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结合和未结合配体的细胞视黄酸结合蛋白的1H和15N共振归属及二级结构

1H and 15N resonance assignments and secondary structure of cellular retinoic acid-binding protein with and without bound ligand.

作者信息

Rizo J, Liu Z P, Gierasch L M

机构信息

Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas 75235-9041.

出版信息

J Biomol NMR. 1994 Nov;4(6):741-60. doi: 10.1007/BF00398406.

Abstract

Sequence-specific assignments for the 1H and 15N backbone resonances of cellular retinoic acid-binding protein (CRABP), with and without the bound ligand, have been obtained. Most of the side-chain resonances of both apo- and holo-CRABP have also been assigned. The assignments have been obtained using two-dimensional homonuclear and heteronuclear NMR data, and three-dimensional 1H-15N TOCSY-HMQC and NOESY-HMQC experiments. The secondary structure, deduced from nuclear Overhauser effects, amide H/D exchange rates and H alpha chemical shifts, is analogous in both forms of the protein and is completely consistent with a model of CRABP that had been constructed by homology with the crystal structure of myelin P2 protein [Zhang et al. (1992) Protein Struct. Funct. Genet., 13, 87-99]. This model comprises two five-stranded beta-sheets that form a sandwich or beta-clam structure, and a short N-terminal helix-turn-helix motif that closes the binding cavity between the two sheets. Comparison of the data obtained for apo- and holo-CRABP indicates that a region around the C-terminus of the second helix is much more flexible in the apo-protein. Our data provide experimental evidence for the hypothesis that the ligand-binding mechanism of CRABP, and of other homologous proteins that bind hydrophobic ligands in the cytoplasm, involves opening of a portal to allow entry of the ligand into the cavity.

摘要

已获得细胞视黄酸结合蛋白(CRABP)在有和没有结合配体情况下的1H和15N主链共振的序列特异性归属。脱辅基和全CRABP的大多数侧链共振也已得到归属。这些归属是使用二维同核和异核NMR数据以及三维1H-15N TOCSY-HMQC和NOESY-HMQC实验获得的。从核Overhauser效应、酰胺H/D交换率和Hα化学位移推断出的二级结构在蛋白质的两种形式中类似,并且与通过与髓鞘P2蛋白的晶体结构同源构建的CRABP模型完全一致[Zhang等人(1992年)《蛋白质结构、功能与遗传学》,13,87 - 99]。该模型包括两个形成三明治或β-蛤结构的五链β-折叠,以及一个封闭两片之间结合腔的短N端螺旋-转角-螺旋基序。对脱辅基和全CRABP获得的数据的比较表明,在脱辅基蛋白中,第二个螺旋C端周围的区域更具柔性。我们的数据为以下假设提供了实验证据:CRABP以及其他在细胞质中结合疏水配体的同源蛋白的配体结合机制涉及打开一个通道以允许配体进入腔中。

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