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铜依赖型 Ctr4-Ctr5 铜转运复合物的转运。

Copper-dependent trafficking of the Ctr4-Ctr5 copper transporting complex.

机构信息

Département de Biochimie, Faculté de médecine et des sciences de la santé, Université de Sherbrooke, Sherbrooke, Canada.

出版信息

PLoS One. 2010 Aug 4;5(8):e11964. doi: 10.1371/journal.pone.0011964.

Abstract

BACKGROUND

In Schizosaccharomyces pombe, copper uptake is carried out by a heteromeric complex formed by the Ctr4 and Ctr5 proteins. Copper-induced differential subcellular localization may play a critical role with respect to fine tuning the number of Ctr4 and Ctr5 molecules at the cell surface.

METHODOLOGY/PRINCIPAL FINDINGS: We have developed a bimolecular fluorescence complementation (BiFC) assay to analyze protein-protein interactions in vivo in S. pombe. The assay is based on the observation that N- and C-terminal subfragments of the Venus fluorescent protein can reconstitute a functional fluorophore only when they are brought into tight contact. Wild-type copies of the ctr4(+) and ctr5(+) genes were inserted downstream of and in-frame with the nonfluorescent C-terminal (VC) and N-terminal (VN) coding fragments of Venus, respectively. Co-expression of Ctr4-VC and Ctr5-VN fusion proteins allowed their detection at the plasma membrane of copper-limited cells. Similarly, cells co-expressing Ctr4-VN and Ctr4-VC in the presence of Ctr5-Myc(12) displayed a fluorescence signal at the plasma membrane. In contrast, Ctr5-VN and Ctr5-VC co-expressed in the presence of Ctr4-Flag(2) failed to be visualized at the plasma membrane, suggesting a requirement for a combination of two Ctr4 molecules with one Ctr5 molecule. We found that plasma membrane-located Ctr4-VC-Ctr5-VN fluorescent complexes were internalized when the cells were exposed to high levels of copper. The copper-induced internalization of Ctr4-VC-Ctr5-VN complexes was not dependent on de novo protein synthesis. When cells were transferred back from high to low copper levels, there was reappearance of the BiFC fluorescent signal at the plasma membrane.

SIGNIFICANCE

These findings reveal a copper-dependent internalization and recycling of the heteromeric Ctr4-Ctr5 complex as a function of copper availability.

摘要

背景

在裂殖酵母中,铜的摄取是由 Ctr4 和 Ctr5 蛋白形成的杂合复合物进行的。铜诱导的细胞内定位差异可能在精细调节细胞表面的 Ctr4 和 Ctr5 分子数量方面发挥关键作用。

方法/主要发现:我们开发了双分子荧光互补(BiFC)测定法,以在裂殖酵母体内分析蛋白质-蛋白质相互作用。该测定法基于这样的观察结果,即只有当 Venus 荧光蛋白的 N 和 C 末端亚片段紧密接触时,它们才能重新形成功能荧光团。野生型 ctr4(+)和 ctr5(+)基因的拷贝分别插入到 Venus 的非荧光 C 末端(VC)和 N 末端(VN)编码片段的下游并与它们框内融合。在铜限制细胞中,共表达 Ctr4-VC 和 Ctr5-VN 融合蛋白可检测到它们在质膜上的定位。同样,在存在 Ctr5-Myc(12)的情况下,共表达 Ctr4-VN 和 Ctr4-VC 的细胞在质膜上显示荧光信号。相比之下,在存在 Ctr4-Flag(2)的情况下共表达 Ctr5-VN 和 Ctr5-VC 的细胞则不能在质膜上被观察到,这表明需要两个 Ctr4 分子与一个 Ctr5 分子结合。我们发现,当细胞暴露于高浓度铜时,位于质膜上的 Ctr4-VC-Ctr5-VN 荧光复合物被内化。铜诱导的 Ctr4-VC-Ctr5-VN 复合物内化不依赖于新的蛋白质合成。当细胞从高铜水平转移到低铜水平时,质膜上再次出现 BiFC 荧光信号。

意义

这些发现揭示了作为铜可用性的函数,杂合 Ctr4-Ctr5 复合物的铜依赖性内化和再循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e80b/2915924/a87e588ebece/pone.0011964.g001.jpg

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