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解析多形性胶质母细胞瘤细胞中 Mad4 的复杂调控。

Dissecting the complex regulation of Mad4 in glioblastoma multiforme cells.

机构信息

Department of Radiation Oncology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Cancer Biol Ther. 2012 Nov;13(13):1339-48. doi: 10.4161/cbt.21814. Epub 2012 Aug 16.

Abstract

Among proteins in the c-Myc/Max/Mad/Sin3 regulatory complex, Mad4 and Sin3B are routinely detected in human glioblastoma multiforme (GBM) cell lines. In response to gamma radiation, the expression of Sin3B and Mad4 in GBM cells was upregulated in parallel over time, suggesting that Sin3B may play a role in the regulation of Mad4 stability. In agreement with this hypothesis, exogenously expressed Sin3B significantly stabilized co-transfected Mad4 and, to a lesser extent, endogenous Mad4. In addition, siRNA silencing of Sin3B induced an increase in the expression of c-Myc and Sin3A, which contributed to increased expression of Mad4. Simultaneous silencing of Sin3B, Sin3A and c-Myc decreased Mad4 stability to a greater extent than silencing of Sin3B alone. Although Mad1 was reported to be a target of c-IAP1 E3 ligase activity for degradation, the E3 ligase activity of c-IAP1 was not required for downregulation of Mad4 expression. The association of c-IAP1 with Sin3B or Mad4 suggested that Sin3B might interfere with the binding of c-IAP1 to Mad4; however, overexpression of Sin3B did not affect the interaction between Mad4 and c-IAP1. Instead, direct binding of Sin3B to c-IAP1 may protect Mad4 from degradation by c-IAP1, leading to enhanced stability of Mad4. Exogenous expression of Sin3B also inhibited c-IAP1-mediated degradation of Mad1, TRAF2, c-IAP2 and ASK1, known targets of c-IAP1 E3 ligase activity. These results indicate that Sin3B, together with other c-Myc regulatory members, maintain the steady-state level of Mad4, in part through inhibition of c-IAP1-mediated degradation of Mad4.

摘要

在 c-Myc/Max/Mad/Sin3 调控复合物中的蛋白质中,Mad4 和 Sin3B 在人多形性胶质母细胞瘤 (GBM) 细胞系中通常被检测到。在γ辐射的作用下,GBM 细胞中 Sin3B 和 Mad4 的表达随时间平行上调,表明 Sin3B 可能在 Mad4 稳定性的调控中发挥作用。与这一假设一致,外源性表达的 Sin3B 显著稳定了共转染的 Mad4,并在较小程度上稳定了内源性 Mad4。此外,SiRNA 沉默 Sin3B 诱导 c-Myc 和 Sin3A 的表达增加,这有助于 Mad4 的表达增加。同时沉默 Sin3B、Sin3A 和 c-Myc 导致 Mad4 稳定性的降低程度大于单独沉默 Sin3B。尽管 Mad1 被报道是 c-IAP1 E3 连接酶活性降解的靶标,但 c-IAP1 的 E3 连接酶活性对于 Mad4 表达的下调不是必需的。c-IAP1 与 Sin3B 或 Mad4 的结合表明 Sin3B 可能干扰 c-IAP1 与 Mad4 的结合;然而,Sin3B 的过表达并不影响 Mad4 与 c-IAP1 之间的相互作用。相反,Sin3B 与 c-IAP1 的直接结合可能保护 Mad4 免受 c-IAP1 的降解,从而导致 Mad4 稳定性增强。外源性表达 Sin3B 还抑制了 c-IAP1 介导的 Mad1、TRAF2、c-IAP2 和 ASK1 的降解,这是 c-IAP1 E3 连接酶活性的已知靶标。这些结果表明,Sin3B 与其他 c-Myc 调控成员一起,维持 Mad4 的稳态水平,部分通过抑制 c-IAP1 介导的 Mad4 降解。

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