Ortlepp D, Laggerbauer B, Müllner S, Achsel T, Kirschbaum B, Lührmann R
HMR Deutschland GmbH Biotechnologie, Zentrum für angewandte Genomforschung, Martinsried, Germany.
RNA. 1998 Aug;4(8):1007-18. doi: 10.1017/s1355838298980554.
Prp2p, Prp16p, Prp22p, and Prp43p are members of the DEAH-box family of ATP-dependent putative RNA helicases required for pre-mRNA splicing in Saccharomyces cerevisiae. Recently, mammalian homologues of Prp43p and Prp22p have been described, supporting the idea that splicing in yeast and man is phylogenetically conserved. In this study, we show that a murine cell line resistant to the novel immunoregulatory drug Leflunomide (Arava) overexpresses a 135-kDa protein that is a putative DEAH-box RNA helicase. We have cloned the human counterpart of this protein and show that it shares pronounced sequence homology with Prp16p. Apart from its N-terminal domain, which is rich in RS, RD, and RE dipeptides, this human homologue of Prp16p (designated hPrp16p) is 41% identical to Prp16p. Significantly, homology is not only observed within the phylogenetically conserved helicase domain, but also in Prp16p-specific sequences. Immunofluorescence microscopy studies demonstrated that hPrp16p co-localizes with snRNPs in subnuclear structures referred to as speckles. Antibodies specific for hPrp16p inhibited pre-mRNA splicing in vitro prior to the second step. Thus, like its yeast counterpart, hPrp16p also appears to be required for the second catalytic step of splicing. Taken together, our data indicate that the human 135-kDa protein identified here is the structural and functional homologue of the yeast putative RNA helicase, Prp16p.
Prp2p、Prp16p、Prp22p和Prp43p是酿酒酵母中前体mRNA剪接所需的ATP依赖性假定RNA解旋酶DEAH盒家族的成员。最近,已描述了Prp43p和Prp22p的哺乳动物同源物,这支持了酵母和人类剪接在系统发育上保守的观点。在本研究中,我们发现对新型免疫调节药物来氟米特(爱若华)耐药的小鼠细胞系过表达一种135 kDa的蛋白质,该蛋白质是一种假定的DEAH盒RNA解旋酶。我们克隆了该蛋白质的人类对应物,并表明它与Prp16p具有明显的序列同源性。除了其富含RS、RD和RE二肽的N端结构域外,这种Prp16p的人类同源物(命名为hPrp16p)与Prp16p的同一性为41%。值得注意的是,不仅在系统发育保守的解旋酶结构域内观察到同源性,而且在Prp16p特异性序列中也观察到同源性。免疫荧光显微镜研究表明,hPrp16p与核内小分子核糖核蛋白(snRNP)共定位于称为斑点的亚核结构中。针对hPrp16p的特异性抗体在第二步之前抑制了体外前体mRNA剪接。因此,与酵母对应物一样,hPrp16p似乎也是剪接第二步催化所必需的。综上所述,我们的数据表明,此处鉴定的人类135 kDa蛋白质是酵母假定RNA解旋酶Prp16p的结构和功能同源物。