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甾醇依赖性内吞作用介导细胞分裂后PIN2生长素外排载体极性的获得。

Sterol-dependent endocytosis mediates post-cytokinetic acquisition of PIN2 auxin efflux carrier polarity.

作者信息

Men Shuzhen, Boutté Yohann, Ikeda Yoshihisa, Li Xugang, Palme Klaus, Stierhof York-Dieter, Hartmann Marie-Andrée, Moritz Thomas, Grebe Markus

机构信息

Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, SE-90183 Umeå, Sweden.

出版信息

Nat Cell Biol. 2008 Feb;10(2):237-44. doi: 10.1038/ncb1686. Epub 2008 Jan 27.

Abstract

The polarization of yeast and animal cells relies on membrane sterols for polar targeting of proteins to the plasma membrane, their polar endocytic recycling and restricted lateral diffusion. However, little is known about sterol function in plant-cell polarity. Directional root growth along the gravity vector requires polar transport of the plant hormone auxin. In Arabidopsis, asymmetric plasma membrane localization of the PIN-FORMED2 (PIN2) auxin transporter directs root gravitropism. Although the composition of membrane sterols influences gravitropism and localization of two other PIN proteins, it remains unknown how sterols contribute mechanistically to PIN polarity. Here, we show that correct membrane sterol composition is essential for the acquisition of PIN2 polarity. Polar PIN2 localization is defective in the sterol-biosynthesis mutant cyclopropylsterol isomerase1-1 (cpi1-1) which displays altered sterol composition, PIN2 endocytosis, and root gravitropism. At the end of cytokinesis, PIN2 localizes initially to both newly formed membranes but subsequently disappears from one. By contrast, PIN2 frequently remains at both daughter membranes in endocytosis-defective cpi1-1 cells. Hence, sterol composition affects post-cytokinetic acquisition of PIN2 polarity by endocytosis, suggesting a mechanism for sterol action on establishment of asymmetric protein localization.

摘要

酵母细胞和动物细胞的极化依赖于膜甾醇,以实现蛋白质向质膜的极性靶向、其极性胞吞再循环以及受限的侧向扩散。然而,关于甾醇在植物细胞极性中的功能却知之甚少。沿着重力向量的定向根生长需要植物激素生长素的极性运输。在拟南芥中,生长素转运蛋白PIN-FORMED2(PIN2)在质膜上的不对称定位指导根的向重力性。尽管膜甾醇的组成影响向重力性以及另外两种PIN蛋白的定位,但甾醇如何在机制上影响PIN的极性仍不清楚。在此,我们表明正确的膜甾醇组成对于获得PIN2极性至关重要。在甾醇生物合成突变体环丙基甾醇异构酶1-1(cpi1-1)中,极性PIN2定位存在缺陷,该突变体显示出甾醇组成、PIN2内吞作用和根向重力性的改变。在胞质分裂结束时,PIN2最初定位于两个新形成的膜,但随后从其中一个膜上消失。相比之下,在有内吞作用缺陷的cpi1-1细胞中,PIN2经常保留在两个子膜上。因此,甾醇组成通过内吞作用影响胞质分裂后PIN2极性的获得,提示了甾醇作用于建立不对称蛋白质定位的一种机制。

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