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破骨细胞中的膜转运蛋白:出入情况

Membrane Transport Proteins in Osteoclasts: The Ins and Outs.

作者信息

Ribet Amy B P, Ng Pei Ying, Pavlos Nathan J

机构信息

Bone Biology and Disease Laboratory, School of Biomedical Sciences, The University of Western Australia, Nedlands, WA, Australia.

出版信息

Front Cell Dev Biol. 2021 Feb 26;9:644986. doi: 10.3389/fcell.2021.644986. eCollection 2021.

Abstract

During bone resorption, the osteoclast must sustain an extraordinarily low pH environment, withstand immense ionic pressures, and coordinate nutrient and waste exchange across its membrane to sustain its unique structural and functional polarity. To achieve this, osteoclasts are equipped with an elaborate set of membrane transport proteins (pumps, transporters and channels) that serve as molecular 'gatekeepers' to regulate the bilateral exchange of ions, amino acids, metabolites and macromolecules across the ruffled border and basolateral domains. Whereas the importance of the vacuolar-ATPase proton pump and chloride voltage-gated channel 7 in osteoclasts has long been established, comparatively little is known about the contributions of other membrane transport proteins, including those categorized as secondary active transporters. In this Special Issue review, we provide a contemporary update on the 'ins and outs' of membrane transport proteins implicated in osteoclast differentiation, function and bone homeostasis and discuss their therapeutic potential for the treatment of metabolic bone diseases.

摘要

在骨吸收过程中,破骨细胞必须维持极低的pH环境,承受巨大的离子压力,并协调其膜上的营养物质和废物交换,以维持其独特的结构和功能极性。为实现这一目标,破骨细胞配备了一套精心构建的膜转运蛋白(泵、转运体和通道),这些蛋白充当分子“守门人”,调节离子、氨基酸、代谢物和大分子在皱褶缘和基底外侧结构域之间的双向交换。尽管液泡型ATP酶质子泵和氯离子电压门控通道7在破骨细胞中的重要性早已确立,但对于其他膜转运蛋白的作用,包括那些被归类为继发性主动转运体的蛋白,人们了解得相对较少。在本期专题综述中,我们对与破骨细胞分化、功能及骨稳态相关的膜转运蛋白的“进出”情况进行了当代最新概述,并讨论了它们在治疗代谢性骨病方面的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edf3/7952445/cf7dbb62cf69/fcell-09-644986-g001.jpg

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