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绿色荧光蛋白的分子结构。

The molecular structure of green fluorescent protein.

作者信息

Yang F, Moss L G, Phillips G N

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, TX 77005-1892, USA.

出版信息

Nat Biotechnol. 1996 Oct;14(10):1246-51. doi: 10.1038/nbt1096-1246.

Abstract

The crystal structure of recombinant wild-type green fluorescent protein (GFP) has been solved to a resolution of 1.9 A by multiwavelength anomalous dispersion phasing methods. The protein is in the shape of a cylinder, comprising 11 strands of beta-sheet with an alpha-helix inside and short helical segments on the ends of the cylinder. This motif, with beta-structure on the outside and alpha-helix on the inside, represents a new protein fold, which we have named the beta-can. Two protomers pack closely together to form a dimer in the crystal. The fluorophores are protected inside the cylinders, and their structures are consistent with the formation of aromatic systems made up of Tyr66 with reduction of its C alpha-C beta bond coupled with cyclization of the neighboring glycine and serine residues. The environment inside the cylinder explains the effects of many existing mutants of GFP and suggests specific side chains that could be modified to change the spectral properties of GFP. Furthermore, the identification of the dimer contacts may allow mutagenic control of the state of assembly of the protein.

摘要

通过多波长反常色散相位法,已将重组野生型绿色荧光蛋白(GFP)的晶体结构解析到1.9埃的分辨率。该蛋白呈圆柱状,由11条β折叠链组成,内部有一个α螺旋,圆柱两端有短螺旋段。这种外部为β结构、内部为α螺旋的基序代表了一种新的蛋白质折叠方式,我们将其命名为β桶。在晶体中,两个原体紧密堆积形成二聚体。荧光团被保护在圆柱内部,其结构与由Tyr66形成的芳香体系一致,Tyr66的Cα-Cβ键还原,相邻的甘氨酸和丝氨酸残基环化。圆柱内部的环境解释了许多现有GFP突变体的效应,并暗示了可以修饰以改变GFP光谱特性的特定侧链。此外,二聚体接触点的确定可能允许对蛋白质组装状态进行诱变控制。

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