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人表皮生长因子受体-2配体α的表皮生长因子样结构域的高分辨率溶液结构

High-resolution solution structure of the EGF-like domain of heregulin-alpha.

作者信息

Jacobsen N E, Abadi N, Sliwkowski M X, Reilly D, Skelton N J, Fairbrother W J

机构信息

Department of Protein Engineering, Genentech, Inc., South San Francisco, California 94080, USA.

出版信息

Biochemistry. 1996 Mar 19;35(11):3402-17. doi: 10.1021/bi952626l.

Abstract

The solution structure of the 63-residue heregulin-alpha (HRG-alpha) epidermal growth factor (EGF)-like domain, corresponding to residues 177-239 of HRG-alpha, has been determined to high resolution using data from two-dimensional and three-dimensional homo- and heteronuclear NMR spectroscopy. The structure is based on a total of 887 internuclear distance and dihedral restraints derived from data obtained using unlabeled and uniformly 15N-labeled protein samples, at pH 4.5, 20 degrees C. A total of 20 structures were calculated using a hybrid distance geometry-simulated annealing approach with the program DGII, followed by restrained molecular dynamics using the program DISCOVER. The average maximum violations are 0.12 +/- 0.01 angstroms and 1.4 +/- 0.3 degrees for distance and dihedral restraints, respectively. The backbone (N,C(alpha),C) atomic rms distribution about the mean coordinates for residues 3-23 and 31-49 is 0.29 +/- 0/07 angstroms. The N-and C-terminal residues (1-2 and 50-63) and 24-30 are disordered. Comparison of the HRG-alpha EGF-like domain structure with the previously determined structure of human EGF [Hommel et al. (1992) J. Mol. Biol. 227, 271-282] reveals a high degree of structural similarity; excluding the N-terminal region (residues 1-13), the disordered phi-loop region (residues 24-30) that contains a three-residue insertion in HRG-alpha relative to hEGF, and the disordered C-terminal region (residues 50-63), the C(alpha) alignment between the HRG-alpha and hEGF minimized mean structures has a rms difference of approximately 1 angstrom. In HRG-alpha the N-terminal residues 2-6 form a well-defined beta strand rather than being disordered as found for hEGF. This structural difference correlates with functional data which suggest that the N-terminal region of the HRG-alpha EGF-like domain is responsible for the observed receptor specificity differences between HRG-alpha and EGF.

摘要

已利用二维和三维同核及异核核磁共振光谱数据,将含63个残基的heregulin-α(HRG-α)表皮生长因子(EGF)样结构域(对应于HRG-α的177 - 239位残基)解析到高分辨率。该结构基于在pH 4.5、20℃条件下,使用未标记和均匀15N标记的蛋白质样品获得的数据得出的总共887个核间距离和二面角约束。使用程序DGII通过混合距离几何 - 模拟退火方法计算了总共20个结构,随后使用程序DISCOVER进行受限分子动力学计算。距离和二面角约束的平均最大偏差分别为0.12±0.01埃和1.4±0.3度。3 - 23位和31 - 49位残基围绕平均坐标的主链(N、Cα、C)原子均方根分布为0.29±0.07埃。N端和C端残基(1 - 2和50 - 63)以及24 - 30位残基无序。将HRG-α EGF样结构域的结构与先前确定的人EGF结构[Hommel等人(1992年)《分子生物学杂志》227卷,271 - 282页]进行比较,发现高度的结构相似性;排除N端区域(1 - 13位残基)、相对于hEGF在HRG-α中包含三个残基插入的无序φ环区域(24 - 30位残基)以及无序的C端区域(50 - 63位残基),HRG-α和hEGF最小化平均结构之间的Cα比对均方根差约为1埃。在HRG-α中,N端残基2 - 6形成明确的β链,而不像在hEGF中那样无序。这种结构差异与功能数据相关,这些数据表明HRG-α EGF样结构域的N端区域是HRG-α和EGF之间观察到的受体特异性差异的原因。

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