首页> 外文OA文献 >Granule lattice protein 1 (Grl1p), an acidic, calcium-binding protein in Tetrahymena thermophila dense-core secretory granules, influences granule size, shape, content organization, and release but not protein sorting or condensation
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Granule lattice protein 1 (Grl1p), an acidic, calcium-binding protein in Tetrahymena thermophila dense-core secretory granules, influences granule size, shape, content organization, and release but not protein sorting or condensation

机译:嗜热四膜菌密核分泌颗粒中的一种酸性钙结合蛋白颗粒晶格蛋白1(Grl1p)影响颗粒的大小,形状,含量组织和释放,但不影响蛋白质的分选或浓缩

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摘要

The electron-dense cores of regulated secretory granules in the ciliate Tetrahymena thermophila are crystal lattices composed of multiple proteins. Granule synthesis involves a series of steps beginning with protein sorting, followed by the condensation and precise geometric assembly of the granule cargo. These steps may to various degrees be determined by the cargo proteins themselves. A prominent group of granule proteins, in ciliates as well as in vertebrate neuronal and endocrine cells, are acidic, heat-stable, and bind calcium. We focused on a protein with these characteristics named granule lattice protein 1 (Grl1p), which represents 16% of total granule contents, and we have now cloned the corresponding gene. Mutants in which the macronuclear copies of GRL1 have been disrupted continue to synthesize dense-core granules but are nonetheless defective in regulated protein secretion. To understand the nature of this defect, we characterized mutant and wild-type granules. In the absence of Grl1p, the sorting of the remaining granule proteins appears normal, and they condense to form a well-defined core. However, the condensed cores do not demonstrate a visible crystalline lattice, and are notably different from wild type in size and shape. The cellular secretion defect arises from failure of the aberrant granule cores to undergo rapid expansion and extrusion after exocytic fusion of the granule and plasma membranes. The results suggest that sorting, condensation, and precise granule assembly are distinct in their requirements for Grl1p.
机译:纤毛四膜虫嗜热的调节分泌颗粒的电子致密核是由多种蛋白质组成的晶格。颗粒合成涉及一系列步骤,从蛋白质分选开始,然后是颗粒货物的浓缩和精确几何组装。这些步骤可以在不同程度上由货物蛋白本身确定。在纤毛以及脊椎动物神经元和内分泌细胞中,一组突出的颗粒蛋白是酸性的,热稳定的并结合钙。我们专注于具有这些特征的蛋白质,称为颗粒晶格蛋白1(Grl1p),它代表总颗粒含量的16%,现在我们克隆了相应的基因。 GRL1的大核拷贝已被破坏的突变体继续合成致密颗粒,但在调节的蛋白质分泌上仍然存在缺陷。为了了解这种缺陷的性质,我们对突变体和野生型颗粒进行了表征。在没有Grl1p的情况下,剩余颗粒蛋白的分选似乎是正常的,它们凝结形成一个定义明确的核心。然而,稠密的核没有显示出可见的晶格,并且在大小和形状上与野生型显着不同。细胞分泌缺陷起因于颗粒和质膜的细胞外融合后,异常颗粒核心无法快速膨胀和挤出。结果表明,分选,浓缩和精确的颗粒组装对Grl1p的要求不同。

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  • 年度 1996
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