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首页> 外文期刊>The Biochemical Journal >Interplay between negative and positive design elements in Gα helical domains of G proteins determines interaction specificity toward RGS2
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Interplay between negative and positive design elements in Gα helical domains of G proteins determines interaction specificity toward RGS2

机译:G蛋白的Gα螺旋域中的负和正设计元素之间的相互作用决定了对RGS2的相互作用特异性

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Regulators of G protein signaling (RGS) proteins inactivate Gα subunits, thereby controlling G protein-coupled signaling networks. Among all RGS proteins, RGS2 is unique in interacting only with the Gα_(q) but not with the Gα_(i) subfamily. Previous studies suggested that this specificity is determined by the RGS domain and, in particular, by three RGS2-specific residues that lead to a unique mode of interaction with Gα_(q). This interaction was further proposed to act through contacts with the Gα GTPase domain. Here, we combined energy calculations and GTPase activity measurements to determine which Gα residues dictate specificity toward RGS2. We identified putative specificity-determining residues in the Gα helical domain, which among G proteins is found only in Gα subunits. Replacing these helical domain residues in Gα_(i) with their Gα_(q) counterparts resulted in a dramatic specificity switch toward RGS2. We further show that Gα–RGS2 specificity is set by Gα_(i) residues that perturb interactions with RGS2, and by Gα_(q) residues that enhance these interactions. These results show, for the first time, that the Gα helical domain is central to dictating specificity toward RGS2, suggesting that this domain plays a general role in governing Gα-RGS specificity. Our insights provide new options for manipulating RGS–G protein interactions in vivo , for better understanding of their ‘wiring’ into signaling networks, and for devising novel drugs targeting such interactions.
机译:G蛋白信号传导(RGS)蛋白的调节剂失活Gα亚基,从而控制G蛋白耦合的信令网络。在所有RGS蛋白中,RGS2仅与Gα_(Q)相互作用,但不是使用Gα_(i)亚家族。以前的研究表明,这种特异性由RGS结构域确定,特别是由三个RGS2特定的残基确定,导致与Gα_(Q)的独特相互作用模式。进一步提出这种相互作用以通过与GαGTP酶结构域的触点作用。这里,我们组合能量计算和GTP酶活性测量以确定哪个Gα残留对RGS2的特异性决定。我们鉴定了Gα螺旋结构域中的推定特异性确定残留物,其中G蛋白在Gα亚基中仅发现。用其Gα_(Q)对应物替换Gα_(i)中的这些螺旋域残留物导致RGS2的剧烈特异性切换。我们进一步表明,Gα-RGS2特异性由Gα_(i)残留物设置,使得与RGS2的相互作用以及增强这些相互作用的Gα_(Q)残基。这些结果首次表明Gα螺旋结构域是对RGS2的特异性的核心,表明该领域在控制Gα-RGS特异性方面发挥着一般作用。我们的见解提供了用于操纵VIVO中的RGS-G蛋白质相互作用的新选择,以便更好地了解他们的“接线”到信号通信网络中,并用于设计靶向这种相互作用的新药。

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