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Single methyl groups can act as toggle switches to specify transmembrane Protein-protein interactions

机译:单个甲基可以充当拨动开关以指定跨膜蛋白-蛋白相互作用

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摘要

Transmembrane domains (TMDs) engage in protein-protein interactions that regulate many cellular processes, but the rules governing the specificity of these interactions are poorly understood. To discover these principles, we analyzed 26-residue model transmembrane proteins consisting exclusively of leucine and isoleucine (called LIL traptamers) that specifically activate the erythropoietin receptor (EPOR) in mouse cells to confer growth factor independence. We discovered that the placement of a single side chain methyl group at specific positions in a traptamer determined whether it associated productively with the TMD of the human EPOR, the mouse EPOR, or both receptors. Association of the traptamers with the EPOR induced EPOR oligomerization in an orientation that stimulated receptor activity. These results highlight the high intrinsic specificity of TMD interactions, demonstrate that a single methyl group can dictate specificity, and define the minimal chemical difference that can modulate the specificity of TMD interactions and the activity of transmembrane proteins.
机译:跨膜结构域(TMDs)参与调节许多细胞过程的蛋白质-蛋白质相互作用,但对这些相互作用的特异性的规则了解甚少。为了发现这些原理,我们分析了仅由亮氨酸和异亮氨酸组成的26个残基模型跨膜蛋白(称为LIL诱集剂),它们特异性激活小鼠细胞中的促红细胞生成素受体(EPOR),赋予生长因子独立性。我们发现,将单侧链甲基基团置于traptamer的特定位置决定了它是否与人类EPOR,小鼠EPOR或两种受体的TMD有效结合。诱捕剂与EPOR的缔合以刺激受体活性的方向诱导EPOR低聚。这些结果突出了TMD相互作用的高固有特异性,证明单个甲基可以决定特异性,并定义了最小的化学差异,可以调节TMD相互作用的特异性和跨膜蛋白的活性。

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