Fujimura Ken, Katahira Jun, Kano Fumi, Yoneda Yoshihiro, Murata Masayuki
Department of Life Sciences, Graduate School of Arts and Sciences, University of Tokyo, 3-8-1 Komaba, Meguro-ku, Tokyo 153-8902, Japan.
Biochim Biophys Acta. 2009 May;1793(5):878-87. doi: 10.1016/j.bbamcr.2009.02.002. Epub 2009 Feb 20.
Processing bodies (P-bodies) are cytoplasmic domains that have been implicated in critical steps of the regulation of gene expression, including mRNA decay and post-transcriptional gene silencing. Previously, we reported that PCBP2 (Poly-(rC) Binding Protein 2), a facilitator of IRES-mediated translation, is a novel P-body component. Interestingly, PCBP2 is recruited to only a subset of Dcp1a-positive P-bodies, which may reflect functional diversity among these structures. In this study, we examined the selective P-body localization of PCBP2 in detail. Co-localization studies between Dcp1a and PCBP2 revealed that PCBP2 is present in approximately 40% of P-bodies. While PCBP2 was more likely to reside in larger P-bodies, P-body size did not seem to be the sole determinant, and puromycin-induced enlargement of P-bodies only modestly increased the percentage of PCBP2-positive P-bodies. Photobleaching experiments demonstrated that the accumulation of PCBP2 to specific P-bodies is a dynamic process, which does not involve the protein's transcription-dependent nucleo-cytoplasmic shuttling activity. Finally, we found that PCBP1, a close relative of PCBP2, localizes to P-bodies in a similar manner to PCBP2. Taken together, these results establish the compositional diversity among P-bodies, and that PCBP2, probably in complex with other mRNP factors, may dynamically recognize such differences and accumulate to specific P-bodies.
加工小体(P小体)是细胞质结构域,与基因表达调控的关键步骤有关,包括mRNA降解和转录后基因沉默。此前,我们报道过PCBP2(聚(rC)结合蛋白2),一种IRES介导翻译的促进因子,是一种新型的P小体成分。有趣的是,PCBP2仅被招募到Dcp1a阳性P小体的一个亚群中,这可能反映了这些结构之间的功能多样性。在本研究中,我们详细研究了PCBP2在P小体中的选择性定位。Dcp1a和PCBP2之间的共定位研究表明,PCBP2存在于约40%的P小体中。虽然PCBP2更有可能存在于较大的P小体中,但P小体大小似乎不是唯一的决定因素,嘌呤霉素诱导的P小体增大仅适度增加了PCBP2阳性P小体的百分比。光漂白实验表明,PCBP2在特定P小体中的积累是一个动态过程,不涉及该蛋白的转录依赖性核质穿梭活性。最后,我们发现PCBP2的近亲PCBP1以与PCBP2相似的方式定位于P小体。综上所述,这些结果确立了P小体之间的组成多样性,并且PCBP2可能与其他mRNP因子形成复合物,动态识别这些差异并积累到特定的P小体中。