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通过噬菌体展示和核磁共振光谱检测到α-突触核蛋白与新型蛋白质伴侣的构象特异性结合。

Conformation-specific binding of alpha-synuclein to novel protein partners detected by phage display and NMR spectroscopy.

作者信息

Woods Wendy S, Boettcher John M, Zhou Donghua H, Kloepper Kathryn D, Hartman Kevin L, Ladror Daniel T, Qi Zhi, Rienstra Chad M, George Julia M

机构信息

Department of Molecular and Integrative Physiology, University of Illinois, 407 S. Goodwin Avenue, Urbana, IL 61801, USA.

出版信息

J Biol Chem. 2007 Nov 23;282(47):34555-67. doi: 10.1074/jbc.M705283200. Epub 2007 Sep 24.

Abstract

Alpha-synuclein (AS) is an intrinsically unstructured protein in aqueous solution but is capable of forming beta-sheet-rich fibrils that accumulate as intracytoplasmic inclusions in Parkinson disease and certain other neurological disorders. However, AS binding to phospholipid membranes leads to a distinct change in protein conformation, stabilizing an extended amphipathic alpha-helical domain reminiscent of the exchangeable apolipoproteins. To better understand the significance of this conformational change, we devised a novel bacteriophage display screen to identify protein binding partners of helical AS and have identified 20 proteins with roles in diverse cellular processes related to membrane trafficking, ion channel modulation, redox metabolism, and gene regulation. To verify that the screen identifies proteins with specificity for helical AS, we further characterized one of these candidates, endosulfine alpha (ENSA), a small cAMP-regulated phosphoprotein implicated in the regulation of insulin secretion but also expressed abundantly in the brain. We used solution NMR to probe the interaction between ENSA and AS on the surface of SDS micelles. Chemical shift perturbation mapping experiments indicate that ENSA interacts specifically with residues in the N-terminal helical domain of AS in the presence of SDS but not in aqueous buffer lacking SDS. The ENSA-related protein ARPP-19 (cAMP-regulated phosphoprotein 19) also displays specific interactions with helical AS. These results confirm that the helical N terminus of AS can mediate specific interactions with other proteins and suggest that membrane binding may regulate the physiological activity of AS in vivo.

摘要

α-突触核蛋白(AS)在水溶液中是一种内在无序的蛋白质,但能够形成富含β-折叠的纤维,这些纤维在帕金森病和某些其他神经疾病中作为胞质内包涵体积累。然而,AS与磷脂膜的结合会导致蛋白质构象发生明显变化,稳定一个延伸的两亲性α-螺旋结构域,类似于可交换的载脂蛋白。为了更好地理解这种构象变化的意义,我们设计了一种新型的噬菌体展示筛选方法,以鉴定螺旋状AS的蛋白质结合伙伴,并已鉴定出20种在与膜运输、离子通道调节、氧化还原代谢和基因调控相关的多种细胞过程中起作用的蛋白质。为了验证该筛选方法能鉴定出对螺旋状AS具有特异性的蛋白质,我们进一步对其中一个候选蛋白——内硫素α(ENSA)进行了表征,ENSA是一种受cAMP调节的小磷蛋白,与胰岛素分泌的调节有关,但在大脑中也大量表达。我们使用溶液核磁共振来探测ENSA与SDS胶束表面的AS之间的相互作用。化学位移扰动图谱实验表明,在SDS存在的情况下,ENSA与AS的N端螺旋结构域中的残基特异性相互作用,但在缺乏SDS的水性缓冲液中则不然。与ENSA相关的蛋白ARPP - 19(cAMP调节的磷蛋白19)也与螺旋状AS表现出特异性相互作用。这些结果证实了AS的螺旋N端可以介导与其他蛋白质的特异性相互作用,并表明膜结合可能在体内调节AS的生理活性。

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