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在胶束中对具有两个跨膜螺旋的膜蛋白进行核磁共振结构测定:细菌汞解毒系统的MerF蛋白

NMR structure determination of a membrane protein with two transmembrane helices in micelles: MerF of the bacterial mercury detoxification system.

作者信息

Howell Stanley C, Mesleh Michael F, Opella Stanley J

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093-0307, USA.

出版信息

Biochemistry. 2005 Apr 5;44(13):5196-206. doi: 10.1021/bi048095v.

Abstract

The three-dimensional backbone structure of a membrane protein with two transmembrane helices in micelles was determined using solution NMR methods that rely on the measurement of backbone (1)H-(15)N residual dipolar couplings (RDCs) from samples of two different constructs that align differently in stressed polyacrylamide gels. Dipolar wave fitting to the (1)H-(15)N RDCs determines the helical boundaries based on periodicity and was utilized in the generation of supplemental dihedral restraints for the helical segments. The (1)H-(15)N RDCs and supplemental dihedral restraints enable the determination of the structure of the helix-loop-helix core domain of the mercury transport membrane protein MerF with a backbone RMSD of 0.58 A. Moreover, the fold of this polypeptide demonstrates that the two vicinal pairs of cysteine residues, shown to be involved in the transport of Hg(II) across the membrane, are exposed to the cytoplasm. This finding differs from earlier structural and mechanistic models that were based primarily on the somewhat atypical hydropathy plot for MerF and related transport proteins.

摘要

利用溶液核磁共振方法确定了在胶束中具有两个跨膜螺旋的膜蛋白的三维主链结构,该方法依赖于对来自两种不同构建体样品的主链(1)H - (15)N剩余偶极耦合(RDC)的测量,这两种构建体在应力聚丙烯酰胺凝胶中排列方式不同。对(1)H - (15)N RDC进行偶极波拟合,根据周期性确定螺旋边界,并用于生成螺旋片段的补充二面角约束。(1)H - (15)N RDC和补充二面角约束能够确定汞转运膜蛋白MerF的螺旋-环-螺旋核心结构域的结构,主链均方根偏差为0.58埃。此外,该多肽的折叠表明,已证明参与Hg(II)跨膜转运的两对相邻半胱氨酸残基暴露于细胞质中。这一发现不同于早期主要基于MerF和相关转运蛋白有点非典型的亲水性图谱的结构和机制模型。

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