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法尼基化介导的亚细胞定位是CYP85A2功能所必需的。

Farnesylation-mediated subcellular localization is required for CYP85A2 function.

作者信息

Jamshed Muhammad, Liang Siyu, M N Hickerson Neil, Samuel Marcus A

机构信息

a Department of Biological Sciences , University of Calgary , Calgary , Alberta , Canada.

出版信息

Plant Signal Behav. 2017 Oct 3;12(10):e1382795. doi: 10.1080/15592324.2017.1382795.

Abstract

Protein farnesylation refers to the addition of a 15-carbon farnesyl isoprenoid to the cysteine residue of the CaaX motif at the carboxy terminus of target proteins. In spite of its known roles in plant development and abiotic stress tolerance, how these processes are precisely regulated by farnesylation had remained elusive. We recently showed that CYP85A2, the cytochrome P450, which converts castasterone to brassinolide in the last step of brassinosteroid synthesis must be farnesylated in order to function in this pathway. Lack of either CYP85A2 or the farnesylation motif of CYP85A2 resulted in reduced brassinolide accumulation, hypersensitivity to ABA, and increased plant drought tolerance. In this study, we have assessed the influence of the N-terminal secretory signal and the C-terminal CaaX motif of CYP85A2 in mediating CYP85A2 function and targeting to endomembrane compartments. We show that CaaX motif could still target CYPA85A2 in the absence of an intact N-terminal secretory signal to the respective membrane compartments and partially rescue cyp85a2-2 phenotypes. However, in the absence of both the CaaX motif and the secretory signal, CYP85A2 is not targeted to the membranes and becomes unstable.

摘要

蛋白质法尼基化是指在靶蛋白羧基末端的CaaX基序的半胱氨酸残基上添加一个含有15个碳的法尼基类异戊二烯。尽管已知其在植物发育和非生物胁迫耐受性中发挥作用,但法尼基化如何精确调控这些过程仍不清楚。我们最近发现,细胞色素P450 CYP85A2在油菜素内酯合成的最后一步将castasterone转化为油菜素内酯,它必须进行法尼基化才能在该途径中发挥作用。缺乏CYP85A2或CYP85A2的法尼基化基序会导致油菜素内酯积累减少、对脱落酸超敏以及植物耐旱性增加。在本研究中,我们评估了CYP85A2的N端分泌信号和C端CaaX基序在介导CYP85A2功能和靶向内膜区室方面的影响。我们发现,在没有完整的N端分泌信号的情况下,CaaX基序仍可将CYPA85A2靶向到相应的膜区室,并部分挽救cyp85a2-2的表型。然而,在同时缺乏CaaX基序和分泌信号的情况下,则CYP85A2不会靶向到膜上并变得不稳定。

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