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线粒体ATAD3A与GRP78结合以调节促进WASF3转移的蛋白。

Mitochondrial ATAD3A combines with GRP78 to regulate the WASF3 metastasis-promoting protein.

作者信息

Teng Y, Ren X, Li H, Shull A, Kim J, Cowell J K

机构信息

Cancer Center, Georgia Regents University, Augusta, GA 30912, USA.

Department of Biochemistry and Molecular Biology, Georgia Regents University, Augusta, GA 30912, USA.

出版信息

Oncogene. 2016 Jan 21;35(3):333-43. doi: 10.1038/onc.2015.86. Epub 2015 Mar 30.

Abstract

AAA domain containing 3A (ATAD3A) is an integral mitochondrial membrane protein with unknown function, although we now show that high-level expression is associated with poor survival in breast cancer patients. Using a mass spectrometry approach we have demonstrated that ATAD3A interacts with the WASF3 metastasis-promoting protein. Knockdown of ATAD3A leads to decreased WASF3 protein levels in breast and colon cancer cells. Silencing ATAD3A also results in loss of both cell anchorage-independent growth and invasion and suppression of tumor growth and metastasis in vivo using immuno-compromised mice. HSP70 is responsible for stabilizing WASF3 in the cytoplasm, but inactivation of HSP70 does not lead to the loss of WASF3 stability at the mitochondrial membrane, where presumably it is protected through its interaction with ATAD3A. In response to endoplasmic reticulum (ER) stress, increases in the GRP78 protein level leads to increased WASF3 protein levels. We also show that ATAD3A was present in a WASF3-GRP78 complex, and suppression of GRP78 led to destabilization of WASF3 at the mitochondrial membrane, which was ATAD3A dependent. Furthermore, ATAD3A-mediated suppression of CDH1/E-cadherin occurs through its regulation of GRP78-mediated WASF3 stability. Proteolysis experiments using isolated mitochondria demonstrates the presence of the N-terminal end of WASF3 within the mitochondria, which is the interaction site with the N-terminal end of ATAD3A. It appears, therefore, that stabilization of WASF3 function occurs through its interaction with ATAD3A and GRP78, which may provide a bridge between the ER and mitochondria, allowing communication between the two organelles. These findings also suggest that pharmacologic inhibition of ATAD3A could be an effective therapeutic strategy to treat human cancer.

摘要

含AAA结构域的3A蛋白(ATAD3A)是一种线粒体内膜整合蛋白,功能未知,不过我们现在发现其高表达与乳腺癌患者的不良预后相关。通过质谱分析方法,我们证实ATAD3A与促进转移的WASF3蛋白相互作用。敲低ATAD3A会导致乳腺癌和结肠癌细胞中WASF3蛋白水平降低。沉默ATAD3A还会导致细胞非锚定依赖性生长和侵袭能力丧失,并在免疫缺陷小鼠体内抑制肿瘤生长和转移。HSP70负责在细胞质中稳定WASF3,但HSP70失活不会导致WASF3在线粒体外膜的稳定性丧失,推测它通过与ATAD3A的相互作用受到保护。内质网(ER)应激时,GRP78蛋白水平升高会导致WASF3蛋白水平升高。我们还发现ATAD3A存在于WASF3 - GRP78复合物中,抑制GRP78会导致WASF3在线粒体外膜不稳定,这依赖于ATAD3A。此外,ATAD3A介导的CDH1/E - 钙黏蛋白抑制是通过其对GRP78介导的WASF3稳定性的调节实现的。使用分离线粒体进行的蛋白水解实验表明线粒体中存在WASF3的N末端,这是与ATAD3A的N末端相互作用的位点。因此,WASF3功能的稳定似乎是通过其与ATAD3A和GRP78的相互作用实现的,这可能在ER和线粒体之间架起一座桥梁,使两个细胞器之间能够进行通讯。这些发现还表明,对ATAD3A进行药理抑制可能是治疗人类癌症的有效治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb46/4828935/cce162a58c88/nihms665504f1.jpg

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