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NAPP和PIRP编码一种假定的参与植物细胞形态发生的波调控蛋白复合体的亚基。

NAPP and PIRP encode subunits of a putative wave regulatory protein complex involved in plant cell morphogenesis.

作者信息

Brembu Tore, Winge Per, Seem Martin, Bones Atle M

机构信息

Department of Biology, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.

出版信息

Plant Cell. 2004 Sep;16(9):2335-49. doi: 10.1105/tpc.104.023739. Epub 2004 Aug 17.

Abstract

The ARP2/3 complex is an important regulator of actin nucleation and branching in eukaryotic organisms. All seven subunits of the ARP2/3 complex have been identified in Arabidopsis thaliana, and mutation of at least three of the subunits results in defects in epidermal cell expansion, including distorted trichomes. However, the mechanisms regulating the activity of the ARP2/3 complex in plants are largely unknown. In mammalian cells, WAVE and WASP proteins are involved in activation of the ARP2/3 complex. WAVE1 activity is regulated by a protein complex containing NAP1/HEM/KETTE/GEX-3 and PIR121/Sra-1/CYFIP/GEX-2. Here, we show that the WAVE1 regulatory protein complex is partly conserved in plants. We have identified Arabidopsis genes encoding homologs of NAP1 (NAPP), PIR121 (PIRP), and HSPC300 (BRK1). T-DNA inactivation of NAPP and PIRP results in distorted trichomes, similar to ARP2/3 complex mutants. The napp-1 mutant is allelic to the distorted mutant gnarled. The actin cytoskeleton in napp-1 and pirp-1 mutants shows orientation defects and increased bundling compared with wild-type plants. The results presented show that activity of the ARP2/3 complex in plants is regulated through an evolutionarily conserved mechanism.

摘要

ARP2/3复合物是真核生物中肌动蛋白成核和分支的重要调节因子。在拟南芥中已鉴定出ARP2/3复合物的所有七个亚基,至少三个亚基发生突变会导致表皮细胞扩张缺陷,包括毛状体扭曲。然而,植物中调节ARP2/3复合物活性的机制在很大程度上尚不清楚。在哺乳动物细胞中,WAVE和WASP蛋白参与ARP2/3复合物的激活。WAVE1的活性受包含NAP1/HEM/KETTE/GEX-3和PIR121/Sra-1/CYFIP/GEX-2的蛋白质复合物调节。在此,我们表明WAVE1调节蛋白复合物在植物中部分保守。我们已鉴定出编码NAP1(NAPP)、PIR121(PIRP)和HSPC300(BRK1)同源物的拟南芥基因。NAPP和PIRP的T-DNA失活导致毛状体扭曲,类似于ARP2/3复合物突变体。napp-1突变体与扭曲突变体gnarled等位。与野生型植物相比,napp-1和pirp-1突变体中的肌动蛋白细胞骨架显示出取向缺陷且束集增加。所呈现的结果表明,植物中ARP2/3复合物的活性通过一种进化上保守的机制进行调节。

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