Wang Qiang, Hobbs Kathryn, Lynn Bert, Rymond Brian C
Department of Biology, University of Kentucky, Lexington 40506-0225, USA.
J Biol Chem. 2003 Mar 7;278(10):7875-83. doi: 10.1074/jbc.M210839200. Epub 2002 Dec 31.
Spliceosome assembly follows a well conserved pathway of subunit addition that includes both small nuclear ribonucleoprotein (snRNP) particles and non-snRNP splicing factors. Clf1p is an unusual splicing factor composed almost entirely of direct repeats of the tetratricopeptide repeat (TPR) protein-binding motif. Here we show that the Clf1p protein resides in at least two multisubunit protein complexes, a small nuclear RNA-free structure similar to what was reported as the Prp19p complex (nineteen complex; NTC) and an RNP structure that contains the U2, U5, and U6 small nuclear RNAs. Thirty Ccf (Clf1p complex factor) proteins have been identified by mass spectroscopy or immune detection as known or suspected components of the yeast spliceosome. Deletion of TPR1 or TPR2 from an epitope-tagged Clf1p protein (i.e. Clf1Delta2-TAP) destabilizes Clf1p complexes assembled in vivo, causing the release of the Cef1p and Prp19p NTC factors and decreased association of the Rse1p, Snu114p, and Hsh155p snRNP proteins. In vitro, temperature inactivation of Clf1Delta2p impairs the prespliceosome to spliceosome transition and prevents Prp19p recruitment to the splicing complex. These and related data support the view that the poly-TPR Clf1p splicing factor promotes the functional integration of the U4/U6.U5 tri-snRNP particle into the U1-, U2-dependent prespliceosome.
剪接体组装遵循一条保守的亚基添加途径,该途径包括小核核糖核蛋白(snRNP)颗粒和非snRNP剪接因子。Clf1p是一种不同寻常的剪接因子,几乎完全由四肽重复序列(TPR)蛋白结合基序的直接重复序列组成。在这里,我们表明Clf1p蛋白存在于至少两种多亚基蛋白复合物中,一种是不含小核RNA的结构,类似于报道的Prp19p复合物(十九复合物;NTC),另一种是包含U2、U5和U6小核RNA的RNP结构。通过质谱或免疫检测已鉴定出30种Ccf(Clf1p复合物因子)蛋白是酵母剪接体已知或疑似的组成成分。从表位标记的Clf1p蛋白(即Clf1Delta2-TAP)中删除TPR1或TPR2会使体内组装的Clf1p复合物不稳定,导致Cef1p和Prp19p NTC因子释放,并降低Rse1p、Snu114p和Hsh155p snRNP蛋白的结合。在体外,Clf1Delta2p的温度失活会损害前剪接体向剪接体的转变,并阻止Prp19p募集到剪接复合物中。这些及相关数据支持这样一种观点,即多TPR的Clf1p剪接因子促进U4/U6.U5三snRNP颗粒功能整合到依赖U1、U2的前剪接体中。