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脊椎动物早期发育过程中对COP I转运的不同需求。

Differential requirements for COPI transport during vertebrate early development.

作者信息

Coutinho Pedro, Parsons Michael J, Thomas Kevin A, Hirst Elizabeth M A, Saúde Leonor, Campos Isabel, Williams P Huw, Stemple Derek L

机构信息

Division of Developmental Biology, National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, United Kingdom.

出版信息

Dev Cell. 2004 Oct;7(4):547-58. doi: 10.1016/j.devcel.2004.07.020.

Abstract

The coatomer vesicular coat complex is essential for normal Golgi and secretory activities in eukaryotic cells. Through positional cloning of genes controlling zebrafish notochord development, we found that the sneezy, happy, and dopey loci encode the alpha, beta, and beta' subunits of the coatomer complex. Export from mutant endoplasmic reticulum is blocked, Golgi structure is disrupted, and mutant embryos eventually degenerate due to widespread apoptosis. The early embryonic phenotype, however, demonstrates that despite its "housekeeping" functions, coatomer activity is specifically and cell autonomously required for normal chordamesoderm differentiation, perinotochordal basement membrane formation, and melanophore pigmentation. Hence, differential requirements for coatomer activity among embryonic tissues lead to tissue-specific developmental defects. Moreover, we note that the mRNA encoding alpha coatomer is strikingly upregulated in notochord progenitors, and we present data suggesting that alpha coatomer transcription is tuned to activity- and cell type-specific secretory loads.

摘要

衣被蛋白小泡衣被复合体对于真核细胞中正常的高尔基体和分泌活动至关重要。通过对控制斑马鱼脊索发育的基因进行定位克隆,我们发现喷嚏、开心和糊涂基因座分别编码衣被蛋白复合体的α、β和β'亚基。突变型内质网的输出受阻,高尔基体结构被破坏,突变胚胎最终因广泛的细胞凋亡而退化。然而,早期胚胎表型表明,尽管衣被蛋白具有“看家”功能,但正常脊中胚层分化、脊索周围基底膜形成和黑素细胞色素沉着特别需要细胞自主的衣被蛋白活性。因此,胚胎组织对衣被蛋白活性的不同需求导致了组织特异性发育缺陷。此外,我们注意到编码α衣被蛋白的mRNA在脊索祖细胞中显著上调,并且我们提供的数据表明α衣被蛋白转录与活性和细胞类型特异性分泌负荷相协调。

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