Huang Haomin, Yen Timothy J
Fox Chase Cancer Center, 333 Cottman Avenue, Philadelphia, PA 19111, USA.
Cell Cycle. 2009 Apr 15;8(8):1164-7. doi: 10.4161/cc.8.8.8151. Epub 2009 Apr 11.
BubR1 is a critical component of the mitotic checkpoint but has also been shown to play an essential role in establishing kinetochore:microtubule attachments. BubR1 is hyperphosphorylated in mitosis and recent studies in human and Xenopus have identified 9 phosphorylation sites. Plk1-dependent phosphorylations (T792, T1008 and S676) were reported to stimulate BubR1 kinase activity, promote kinetochore microtubule attachments, monitor kinetochore tension, as well as the recruitment of Mad2 checkpoint protein to kinetochores. Plk1-independent sites (S435, S543, S670 and S1043) were also identified and some of these were found to be sensitive to the loss of microtubule attachment but not tension. Functional studies showed that phosphorylation of S670 is critical for correcting aberrant attachments. Once end-on attachments are established, dephosphorylation of S670 appeared to be important for generating tension to signal anaphase onset. The collective data when combined with early EM studies that showed BubR1 is present at both the inner and outer kinetochore plates suggest that BubR1 maybe an effector of multiple kinases that specifies its roles in microtubule attachments and checkpoint functions.
BubR1是有丝分裂检查点的关键组成部分,但也已证明其在建立动粒:微管连接中起重要作用。BubR1在有丝分裂过程中发生超磷酸化,最近在人类和非洲爪蟾中的研究已鉴定出9个磷酸化位点。据报道,依赖于Plk1的磷酸化(T792、T1008和S676)可刺激BubR1激酶活性,促进动粒微管连接,监测动粒张力,以及将Mad2检查点蛋白募集到动粒。还鉴定出了不依赖于Plk1的位点(S435、S543、S670和S1043),其中一些位点被发现对微管连接的丧失敏感,但对张力不敏感。功能研究表明,S670的磷酸化对于纠正异常连接至关重要。一旦建立了端对端连接,S670的去磷酸化似乎对于产生张力以发出后期开始的信号很重要。这些汇总数据与早期的电子显微镜研究相结合,这些研究表明BubR1存在于内、外动粒板上,这表明BubR1可能是多种激酶的效应器,这些激酶决定了其在微管连接和检查点功能中的作用。