Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Calgary, Calgary, Alberta, Canada T2N 4N1.
Int J Biochem Cell Biol. 2010 Jun;42(6):828-43. doi: 10.1016/j.biocel.2009.11.018. Epub 2009 Nov 26.
GW bodies (glycine- and tryptophan-rich cytoplasmic bodies; also known as mammalian processing (P) or Dcp-containing bodies) were described in 2002 when a human autoimmune serum was used to immunoscreen a HeLa expression library. Subsequently, many investigators have focused their attention on elucidating the components and functional relevance of this ribonucleoprotein (RNP)-containing cytoplasmic microdomain to cellular and molecular biology, developmental and pathological processes, and clinical practice. GW/P body components are now known to be involved in the post-transcriptional processing of messenger RNA (mRNA) through the RNA interference pathway, 5'-->3' mRNA degradation as well as mRNA transport and stabilization. It is currently thought that the relevant mRNA silencing and degrading factors are partitioned to these restricted cytoplasmic microdomains thus effecting post-transcriptional regulation and the prevention of accidental degradation of functional mRNA. Although much attention has focused on GW/P bodies, other cytoplasmic RNP bodies, which have highly specialized functions, interact or co-localize with components of GW/P bodies. These include neuronal transport RNP granules, stress granules, RNP-rich cytoplasmic germline granules or chromatoid bodies, sponge bodies, cytoplasmic prion protein-induced RNP granules, U bodies and TAM bodies. This review will focus on the similarities and differences of the various cytoplasmic RNP granules as an approach to understanding their functional relationships to GW/P bodies.
GW 体(甘氨酸和色氨酸丰富的细胞质体;也称为哺乳动物加工 (P) 或含 Dcp 的体)于 2002 年被描述,当时使用人类自身免疫血清对 HeLa 表达文库进行免疫筛选。此后,许多研究人员将注意力集中在阐明这种含有核糖核蛋白 (RNP) 的细胞质微区室在细胞和分子生物学、发育和病理过程以及临床实践中的成分和功能相关性上。现在已知 GW/P 体成分通过 RNA 干扰途径、5'-->3' mRNA 降解以及 mRNA 运输和稳定参与信使 RNA (mRNA) 的转录后加工。目前认为,相关的 mRNA 沉默和降解因子被分配到这些受限的细胞质微区室中,从而影响转录后调节和防止功能性 mRNA 的意外降解。尽管人们对 GW/P 体给予了高度关注,但其他具有高度专业化功能的细胞质 RNP 体与 GW/P 体的成分相互作用或共定位。这些包括神经元运输 RNP 颗粒、应激颗粒、富含 RNP 的细胞质生殖细胞颗粒或染色质体、海绵体、细胞质朊病毒蛋白诱导的 RNP 颗粒、U 体和 TAM 体。这篇综述将重点介绍各种细胞质 RNP 颗粒的相似性和差异性,以此来理解它们与 GW/P 体的功能关系。