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The Copper Transporter 1 (CTR1) is Required to Maintain the Stability of Copper Transporter 2 (CTR2)

机译:需要铜传输器1(CTR1)来维持铜传输器2(CTR2)的稳定性

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摘要

Mammalian cells have two influx Cu transporters that form trimers in membranes. CTR1 is the high affinity transporter that resides largely in the plasma membrane, and CTR2 is the low affinity transporter that is primarily associated with vesicular structures inside the cell. The major differences between CTR1 and CTR2 are that CTR1 contains a HIS/MET-rich domain N-terminal of the METS that participate in the first two stacked rings that form the pore, and a longer C-terminal tail that includes a Cu binding HIS-CYS-HIS (HCH) motif right at the end. It has been reported that CTR1 and CTR2 are physically associated with each other in the cell. We used the CRISPR-Cas9 technology to knock out either CTR1 or CTR2 in fully malignant HEK293T and OVCAR8 human ovarian cancer cells to investigate the interaction of CTR1 and CTR2. We report here that the level of CTR2 protein is markedly decreased in CTR1 knockout clones while the CTR2 transcript level remains unchanged. CTR2 was found to be highly ubiquitinated in the CTR1 knock out cells, and inhibition of the proteosome prevented the degradation of CTR2 when CTR1 was not present while inhibition of autophagy had no effect. Re-expression of CTR1 rescued CTR2 from degradation in the CTR1 knockout cells. We conclude that CTR1 is essential to maintain the stability of CTR2 and that in the absence of CTR1 CTR2 is degraded by the proteosome. This reinforces the concept that the functions of CTR1 and CTR2 are inter-dependent within the Cu homeostasis system.
机译:哺乳动物细胞具有两个流入的铜转运蛋白,它们在膜中形成三聚体。 CTR1是主要存在于质膜中的高亲和力转运蛋白,而CTR2是主要与细胞内囊泡结构相关的低亲和力转运蛋白。 CTR1和CTR2之间的主要区别在于CTR1包含METS的富含HIS / MET的结构域N末端,该N末端参与形成孔的前两个堆叠环,以及较长的C末端尾部,其包含与Cu结合的HIS -CYS-HIS(HCH)主题位于结尾处。据报道,CTR1和CTR2在细胞中彼此物理相关。我们使用了CRISPR-Cas9技术来敲除全恶性HEK293T和OVCAR8人卵巢癌细胞中的CTR1或CTR2,以研究CTR1和CTR2的相互作用。我们在这里报告,CTR1敲除克隆中CTR2蛋白的水平显着降低,而CTR2转录本水平保持不变。发现CTR2在敲除CTR1的细胞中高度泛素化,当不存在CTR1时,蛋白体的抑制作用阻止了CTR2的降解,而自噬的抑制作用无效。 CTR1的重新表达从CTR1敲除细胞的降解中拯救了CTR2。我们得出的结论是CTR1对维持CTR2的稳定性至关重要,并且在不存在CTR1的情况下CTR2被蛋白体降解。这强化了CTR1和CTR2的功能在Cu稳态系统中相互依赖的概念。

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