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单个氨基酸在 CR4 和 ACR4 跨膜结构域二聚化中的作用。

The role of individual amino acids in the dimerization of CR4 and ACR4 transmembrane domains.

机构信息

USDA Animal and Plant Health Inspection Service, Ames, IA 50010, USA.

出版信息

Arch Biochem Biophys. 2010 Oct 15;502(2):104-11. doi: 10.1016/j.abb.2010.07.018. Epub 2010 Jul 23.

Abstract

CRINKLY4 is a growth factor-like plant receptor kinase designated as CR4 in Zea mays and ACR4 in Arabidopsis. Using the TOXCAT system, a genetic assay that measures helix interactions in a natural membrane environment, we have previously demonstrated that the dimerization potential of the ACR4 transmembrane (TM) domain is significantly weaker than that of CR4 TM domain, even though 13 of the 24 residues are identical. Neither of the TM domains contain the GxxxG motif that has been shown to be important for the dimerization of the TM segments of several receptors. To further investigate the relationship between protein sequence and dimerization potential, we (a) mutated each of the 11 differing residues in the CR4 TM domain to the corresponding residue of ACR4 (b) made reciprocal mutations in ACR4 and (c) made hybrids consisting of half CR4 and half ACR4 TM domains. Our results suggest that most mutations in ACR4 or CR4 TM domains have low to moderate effects on the dimerization potential and that residues in the N-terminal half of the CR4 TM domain are important for dimerization.

摘要

CRINKLY4 是一种类似生长因子的植物受体激酶,在玉米中被命名为 CR4,在拟南芥中被命名为 ACR4。使用 TOXCAT 系统,一种在天然膜环境中测量螺旋相互作用的遗传测定方法,我们之前已经证明,ACR4 跨膜(TM)结构域的二聚化潜力明显弱于 CR4 TM 结构域,尽管 24 个残基中有 13 个是相同的。这两个 TM 结构域都不包含 GxxxG 基序,该基序已被证明对几个受体的 TM 片段的二聚化很重要。为了进一步研究蛋白质序列和二聚化潜力之间的关系,我们(a)将 CR4 TM 结构域中的 11 个不同残基分别突变为 ACR4 的相应残基;(b)在 ACR4 中进行了相互突变;(c)构建了由 CR4 和 ACR4 TM 结构域各一半组成的杂种。我们的结果表明,ACR4 或 CR4 TM 结构域中的大多数突变对二聚化潜力的影响较低或中等,并且 CR4 TM 结构域的 N 端一半的残基对二聚化很重要。

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