极化和非极化细胞的分子分选:常见问题,常见解决方案。

I Mellman, E Yamamoto, J A Whitney, M Kim, W Hunziker, K Matter
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引用次数: 55

摘要

我们一直感兴趣的是确定上皮细胞如何产生和维持其膜蛋白的特征性极化分布。迄今为止,我们的努力强烈表明,MDCK细胞中的极化运输可能是由于一组离散的靶向决定因素,这些决定因素通常在膜蛋白的细胞质结构域中发现。令人惊讶的是,这些决定因素分布广泛,并不是特定于极化细胞中表达的蛋白质。它们似乎也在控制生物合成和内吞(或胞吞)途径的极化运输中起作用。基底外侧转运的信号已经被表征,就像质膜受体在网格蛋白包覆的凹坑中积累时使用的细胞质域信号一样,它们通常涉及一个关键的酪氨酸残基。虽然基底边和包覆坑的信号也可能是共线的,但它们并不完全相同。基侧和根尖运输决定因素也按等级排列。尽管单个蛋白可能包含一个或多个指定基底外侧运输的信号,但这些信号的失活似乎揭示了一个指导有效顶端运输的决定因素。考虑到负责极化转运的序列决定因子并不局限于上皮细胞,而且与所有细胞中普遍使用的决定因子相关,非极化细胞可能包含同源的负责从高尔基体到质膜的“组成性”转运的顶端和基底侧通路。两种同源通路的存在可能赋予了预分化细胞高度的可塑性,使它们能够在不需要上皮细胞特异性运输机制的合成的情况下,迅速开始呈现细胞外刺激的极化表型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular sorting in polarized and non-polarized cells: common problems, common solutions.

We have been interested in determining how epithelial cells generate and maintain their characteristically polarized distributions of membrane proteins. Our efforts to date strongly indicate that the polarized transport in MDCK cells may be due to a set of discrete targeting determinants often found on a membrane protein's cytoplasmic domain. Surprisingly, these determinants are widely distributed and are not specific to proteins expressed in polarized cells. They also appear to function in controlling polarized transport along both the biosynthetic and the endocytic (or transcytotic) pathways. Signals for basolateral transport have been characterized and, like the cytoplasmic domain signal used by plasma membrane receptors for accumulation at clathrin-coated pits, they often involve a critical tyrosine residue. Although the basolateral and coated pit signals may also be co-linear, they are not identical. The basolateral and apical transport determinants are also hierarchically arranged. Although a single protein may contain one or more signals specifying basolateral transport, inactivation of these signals appears to reveal a determinant that directs efficient apical transport. Given that the sequence determinants responsible for polarized transport are not restricted to epithelial cells and are related to determinants commonly utilized in all cells, it is possible that non-polarized cells contain cognate apical and basolateral pathways that are responsible for 'constitutive' transport from the Golgi to the plasma membrane. The presence of two cognate pathways might confer a high degree of plasticity to pre-differentiated cells, allowing them rapidly to begin assuming a polarized phenotype in response to extracellular stimuli without requiring the synthesis of epithelial cell-specific transport machinery.

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