Brickey W J, Greenleaf A L
Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.
Genetics. 1995 Jun;140(2):599-613. doi: 10.1093/genetics/140.2.599.
To understand the in vivo function of the unique and conserved carboxy-terminal repeat domain (CTD) of RNA polymerase II largest subunit (RpII215), we have studied RNA polymerase II biosynthesis, activity and genetic function in Drosophila RpII215 mutants that possessed all (C4), half (W81) or none (IIt) of the CTD repeats. We have discovered that steady-state mRNA levels from transgenes encoding a fully truncated, CTD-less subunit (IIt) are essentially equal to wild-type levels, whereas the levels of the CTD-less subunit itself and the amount of polymerase harboring it (Pol IIT) are significantly lower than wild type. In contrast, for the half-CTD mutant (W81), steady-state mRNA levels are somewhat lower than for wild type or IIt, while W81 subunit and polymerase amounts are much less than wild type. Finally, we have tested genetically the ability of CTD mutants to complement (rescue) partially functional RpII215 alleles and have found that IIt fails to complement whereas W81 complements partially to completely. These results suggest that removal of the entire CTD renders polymerase completely defective in vivo, whereas eliminating half of the CTD results in a polymerase with significant in vivo activity.
为了解RNA聚合酶II最大亚基(RpII215)独特且保守的羧基末端重复结构域(CTD)的体内功能,我们研究了果蝇RpII215突变体中RNA聚合酶II的生物合成、活性和遗传功能,这些突变体分别具有全部(C4)、一半(W81)或没有(IIt)CTD重复序列。我们发现,编码完全截短的、无CTD亚基(IIt)的转基因的稳态mRNA水平基本与野生型水平相等,而无CTD亚基本身的水平以及含有它的聚合酶(Pol IIT)的量则显著低于野生型。相比之下,对于半CTD突变体(W81),稳态mRNA水平略低于野生型或IIt,而W81亚基和聚合酶的量则远低于野生型。最后,我们通过遗传学方法测试了CTD突变体互补(拯救)部分功能缺陷的RpII215等位基因的能力,发现IIt无法互补,而W81能部分至完全互补。这些结果表明,去除整个CTD会使聚合酶在体内完全缺陷,而去除一半CTD会导致聚合酶在体内具有显著活性。