Gall J G, Tsvetkov A, Wu Z, Murphy C
Department of Embryology, Carnegie Institution, Baltimore, Maryland 21210.
Dev Genet. 1995;16(1):25-35. doi: 10.1002/dvg.1020160107.
We present evidence for the essential homology of four nuclear organelles that have previously been described under four different names: coiled bodies in mammalian somatic nuclei, prenucleolar bodies in nuclei assembled in vitro in Xenopus egg extract, sphere organelles in amphibian germinal vesicles (GVs), and Binnenkörper in insect GVs. Each of these organelles contains coilin or a coilin-related protein plus a variety of small nuclear ribonucleoproteins. We suggest that the sphere organelle/coiled body is a "universal" nuclear component in the sense that it is involved in common nuclear processes and hence will be found in one form or another in most eukaryotic cells. We postulate that it functions in the assembly and sorting of snRNP complexes for three RNA processing pathways: pre-mRNA splicing, rRNA processing, and histone pre-mRNA 3' end formation. Specifically, the sphere organelle/coiled body may be the initial site for assembly of processing complexes, which are then sorted to other places in the nucleus, where the actual RNA processing takes place.
我们提供了证据,证明四种核细胞器具有本质上的同源性,它们此前曾被用四个不同的名称来描述:哺乳动物体细胞核中的卷曲小体、在非洲爪蟾卵提取物中体外组装的细胞核中的前核仁体、两栖动物生殖泡(GVs)中的球形细胞器以及昆虫GVs中的内体。这些细胞器中的每一个都含有卷曲螺旋蛋白或与卷曲螺旋蛋白相关的蛋白质,以及多种小核核糖核蛋白。我们认为,球形细胞器/卷曲小体是一种“通用”的核成分,因为它参与了常见的核过程,因此在大多数真核细胞中都会以某种形式存在。我们推测,它在三种RNA加工途径的snRNP复合体的组装和分类中发挥作用:前体mRNA剪接、rRNA加工和组蛋白前体mRNA 3'末端形成。具体而言,球形细胞器/卷曲小体可能是加工复合体组装的初始位点,然后这些复合体被分类到细胞核中的其他位置,在那里进行实际的RNA加工。