depolymerization, OFD1 and CEP290 remain centrosomal, whereas BBS4 and PCM-1 do not. OFD1 interacts via its fifth coiled-coil motif with the N-terminal coiled-coil domain of PCM-1, which itself interacts via its C-terminal non-coiled-coil region with BBS4. OFD1 localization to satellites requires its N-terminal region, encompassing the LisH motif, whereas expression of OFD1 C-terminal constructs causes PCM-1 and CEP290 mislocalization. Moreover, in embryonic zebrafish, OFD1 and BBS4 functionally synergize, determining morphogenesis. Our observation that satellites are assembly points for several mutually dependent ciliopathy proteins provides a further possible explanation as to why the clinical spectrum of OFD1, Bardet-Biedl and Joubert syndromes overlap. Furthermore, definition of how OFD1 and PCM-1 interact helps explain why different OFD1 mutations lead to clinically variable phenotypes.

摘要

纤毛病是由编码纤毛组织或功能所需蛋白的基因突变引起的。我们通过与 PCM-1 的共定位显示,OFD1(口腔面指综合征 1 中突变基因的产物)以及 BBS4 和 CEP290(其他纤毛病基因编码的蛋白)主要是中心粒卫星的组成部分,中心粒卫星是围绕着中心体和基底体的颗粒。RNA 干扰实验表明,卫星的完整性相互依赖于这些蛋白质中的每一个。在卫星分散后,通过有丝分裂或强迫微管解聚,OFD1 和 CEP290 仍然位于中心体,而 BBS4 和 PCM-1 则不位于中心体。OFD1 通过其第五个卷曲螺旋基序与 PCM-1 的 N 端卷曲螺旋结构域相互作用,PCM-1 本身通过其 C 端非卷曲螺旋区域与 BBS4 相互作用。OFD1 定位于卫星需要其 N 端区域,包括 LisH 基序,而表达 OFD1 的 C 端结构域会导致 PCM-1 和 CEP290 的定位错误。此外,在胚胎斑马鱼中,OFD1 和 BBS4 具有功能协同作用,决定了形态发生。我们的观察表明,卫星是几种相互依赖的纤毛病蛋白的组装点,这为 OFD1、Bardet-Biedl 和 Joubert 综合征的临床谱重叠提供了另一种可能的解释。此外,定义 OFD1 和 PCM-1 如何相互作用有助于解释为什么不同的 OFD1 突变导致临床表型不同。

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2
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本文引用的文献

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Candidate exome capture identifies mutation of SDCCAG8 as the cause of a retinal-renal ciliopathy.候选外显子组捕获确定 SDCCAG8 突变是视网膜-肾纤毛病的原因。
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Ofd1, a human disease gene, regulates the length and distal structure of centrioles.OFD1 是一个人类疾病基因,调节中心体的长度和远端结构。
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Renal insufficiency, a frequent complication with age in oral-facial-digital syndrome type I.肾功能不全是 I 型口腔颌面指(趾)综合征的常见老年并发症。
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OFD1 is mutated in X-linked Joubert syndrome and interacts with LCA5-encoded lebercilin.OFD1在X连锁Joubert综合征中发生突变,并与LCA5编码的lebercilin相互作用。
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