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首页> 外文期刊>Molecular biology of the cell >Alteration of clathrin light chain expression by transfection and gene disruption.
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Alteration of clathrin light chain expression by transfection and gene disruption.

机译:通过转染和基因破坏改变网格蛋白轻链表达。

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The light chain subunits of clathrin, LCa and LCb, have been implicated in the regulation of coated vesicle disassembly and other aspects of clathrin cycling within the cell. The potential for functional specialization of each light chain is suggested by tissue-specific variation in the relative amounts of the two light chains and by conservation of differences between LCa and LCb sequences during evolution. To investigate whether there might be exclusive roles for LCa and LCb in clathrin function, the expression of LCa was manipulated in C1R lymphoid cells and PC12 pheochromocytoma cells by transfection with light chain cDNA. These two cell lines differ in their ratios of LCa to LCb, expressing 86 and 25% LCa, respectively. After transfection with exogenous human LCa cDNA, a PC12 cell derivative was produced that completely lost the ability to manufacture LCa. Loss of LCa expression was found to be because of gene disruption and consequent lack of mRNA transcription. In C1R cells, the normally high level of LCa expression was reduced to 25% by overexpression of transfected LCb cDNA under the control of an inducible promoter. The C1R transfectants with reduced levels of LCa and the LCa-negative PC12 transfectant grow normally and show no change in clathrin distribution, clathrin assembly level, or impairment of endocytosis or secretion compared with wild-type cells and cells transfected with vectors lacking light chain cDNA. However, subtle alterations in the hsc70-mediated clathrin uncoating process were observed for vesicles derived from the LCa-negative cells, reflecting the preferential activity of LCa in stimulating the in vitro uncoating reaction.
机译:网格蛋白的轻链亚基,LCa和LCb,与包被的囊泡的分解以及网格蛋白在细胞内循环的其他方面有关。通过两条轻链的相对数量的组织特异性变化以及进化过程中保守的LCa和LCb序列之间的差异,暗示了每个轻链功能专业化的潜力。为了研究LCa和LCb在网格蛋白功能中是否可能具有排他性作用,通过轻链cDNA转染来控制LCa在C1R淋巴样细胞和PC12嗜铬细胞瘤细胞中的表达。这两个细胞系的LCa与LCb比率不同,分别表示86%和25%的LCa。用外源人LCa cDNA转染后,产生了PC12细胞衍生物,该衍生物完全失去了制造LCa的能力。发现LCa表达的丧失是由于基因破坏和因此缺乏mRNA转录。在C1R细胞中,在诱导型启动子的控制下,通过转染的LCb cDNA的过表达,正常水平的LCa表达降低到25%。与野生型细胞和转染了缺乏轻链cDNA的载体的细胞相比,LCa水平降低的C1R转染子和LCa阴性PC12转染子正常生长,网格蛋白分布,网格蛋白装配水平或内吞作用或分泌功能均无变化。 。然而,在hsc70介导的网格蛋白脱膜过程中,对源自LCa阴性细胞的囊泡观察到微妙的变化,反映出LCa在刺激体外脱膜反应中的优先活性。

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