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Sp100的移动病灶不包含PML:PML小体是固定不动的,但PML和Sp100蛋白并非如此。

Mobile foci of Sp100 do not contain PML: PML bodies are immobile but PML and Sp100 proteins are not.

作者信息

Wiesmeijer Karien, Molenaar Chris, Bekeer Ivory M L A, Tanke Hans J, Dirks Roeland W

机构信息

Department of Molecular Cell Biology, Leiden University Medical Center, Wassenaarseweg 72, Leiden, 2333 AL, The Netherlands.

出版信息

J Struct Biol. 2002 Oct-Dec;140(1-3):180-8. doi: 10.1016/s1047-8477(02)00529-4.

Abstract

PML bodies are nuclear organelles that are associated with various diseases and are suggested to be involved in multiple cellular activities including transcriptional regulation, apoptosis, and antiviral defence. Because many proteins with different functions aggregate in PML bodies, it has also been suggested that these bodies function as nuclear depots. Some proteins consistently found in PML bodies may form a stable scaffold that regulates the recruitment of other proteins. Thus, some proteins might be stably integrated into PML bodies while others continuously exchange with the nucleoplasm. To study the dynamic properties of PML bodies and resident proteins, we constructed fusion proteins of Sp100, PML, and CBP with autofluorescent proteins. Using time-lapse imaging, we show that PML bodies exhibit little movement but that small foci that contain Sp100 but not PML are dynamic and fuse with PML bodies. Furthermore, we show by monitoring fluorescence recovery after photobleaching that Sp100, PML, and CBP are dynamic components of PML bodies. This suggests that these proteins do not play a strict structural role in these bodies but that they function at other sites in the nucleoplasm.

摘要

早幼粒细胞白血病(PML)小体是一种核细胞器,与多种疾病相关,并且被认为参与包括转录调控、细胞凋亡和抗病毒防御在内的多种细胞活动。由于许多具有不同功能的蛋白质聚集在PML小体中,也有人提出这些小体起着核仓库的作用。一些在PML小体中持续发现的蛋白质可能形成一个稳定的支架,调节其他蛋白质的募集。因此,一些蛋白质可能稳定地整合到PML小体中,而其他蛋白质则不断地与核质进行交换。为了研究PML小体和驻留蛋白的动态特性,我们构建了Sp100、PML和CBP与自发荧光蛋白的融合蛋白。利用延时成像技术,我们发现PML小体几乎不移动,但含有Sp100而不含有PML的小斑点是动态的,并与PML小体融合。此外,通过监测光漂白后的荧光恢复,我们发现Sp100、PML和CBP是PML小体的动态成分。这表明这些蛋白质在这些小体中并不起严格的结构作用,而是在核质的其他位点发挥功能。

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