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基于一级序列数据的髓鞘蛋白折叠与功能

Folding and function of the myelin proteins from primary sequence data.

作者信息

Inouye H, Kirschner D A

机构信息

Children's Hospital, Boston, MA 02115.

出版信息

J Neurosci Res. 1991 Jan;28(1):1-17. doi: 10.1002/jnr.490280102.

Abstract

To explain how the myelin proteins are involved in the organization and function of the myelin sheath requires knowing their molecular structures. Except for P2 basic protein of PNS myelin, however, their structures are not yet known. As an aid to predicting their molecular folding and possible functions, we have developed a FORTRAN program to analyze the primary sequence data for proteins, and have applied this to the myelin proteins in particular. In this program, propensities for the secondary structure conformations as well as physical-chemical parameters are assigned to the amino acids and the pattern of these parameters is examined by calculating their average values, autocorrelation functions and Fourier transforms. To compare two proteins, their sequences are aligned using a unitary scoring matrix, and homologies are searched by plotting a two-dimensional map of the correlation coefficients. Comparison of the corresponding myelin basic proteins (MBP) and P0 glycoproteins (P0) for rodent and shark showed that the conserved residues included most of the amino acids which were predicted to form the alpha or beta conformations, while the altered residues were mainly in the hydrophilic and turn or coil regions. In both rodent and shark the putative extracellular domain of P0 glycoprotein displayed consecutive peaks of beta propensity similar to that for the immunoglobulins, while the cytoplasmic domain showed alpha-beta-alpha folding. To trace the immunoglobulin fold along the P0 sequence, we compared the beta propensity curve of P0 with that of the immunoglobulin M603, whose three-dimensional structure has been determined. We propose that the flat beta-sheets of P0 are orientated parallel to the membrane surface to facilitate their homotypic interaction in the extracellular space. An extra beta-fold in the extracellular domain of shark P0 compared with rodent P0 was found, and this may result in a greater attraction between the apposed extracellular surfaces and may account for a smaller extracellular space as measured by x-ray diffraction. A computer search of the myelin protein sequences for functional motifs revealed sites for N-glycosylation, phosphorylation, nucleotide binding, and certain enzyme activities. We note especially that there are potential nucleotide binding sites in proteolipid protein (PLP), MBP and 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP). This is consistent with the experimental observations that PLP acts like an ionophore or proton channel when reconstituted into planar lipid bilayers, MBP binds GTP, and CNP catalyzes in vitro the hydrolysis of 2',3'-nucleotides into corresponding 2'-nucleotides.

摘要

要解释髓鞘蛋白如何参与髓鞘的组织和功能,需要了解它们的分子结构。然而,除了周围神经系统髓鞘的P2碱性蛋白外,它们的结构尚不清楚。为了辅助预测它们的分子折叠和可能的功能,我们开发了一个FORTRAN程序来分析蛋白质的一级序列数据,并特别将其应用于髓鞘蛋白。在这个程序中,二级结构构象的倾向以及物理化学参数被赋予氨基酸,并通过计算它们的平均值、自相关函数和傅里叶变换来检查这些参数的模式。为了比较两种蛋白质,使用单一评分矩阵对它们的序列进行比对,并通过绘制相关系数的二维图来搜索同源性。对啮齿动物和鲨鱼的相应髓鞘碱性蛋白(MBP)和P0糖蛋白(P0)的比较表明,保守残基包括大多数预计形成α或β构象的氨基酸,而改变的残基主要在亲水区以及转角或卷曲区域。在啮齿动物和鲨鱼中,P0糖蛋白的假定细胞外结构域都显示出与免疫球蛋白类似的连续β倾向峰,而细胞质结构域则呈现α-β-α折叠。为了沿着P0序列追踪免疫球蛋白折叠,我们将P0的β倾向曲线与已确定三维结构的免疫球蛋白M603的曲线进行了比较。我们提出,P0的扁平β折叠片层与膜表面平行排列,以促进它们在细胞外空间中的同型相互作用。与啮齿动物的P0相比,发现鲨鱼P0的细胞外结构域有一个额外的β折叠,这可能导致相邻细胞外表面之间有更大的吸引力,并可能解释了通过X射线衍射测量的较小细胞外空间。对髓鞘蛋白序列进行功能基序的计算机搜索,揭示了N-糖基化、磷酸化、核苷酸结合和某些酶活性的位点。我们特别注意到,在蛋白脂蛋白(PLP)、MBP和2',3'-环核苷酸3'-磷酸二酯酶(CNP)中有潜在的核苷酸结合位点。这与实验观察结果一致,即PLP在重构到平面脂质双层中时表现得像离子载体或质子通道,MBP结合GTP,并且CNP在体外催化2',3'-核苷酸水解为相应的2'-核苷酸。

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