Schneider S, Schwer B
Department of Microbiology, Weill Medical College of Cornell University, New York, New York 10021, USA.
J Biol Chem. 2001 Jun 15;276(24):21184-91. doi: 10.1074/jbc.M101964200. Epub 2001 Mar 29.
The essential Saccharomyces cerevisiae PRP22 gene encodes a 1145-amino acid DEXH box RNA helicase. Prp22p plays two roles during pre-mRNA splicing as follows: it is required for the second transesterification step and for the release of mature mRNA from the spliceosome. Whereas the step 2 function of Prp22p does not require ATP hydrolysis, spliceosome disassembly is dependent on the ATPase and helicase activities. Here we delineate a minimal functional domain, Prp22(262-1145), that suffices for the activity of Prp22p in vivo when expressed under the natural PRP22 promoter and for pre-mRNA splicing activity in vitro. The biologically active domain lacks an S1 motif (residues 177-256) that had been proposed to play a role in RNA binding by Prp22p. The deletion mutant Prp22(351-1145) can function in vivo when provided at a high gene dosage. We suggest that the segment from residues 262 to 350 enhances Prp22p function in vivo, presumably by targeting Prp22p to the spliceosome. We characterize an even smaller catalytic domain, Prp22(466-1145) that suffices for ATP hydrolysis, RNA binding, and RNA unwinding in vitro and for nuclear localization in vivo but cannot by itself support cell growth. However, the ATPase/helicase domain can function in vivo if the N-terminal region Prp22(1-480) is co-expressed in trans.
酿酒酵母的必需基因PRP22编码一种含1145个氨基酸的DEXH盒RNA解旋酶。Prp22p在前体mRNA剪接过程中发挥两个作用,具体如下:它是第二次转酯反应步骤所必需的,也是从剪接体释放成熟mRNA所必需的。虽然Prp22p的第二步功能不需要ATP水解,但剪接体的解体依赖于ATP酶和解旋酶活性。在这里,我们确定了一个最小功能结构域Prp22(262 - 1145),当在天然PRP22启动子下表达时,它足以在体内发挥Prp22p的活性,并且在体外具有前体mRNA剪接活性。这个生物活性结构域缺少一个曾被认为在Prp22p与RNA结合中起作用的S1基序(第177 - 256位氨基酸残基)。缺失突变体Prp22(351 - 1145)在高基因剂量时可在体内发挥功能。我们认为,第262至350位氨基酸残基的片段增强了Prp22p在体内的功能,可能是通过将Prp22p靶向到剪接体来实现的。我们鉴定了一个更小的催化结构域Prp22(466 - 1145),它足以在体外进行ATP水解、RNA结合和RNA解旋,并且在体内具有核定位功能,但它本身不能支持细胞生长。然而,如果N端区域Prp22(1 - 480)反式共表达,ATP酶/解旋酶结构域可以在体内发挥功能。