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Blimp-1Deltaexon7:一种具有自我调节潜力的天然存在的Blimp-1缺失突变体。

Blimp-1Deltaexon7: a naturally occurring Blimp-1 deletion mutant with auto-regulatory potential.

作者信息

Schmidt Doris, Nayak Arnab, Schumann Julia E, Schimpl Anneliese, Berberich Ingolf, Berberich-Siebelt Friederike

机构信息

University of Wuerzburg, Institute for Virology and Immunobiology, Versbacher Strasse 7, 97078, Wuerzburg, Germany.

出版信息

Exp Cell Res. 2008 Dec 10;314(20):3614-27. doi: 10.1016/j.yexcr.2008.09.008. Epub 2008 Sep 25.

Abstract

Blimp-1 is a master regulator of terminal B cell differentiation and plays a pivotal role in various developmental processes. In addition to full length Blimp-1, a Blimp-1 mRNA lacking exon 7 (Blimp-1Delta7) has been described to occur in murine B cells. The activity and function of the mutant mRNA-encoded protein (Blimp-1Delta7), lacking three crucial zinc fingers necessary for DNA interaction, is completely unknown. Since isoforms of other prdm family proteins affect each other's functions, we wondered whether Blimp-1Delta7 still plays a role in B cells, independent of direct DNA binding. In this study, we found that Blimp-1Delta7 is preferentially expressed in naïve CD19(+) B cells. A fraction of Blimp-1Delta7 migrates to the nucleus, colocalizes with HDAC2 and is found at sites of repressed chromatin, although it does not bind to the Blimp-1 DNA consensus site. Unexpectedly, Blimp-1 and Blimp-1Delta7 homodimerize as well as heterodimerize with each other. Ectopic expression of Blimp-1Delta7 in WEHI 231 cells, a Blimp-1-negative murine lymphoma line, leads to cessation of proliferation and enhancement of apoptosis. Importantly, LPS-induced differentiation is suppressed in the presence of Blimp-1Delta7. This is in agreement with our finding that Blimp-1Delta7 interferes with endogenous Blimp-1 expression. Thus, our data suggest an auto-regulatory mechanism of Blimp-1 activation.

摘要

Blimp-1是B细胞终末分化的主要调节因子,在各种发育过程中起关键作用。除了全长Blimp-1外,已发现在小鼠B细胞中存在一种缺少外显子7的Blimp-1 mRNA(Blimp-1Delta7)。突变的mRNA编码蛋白(Blimp-1Delta7)缺乏DNA相互作用所需的三个关键锌指,其活性和功能完全未知。由于其他prdm家族蛋白的异构体相互影响功能,我们想知道Blimp-1Delta7是否仍然在B细胞中发挥作用,而不依赖于直接的DNA结合。在本研究中,我们发现Blimp-1Delta7在未成熟的CD19(+) B细胞中优先表达。一部分Blimp-1Delta7迁移至细胞核,与HDAC2共定位,并存在于染色质抑制位点,尽管它不与Blimp-1 DNA共有位点结合。出乎意料的是,Blimp-1和Blimp-1Delta7能形成同型二聚体以及彼此间形成异型二聚体。在Blimp-1阴性的小鼠淋巴瘤细胞系WEHI 231细胞中异位表达Blimp-1Delta7会导致增殖停止并增强凋亡。重要的是,在存在Blimp-1Delta7的情况下,LPS诱导的分化受到抑制。这与我们发现Blimp-1Delta7干扰内源性Blimp-1表达的结果一致。因此,我们的数据提示了一种Blimp-1激活的自调节机制。

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