McPheeters D S, Abelson J
Division of Biology, California Institute of Technology, Pasadena 91125.
Cell. 1992 Nov 27;71(5):819-31. doi: 10.1016/0092-8674(92)90557-s.
We have used an in vitro reconstitution system to determine the effects of a large number of mutations in the highly conserved 5' terminal domain of the yeast U2 snRNA on pre-mRNA splicing. Whereas many mutations have little or no functional consequence, base substitutions in two regions were found to have drastic effects on pre-mRNA splicing. A previously unrecognized function for the U2 snRNA in the second step of splicing was found by alteration of the absolutely conserved sequence AGA upstream of the branch point recognition sequence. The effects of these mutations suggest the formation of a structure involving the U2 snRNA similar to the guanosine-binding site found in the catalytic core of group I introns.
我们利用体外重组系统来确定酵母U2小核仁RNA(snRNA)高度保守的5'末端结构域中的大量突变对前体mRNA剪接的影响。虽然许多突变几乎没有或没有功能后果,但发现两个区域的碱基替换对前体mRNA剪接有显著影响。通过改变分支点识别序列上游绝对保守的AGA序列,发现了U2 snRNA在剪接第二步中一个以前未被认识的功能。这些突变的影响表明形成了一种涉及U2 snRNA的结构,类似于在I组内含子催化核心中发现的鸟苷结合位点。