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不同长度新型配体对清道夫受体介导的内吞作用的调控

Control of scavenger receptor-mediated endocytosis by novel ligands of different length.

作者信息

Guaderrama-Díaz Margarita, Solís Carlos F, Velasco-Loyden Gabriela, Laclette Juan P, Mas-Oliva Jaime

机构信息

Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Mexico, DF.

出版信息

Mol Cell Biochem. 2005 Mar;271(1-2):123-32. doi: 10.1007/s11010-005-5756-3.

Abstract

The scavenger receptor recognized as a multiligand family of receptors falls in the group that is internalised through endocytosis. In this report we used several recombinant fragments of the tapeworm protein paramyosin, known to form filamentous dimers that bind collagenous structures as ligands of different length for the class A type I scavenger receptor (SR-AI). While native CHO cells are unresponsive to any of the recombinant fragments, it is shown that CHO cells transfected with this receptor efficiently internalise recombinant fragments that correspond to two thirds of the full-length paramyosin. In contrast, recombinant products corresponding to one-third of the full-length paramyiosin are not internalised. It is also shown that important molecules in the organization of the coated pit, are enriched when the two-thirds long paramyosin fragments were bound and internalised through the SR-AI. Moreover, internalisation of these fragments trigger a classical apoptotic pathway shown by the presence of TUNEL positive cells and the appearance of apoptotic bodies. We report paramyosin as a new ligand for the scavenger receptor and provide evidence supporting the notion that these receptors upon the formation of arrays with length-specific molecules, not only trigger endocytosis but also seem to regulate the synthesis of molecules involved in the organization of coated pits.

摘要

清道夫受体被认为是一个多配体受体家族,属于通过内吞作用内化的受体类别。在本报告中,我们使用了绦虫副肌球蛋白的几个重组片段,已知这些片段能形成丝状二聚体,作为不同长度的配体与A类I型清道夫受体(SR-AI)结合胶原结构。虽然天然CHO细胞对任何重组片段均无反应,但研究表明,转染了该受体的CHO细胞能有效地内化对应于全长副肌球蛋白三分之二的重组片段。相比之下,对应于全长副肌球蛋白三分之一的重组产物则未被内化。研究还表明,当三分之二长度的副肌球蛋白片段通过SR-AI结合并内化时,包被小窝组织中的重要分子会富集。此外,这些片段的内化会触发经典的凋亡途径,表现为TUNEL阳性细胞的出现和凋亡小体的形成。我们报告副肌球蛋白是清道夫受体的一种新配体,并提供证据支持这样的观点,即这些受体在与长度特异性分子形成阵列时,不仅会触发内吞作用,而且似乎还能调节参与包被小窝组织的分子的合成。

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