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利用设计的锚蛋白重复蛋白文库对激酶 ERK 的磷酸化特异性结合物进行结构和功能分析。

Structural and functional analysis of phosphorylation-specific binders of the kinase ERK from designed ankyrin repeat protein libraries.

机构信息

Department of Biochemistry, University of Zurich, 8057 Zurich, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 2012 Aug 21;109(34):E2248-57. doi: 10.1073/pnas.1205399109. Epub 2012 Jul 27.

Abstract

We have selected designed ankyrin repeat proteins (DARPins) from a synthetic library by using ribosome display that selectively bind to the mitogen-activated protein kinase ERK2 (extracellular signal-regulated kinase 2) in either its nonphosphorylated (inactive) or doubly phosphorylated (active) form. They do not bind to other kinases tested. Crystal structures of complexes with two DARPins, each specific for one of the kinase forms, were obtained. The two DARPins bind to essentially the same region of the kinase, but recognize the conformational change within the activation loop and an adjacent area, which is the key structural difference that occurs upon activation. Whereas the rigid phosphorylated activation loop remains in the same form when bound by the DARPin, the more mobile unphosphorylated loop is pushed to a new position. The DARPins can be used to selectively precipitate the cognate form of the kinases from cell lysates. They can also specifically recognize the modification status of the kinase inside the cell. By fusing the kinase with Renilla luciferase and the DARPin to GFP, an energy transfer from luciferase to GFP can be observed in COS-7 cells upon intracellular complex formation. Phosphorylated ERK2 is seen to increase by incubation of the COS-7 cells with FBS and to decrease upon adding the ERK pathway inhibitor PD98509. Furthermore, the anti-ERK2 DARPin is seen to inhibit ERK phosphorylation as it blocks the target inside the cell. This strategy of creating activation-state-specific sensors and kinase-specific inhibitors may add to the repertoire to investigate intracellular signaling in real time.

摘要

我们通过核糖体展示从合成文库中筛选出了能够选择性结合丝裂原活化蛋白激酶 ERK2(细胞外信号调节激酶 2)的非磷酸化(无活性)或双磷酸化(有活性)形式的设计锚蛋白重复蛋白(DARPin)。它们不与其他测试的激酶结合。获得了与两种 DARPin 形成复合物的晶体结构,每种 DARPin 都特异性结合一种激酶形式。这两种 DARPin 结合到激酶的基本相同区域,但识别构象变化发生在激活环和相邻区域,这是激活时发生的关键结构差异。当 DARPin 结合时,刚性磷酸化激活环保持相同的形式,而更灵活的非磷酸化环被推到新的位置。DARPin 可用于从细胞裂解物中选择性沉淀同源形式的激酶。它们还可以特异性识别细胞内激酶的修饰状态。通过将激酶与海肾荧光素酶和 DARPin 融合到 GFP 中,在 COS-7 细胞内形成细胞内复合物时,可以观察到荧光素酶到 GFP 的能量转移。孵育 COS-7 细胞用 FBS 可观察到磷酸化 ERK2 增加,加入 ERK 通路抑制剂 PD98509 后减少。此外,抗 ERK2 DARPin 可抑制 ERK 磷酸化,因为它阻止了细胞内的靶标。这种创建激活状态特异性传感器和激酶特异性抑制剂的策略可能会增加实时研究细胞内信号转导的手段。

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