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一种铜调节转运蛋白,对于黑腹果蝇获取铜、色素沉着及特定发育阶段是必需的。

A copper-regulated transporter required for copper acquisition, pigmentation, and specific stages of development in Drosophila melanogaster.

作者信息

Zhou Hao, Cadigan Ken M, Thiele Dennis J

机构信息

Department of Biological Chemistry, University of Michigan Medical School, USA.

出版信息

J Biol Chem. 2003 Nov 28;278(48):48210-8. doi: 10.1074/jbc.M309820200. Epub 2003 Sep 8.

Abstract

The trace element copper is required for normal growth and development, serving as an essential catalytic co-factor for enzymes involved in energy generation, oxidative stress protection, neuropeptide maturation, and other fundamental processes. In yeast and mammals copper acquisition occurs through the action of the Ctr1 family of high affinity copper transporters. Here we describe studies using Drosophila melanogaster to investigate the role of copper acquisition through Ctr1 in normal growth and development. Three distinct Drosophila Ctr1 genes (Ctr1A, Ctr1B, and Ctr1C) have been identified, which have unique expression patterns over the course of development. Interestingly, Ctr1B, which is expressed exclusively during the late embryonic and larval stages of development, is transcriptionally activated in response to nutritionally induced copper deprivation and down-regulated in response to copper adequacy. The generation of Ctr1B mutant flies results in decreased larval copper accumulation, marked body pigmentation defects that parallel defects in tyrosinase activity, and specific developmental arrest under conditions of both nutritional copper limitation and excess. These studies establish that copper acquisition through the Drosophila Ctr1B transporter is crucial for normal growth and in early and specific stages of metazoan development.

摘要

微量元素铜是正常生长发育所必需的,它作为参与能量生成、氧化应激保护、神经肽成熟及其他基本过程的酶的必需催化辅因子。在酵母和哺乳动物中,铜的获取是通过高亲和力铜转运蛋白Ctr1家族的作用来实现的。在此,我们描述了利用黑腹果蝇进行的研究,以探究通过Ctr1获取铜在正常生长发育中的作用。已鉴定出三个不同的果蝇Ctr1基因(Ctr1A、Ctr1B和Ctr1C),它们在发育过程中具有独特的表达模式。有趣的是,仅在胚胎后期和幼虫发育阶段表达的Ctr1B,在营养诱导的铜缺乏时被转录激活,而在铜充足时被下调。Ctr1B突变果蝇的产生导致幼虫铜积累减少、明显的身体色素沉着缺陷,这些缺陷与酪氨酸酶活性缺陷相似,并且在营养性铜限制和过量的条件下会出现特定的发育停滞。这些研究表明,通过果蝇Ctr1B转运蛋白获取铜对于正常生长以及后生动物发育的早期和特定阶段至关重要。

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