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首页> 外文期刊>Toxicology Letters: An International Journal Providing a Forum for Original and Pertinent Contributions in Toxicology Research >Involvement of CTR1 and ATP7A in lead (Pb)-induced copper (Cu) accumulation in choroidal epithelial cells
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Involvement of CTR1 and ATP7A in lead (Pb)-induced copper (Cu) accumulation in choroidal epithelial cells

机译:CTR1和ATP7A参与脉络上皮细胞中铅(Pb)诱导的铜(Cu)积累

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摘要

The blood-cerebrospinal fluid barrier (BCB) plays a key role in maintaining copper (Cu) homeostasis in the brain. Cumulative evidences indicate that lead (Pb) exposure alters cerebral Cu homeostasis, which may underlie the development of neurodegenerative diseases. This study investigated the roles of Cu transporter 1 (CTR1) and ATP7A, two Cu transporters, in Pb-induced Cu accumulation in the choroidal epithelial cells. Pb exposure resulted in increased intracellular 64Cu retention, accompanying with up-regulated CTR1 level. Knockdown of CTR1 using siRNA before Pb exposure diminished the Pb-induced increase of 64Cu uptake. The expression level of ATP7A was down-regulated following the Pb exposure. ATP7A siRNA knockdown, or PCMB treatment, inhibited the 64Cu efflux from the cells, while the following additional incubation with Pb failed to further increase the intracellular 64Cu retention. Cu exposure, or intracellular Cu accumulation following the tetracycline (Tet)-induced overexpression of CTR1, did not result in significant change in ATP7A expression. Taken together, these data indicate that CTR1 and ATP7A play important roles in Cu transport in choroidal epithelial cells, and the Pb-induced intracellular Cu accumulation appears to be mediated, at least in part, via the alteration of CTR1 and ATP7A expression levels following Pb exposure.
机译:血脑脊液屏障(BCB)在维持大脑铜(Cu)稳态方面起着关键作用。累积证据表明,铅(Pb)暴露会改变脑铜稳态,这可能是神经退行性疾病发展的基础。这项研究调查了铜转运蛋白1(CTR1)和ATP7A,两个铜转运蛋白,在铅诱导的脉络膜上皮细胞中铜积累中的作用。铅暴露导致细胞内64Cu保留增加,同时CTR1水平上调。铅暴露前使用siRNA抑制CTR1减少了铅诱导的64Cu吸收增加。铅暴露后,ATP7A的表达水平下调。 ATP7A siRNA敲低或PCMB处理抑制了细胞中64Cu的流出,而随后与Pb的进一步温育未能进一步增加细胞内64Cu的保留。铜暴露或四环素(Tet)诱导的CTR1过表达后的细胞内铜积累并未导致ATP7A表达的显着变化。综上所述,这些数据表明CTR1和ATP7A在脉络膜上皮细胞中的Cu转运中起重要作用,并且Pb诱导的细胞内Cu积累似乎至少部分地通过Pb后CTR1和ATP7A表达水平的改变来介导。接触。

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