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首页> 外文期刊>Molecular and Cellular Biology >Rho2 Palmitoylation Is Required for Plasma Membrane Localization and Proper Signaling to the Fission Yeast Cell Integrity Mitogen-Activated Protein Kinase Pathway
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Rho2 Palmitoylation Is Required for Plasma Membrane Localization and Proper Signaling to the Fission Yeast Cell Integrity Mitogen-Activated Protein Kinase Pathway

机译:Rho2 Palmitoylation是必需的质膜定位和裂变酵母细胞完整性丝裂原激活的蛋白激酶途径的正确信号。

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摘要

The fission yeast small GTPase Rho2 regulates morphogenesis and is an upstream activator of the cell integrity pathway, whose key element, mitogen-activated protein kinase (MAPK) Pmk1, becomes activated by multiple environmental stimuli and controls several cellular functions. Here we demonstrate that farnesylated Rho2 becomes palmitoylated in vivo at cysteine-196 within its carboxyl end and that this modification allows its specific targeting to the plasma membrane. Unlike that of other palmitoylated and prenylated GTPases, the Rho2 control of morphogenesis and Pmk1 activity is strictly dependent upon plasma membrane localization and is not found in other cellular membranes. Indeed, artificial plasma membrane targeting bypassed the Rho2 need for palmitoylation in order to signal. Detailed functional analysis of Rho2 chimeras fused to the carboxyl end from the essential GTPase Rho1 showed that GTPase palmitoylation is partially dependent on the prenylation context and confirmed that Rho2 signaling is independent of Rho GTP dissociation inhibitor (GDI) function. We further demonstrate that Rho2 is an in vivo substrate for DHHC family acyltransferase Erf2 palmitoyltransferase. Remarkably, Rho3, another Erf2 target, negatively regulates Pmk1 activity in a Rho2-independent fashion, thus revealing the existence of cross talk whereby both GTPases antagonistically modulate the activity of this MAPK cascade.
机译:裂变酵母小GTPase Rho2调节形态发生,是细胞完整性途径的上游激活剂,其关键元素丝裂原激活的蛋白激酶(MAPK)Pmk1被多种环境刺激激活并控制多种细胞功能。在这里,我们证明了法呢基化的Rho2在其羧基端的半胱氨酸196处变为棕榈酸酯化的[em>体内,并且这种修饰允许其特异性靶向质膜。与其他棕榈酰化和异戊二烯基化的GTPases不同,Rho2对形态发生和Pmk1活性的控制严格取决于质膜的定位,而在其他细胞膜中则没有。确实,人工质膜靶向绕过了Rho2进行棕榈酰化的信号传递。从必需的GTP酶Rho1到羧基末端融合的Rho2嵌合体的详细功能分析表明,GTPase棕榈酰化部分取决于异戊二烯化背景,并证实Rho2信号传导独立于Rho GTP解离抑制剂(GDI)功能。我们进一步证明,Rho2是DHHC家族酰基转移酶Erf2棕榈酰基转移酶的体内底物。值得注意的是,另一个Erf2靶标Rho3以独立于Rho2的方式负调控Pmk1的活性,从而揭示了串扰的存在,从而使两个GTPases都能拮抗MAPK级联反应的活性。

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