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需要动态循环与独特的 Hsp90/Hsp70 依赖性伴侣蛋白机器和 GAPDH 一起作用,才能将血红素插入并激活神经元型一氧化氮合酶。

Dynamic cycling with a unique Hsp90/Hsp70-dependent chaperone machinery and GAPDH is needed for heme insertion and activation of neuronal NO synthase.

机构信息

Department of Pharmacology, University of Michigan Medical School, Ann Arbor, Michigan, USA.

Department of Pharmacology, University of Michigan Medical School, Ann Arbor, Michigan, USA.

出版信息

J Biol Chem. 2023 Feb;299(2):102856. doi: 10.1016/j.jbc.2022.102856. Epub 2022 Dec 31.

DOI:10.1016/j.jbc.2022.102856
PMID:36596358
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9922822/
Abstract

Heat shock protein 90 (Hsp90) is known to mediate heme insertion and activation of heme-deficient neuronal nitric oxide (NO) synthase (apo-nNOS) in cells by a highly dynamic interaction that has been extremely difficult to study mechanistically with the use of subcellular systems. In that the heme content of many critical hemeproteins is regulated by Hsp90 and the heme chaperone GAPDH, the development of an in vitro system for the study of this chaperone-mediated heme regulation would be extremely useful. Here, we show that use of an antibody-immobilized apo-nNOS led not only to successful assembly of chaperone complexes but the ability to show a clear dependence on Hsp90 and GAPDH for heme-mediated activation of apo-nNOS. The kinetics of binding for Hsp70 and Hsp90, the ATP and K dependence, and the absolute requirement for Hsp70 in assembly of Hsp90•apo-nNOS heterocomplexes all point to a similar chaperone machinery to the well-established canonical machine regulating steroid hormone receptors. However, unlike steroid receptors, the use of a purified protein system containing Hsp90, Hsp70, Hsp40, Hop, and p23 is unable to activate apo-nNOS. Thus, heme insertion requires a unique Hsp90-chaperone complex. With this newly developed in vitro system, which recapitulates the cellular process requiring GAPDH as well as Hsp90, further mechanistic studies are now possible to better understand the components of the Hsp90-based chaperone system as well as how this heterocomplex works with GAPDH to regulate nNOS and possibly other hemeproteins.

摘要

热休克蛋白 90(Hsp90)已知通过高度动态的相互作用介导血红素插入和血红素缺乏的神经元型一氧化氮合酶(apo-nNOS)的激活,这种相互作用在使用亚细胞系统进行机制研究时极其困难。由于许多关键血红素蛋白的血红素含量受 Hsp90 和血红素伴侣 GAPDH 的调节,因此开发用于研究这种伴侣介导的血红素调节的体外系统将是非常有用的。在这里,我们表明,使用抗体固定化的 apo-nNOS 不仅导致伴侣复合物的成功组装,而且还能够清楚地显示出对 Hsp90 和 GAPDH 的依赖性,以实现 apo-nNOS 的血红素介导激活。Hsp70 和 Hsp90 的结合动力学、ATP 和 K 的依赖性以及 Hsp70 在 Hsp90•apo-nNOS 异源复合物组装中的绝对要求,都指向与调节类固醇激素受体的成熟经典机器类似的伴侣机制。然而,与类固醇受体不同的是,使用包含 Hsp90、Hsp70、Hsp40、Hop 和 p23 的纯化蛋白系统无法激活 apo-nNOS。因此,血红素插入需要独特的 Hsp90 伴侣复合物。利用这个新开发的体外系统,它再现了需要 GAPDH 以及 Hsp90 的细胞过程,现在可以进行进一步的机制研究,以更好地理解 Hsp90 为基础的伴侣系统的组成部分,以及这种异源复合物如何与 GAPDH 一起调节 nNOS 以及可能的其他血红素蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/b4b068edce56/gr4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/39fdc2ae7aab/gr1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/6cdc5e383cf2/gr2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/bd02b30cc683/gr3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/b4b068edce56/gr4.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/39fdc2ae7aab/gr1.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/6cdc5e383cf2/gr2.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/bd02b30cc683/gr3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0baa/9922822/b4b068edce56/gr4.jpg

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