Structure and mechanism of the human copper transporting ATPases: Fitting the pieces into a moving puzzle

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-24 DOI:10.1016/j.bbamem.2024.184306
Oleg Y. Dmitriev, Jaala Patry
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Abstract

Human copper transporters ATP7B and ATP7A deliver copper to biosynthetic pathways and maintain copper homeostasis in the cell. These enzymes combine several challenges for structural biology because they are large low abundance membrane proteins with many highly mobile domains and long disordered loops. No method has yet succeeded in solving the structure of the complete fully functional protein. Still, X-ray crystallography, Cryo-EM and NMR helped to piece together a structure based model of the enzyme activity and regulation by copper. We review the structures of ATP7B and ATP7A with an emphasis on the mechanistic insights into the unique aspects of the transport function and regulation of the human copper ATPases that have emerged from more than twenty years of research.

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人类铜转运 ATP 酶的结构和机制:把碎片拼成移动的拼图
人类铜转运体 ATP7B 和 ATP7A 将铜输送到生物合成途径,并维持细胞中的铜平衡。这些酶是大型低丰度膜蛋白,具有许多高度可移动的结构域和较长的无序环,因此对结构生物学来说是几项挑战。目前还没有一种方法能成功地解决完整的全功能蛋白质的结构问题。尽管如此,X 射线晶体学、低温电子显微镜和核磁共振还是帮助拼凑出了一个基于结构的酶活性和铜调控模型。我们回顾了 ATP7B 和 ATP7A 的结构,重点是二十多年的研究对人类铜 ATP 酶转运功能和调控独特方面的机理认识。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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