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核苷二磷酸激酶A作为气道上皮细胞中AMP激酶的调控因子。

Nucleoside diphosphate kinase A as a controller of AMP-kinase in airway epithelia.

作者信息

Muimo Richmond, Crawford Russell M, Mehta Anil

机构信息

Academic Unit of Child Health, Stephenson Wing, Sheffield Children's Hospital, Sheffield, S10 2TH, UK.

出版信息

J Bioenerg Biomembr. 2006 Aug;38(3-4):181-7. doi: 10.1007/s10863-006-9033-2.

Abstract

This review integrates recent understanding of a novel role for NDPK-A in two related directions: Firstly, its role in an airway epithelial cell when bound to the luminal (apical) membrane and secondly in the cytosol of many different cells (epithelial and non-epithelial) where an isoform-specific interaction occurs with a regulatory partner, AMPKalpha1. Thus NDPK-A is present in both a membrane and cytosolic environment but in the apical membrane, its roles are not understood in detail; preliminary data suggest that it co-localises with the cystic fibrosis protein (CFTR). In cytosol, we find that NDPK-A is coupled to the catalytic alpha1 isoform of the AMP-activated protein kinase (AMPKalpha subunit), which is part of a heterotrimeric protein complex that responds to cellular energy status by switching off ATP-consuming pathways and switching on ATP-generating pathways when ATP is limiting. We find that ATP is located within this complex and 'fed' from NDPK to AMPK without ever 'seeing' bulk solution. Importantly, the reverse can also happen such that AMPK activity can be made to decline when NDPK-A 'steals' ATP from AMPK. Thus we propose a novel paradigm in NDPK-A function by suggesting that AMP-kinase can be regulated by NDPK-A, independently of AMP.

摘要

本综述整合了近期对NDPK-A新作用的认识,涉及两个相关方向:其一,它在与管腔(顶端)膜结合时在气道上皮细胞中的作用;其二,在许多不同细胞(上皮细胞和非上皮细胞)的胞质溶胶中,它与调节伙伴AMPKalpha1发生亚型特异性相互作用。因此,NDPK-A存在于膜和胞质溶胶环境中,但在顶端膜中,其作用尚不清楚;初步数据表明它与囊性纤维化蛋白(CFTR)共定位。在胞质溶胶中,我们发现NDPK-A与AMP激活的蛋白激酶(AMPKalpha亚基)的催化alpha1亚型偶联,该亚型是异源三聚体蛋白复合物的一部分,当ATP受限时,该复合物通过关闭ATP消耗途径和开启ATP生成途径来响应细胞能量状态。我们发现ATP位于该复合物中,并从NDPK“输送”到AMPK,而从未“接触”大量溶液。重要的是,反之也可能发生,即当NDPK-A从AMPK“窃取”ATP时,AMPK活性会下降。因此,我们通过提出AMP激酶可由NDPK-A独立于AMP进行调节,提出了NDPK-A功能的新范式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/983c/2785893/9e0c2a10c73a/10863_2006_Article_9033_Fig1.jpg

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