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植物中的细胞极性:关于PIN蛋白的观点

Cell polarity in plants: a PARspective on PINs.

作者信息

Geldner Niko

机构信息

Department of Plant Molecular Biology (DBMV), University of Lausanne, UNIL-Sorge, Biophore Building, Lausanne, Switzerland.

出版信息

Curr Opin Plant Biol. 2009 Feb;12(1):42-8. doi: 10.1016/j.pbi.2008.09.009. Epub 2008 Nov 5.

Abstract

Plants have acquired the ability for organized multicellular development independent from animals. Because of this, they represent an independent example in nature for the development of coordinated, complex cell polarity from the simple polarity found in unicellular eukaryotes. Plants display a striking array of polarized cell types, with different axes of polarity being defined in one cell. The most investigated and best understood aspect of plant polarity is the apical-basal polarity of the PIN family of auxin efflux facilitators, which are of crucial importance for the organization of the entire plant body. Striking differences exist between the PAR-polarity modules known in animals and the ways PINs polarize plant cells. Nonetheless, a common regulatory logic probably applies to all polarizing eukaryotic cells, which includes self-reinforcing, positive feedback loops, intricate interactions between membrane-attached proteins, lipid signatures, and the targeting of transmembrane proteins to the correct domains of the plasma membrane.

摘要

植物已经获得了独立于动物进行有组织的多细胞发育的能力。正因如此,它们代表了自然界中一个独立的例子,即从单细胞真核生物中发现的简单极性发展出协调的、复杂的细胞极性。植物展示出一系列引人注目的极化细胞类型,在一个细胞中定义了不同的极性轴。植物极性研究最多且理解最透彻的方面是生长素外排促进因子PIN家族的顶-基极性,这对整个植物体的组织至关重要。动物中已知的PAR极性模块与PIN使植物细胞极化的方式之间存在显著差异。尽管如此,一种共同的调控逻辑可能适用于所有极化的真核细胞,这包括自我强化的正反馈回路、膜附着蛋白之间复杂的相互作用、脂质特征以及跨膜蛋白靶向到质膜的正确结构域。

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