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证据表明,截断的 TrkB 同种型 TrkB-Shc 可以调节磷酸化 TrkB 蛋白水平。

Evidence that truncated TrkB isoform, TrkB-Shc can regulate phosphorylated TrkB protein levels.

机构信息

Illawarra Health and Medical Research Institute and the School of Biological Sciences, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Biochem Biophys Res Commun. 2012 Apr 6;420(2):331-5. doi: 10.1016/j.bbrc.2012.02.159. Epub 2012 Mar 7.

Abstract

Tropomyosin receptor kinase B (TrkB) is best known as the receptor for brain-derived neurotrophic factor (BDNF). In humans, three major isoforms of TrkB, the full-length receptor (TrkB-TK+) and two C-terminal truncated receptors (TrkB-TK- and TrkB-Shc) are expressed in various tissues. In comparison to TrkB-TK+ and TrkB-TK-, TrkB-Shc is less well characterized. In this study, we analyzed the biological function of the TrkB-Shc receptor in response to exogenous BDNF treatment. In experiments transiently overexpressing TrkB-Shc in CHOK1 cells, we found that TrkB-Shc protein levels were rapidly decreased when cells were exposed to exogenous BDNF. When we assessed the functional impact of TrkB-Shc on TrkB-TK+ activity, we found that phosphorylated TrkB-TK+ protein levels were significantly decreased in the presence of TrkB-Shc and moreso following BDNF exposure. Interestingly, while the reduction of phosphorylated TrkB-TK+ protein was more pronounced in the presence of TrkB-Shc following BDNF exposure, the stability of TrkB-Shc protein itself was increased. Our findings suggest that cells may increase TrkB-Shc protein levels in response to exogenous BDNF exposure to regulate TrkB-TK+ activity by increasing degradation of activated receptor complexes as a means to prevent overactivation or inappropriate temporal and spatial activation of BDNF/TrkB-TK+ signaling.

摘要

原肌球蛋白受体激酶 B(TrkB)作为脑源性神经营养因子(BDNF)的受体而广为人知。在人类中,TrkB 有三种主要的同工型,全长受体(TrkB-TK+)和两种 C 端截断受体(TrkB-TK-和 TrkB-Shc),在各种组织中表达。与 TrkB-TK+和 TrkB-TK-相比,TrkB-Shc 的特征研究较少。在这项研究中,我们分析了外源性 BDNF 处理后 TrkB-Shc 受体的生物学功能。在 CHOK1 细胞中转染瞬时过表达 TrkB-Shc 的实验中,我们发现当细胞暴露于外源性 BDNF 时,TrkB-Shc 蛋白水平迅速下降。当我们评估 TrkB-Shc 对 TrkB-TK+活性的功能影响时,我们发现存在 TrkB-Shc 时,磷酸化 TrkB-TK+蛋白水平显著降低,而在 BDNF 暴露后更为明显。有趣的是,虽然在 BDNF 暴露后存在 TrkB-Shc 时磷酸化 TrkB-TK+蛋白的减少更为明显,但 TrkB-Shc 蛋白本身的稳定性增加。我们的研究结果表明,细胞可能会增加 TrkB-Shc 蛋白水平以响应外源性 BDNF 暴露,通过增加激活的受体复合物的降解来调节 TrkB-TK+活性,从而防止 BDNF/TrkB-TK+信号过度激活或不适当的时空激活。

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