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14-3-3 proteins interact with a hybrid prenyl-phosphorylation motif to inhibit G proteins

机译:14-3-3蛋白与杂戊二烯基磷酸化基序相互作用以抑制G蛋白

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摘要

Signaling through G proteins normally involves conformational switching between GTP- and GDP-bound states. Several Rho GTPases are also regulated by RhoGDI binding and sequestering in the cytosol. Rnd proteins are atypical constitutively GTP-bound Rho proteins, whose regulation remains elusive. Here, we report a high-affinity 14-3-3-binding site at the C terminus of Rnd3 consisting of both the Cys241-farnesyl moiety and a Rho-associated coiled coil containing protein kinase (ROCK)-dependent Ser240 phosphorylation site. 14-3-3 binding to Rnd3 also involves phosphorylation of Ser218 by ROCK and/or Ser210 by protein kinase C (PKC). The crystal structure of a phosphorylated, farnesylated Rnd3 peptide with 14-3-3 reveals a hydrophobic groove in 14-3-3 proteins accommodating the farnesyl moiety. Functionally, 14-3-3 inhibits Rnd3-induced cell rounding by translocating it from the plasma membrane to the cytosol. Rnd1, Rnd2, and geranylgeranylated Rap1A interact similarly with 14-3-3. In contrast to the canonical GTP/GDP switch that regulates most Ras superfamily members, our results reveal an unprecedented mechanism for G protein inhibition by 14-3-3 proteins.
机译:通过G蛋白发出的信号通常涉及GTP和GDP结合状态之间的构象转换。几种Rho GTPases也受RhoGDI结合和螯合在细胞质中的调节。 Rnd蛋白是非典型组成性GTP结合的Rho蛋白,其调控仍然难以捉摸。在这里,我们报告在Rnd3的C末端的高亲和力14-3-3-结合位点,由Cys241-法呢基部分和包含蛋白激酶(ROCK)依赖性Ser240磷酸化位点的Rho相关卷曲螺旋组成。 14-3-3与Rnd3的结合还涉及ROCK使Ser218磷酸化和/或蛋白激酶C(PKC)使Ser210磷酸化。具有14-3-3的磷酸化,法呢基化的Rnd3肽的晶体结构揭示了容纳法呢基部分的14-3-3蛋白中的疏水沟。从功能上讲,14-3-3通过将Rnd3诱导的细胞圆化从质膜转移到细胞质溶胶来抑制它。 Rnd1,Rnd2和香叶基香叶基Rap1A与14-3-3的相互作用类似。与规范大多数Ras超家族成员的规范GTP / GDP转换相反,我们的结果揭示了14-3-3蛋白抑制G蛋白的空前机制。

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