Wolff T, Menssen R, Hammel J, Bindereif A
Max-Planck-Institut für Molekulare Genetik, Otto-Warburg-Laboratorium, Berlin (Dahlem), Federal Republic of Germany.
Proc Natl Acad Sci U S A. 1994 Feb 1;91(3):903-7. doi: 10.1073/pnas.91.3.903.
On the basis of mutational analyses in yeast, the highly conserved ACAGAGA sequence of U6 small nuclear RNA (snRNA) and the adjacent U6-U2 helix I have been proposed to be part of the active center of the spliceosome. We report here a detailed analysis of the human U6 snRNA sequence requirements during the first and second step of splicing, using a mammalian in vitro splicing-complementation system and a mutational approach. Positions A53G54C55 (helix Ib) were identified as important specifically for the first step, but not for spliceosome assembly. A45 of the ACAGAGA sequence and U52 of helix Ia function during the second step; in addition, the bulge separating helices Ia and Ib appears critical for the second step. In contrast, no splicing-essential sequences could be identified in the central domain upstream of the ACAGAGA sequence. In sum, our data demonstrate for the mammalian splicing system that discrete positions within the ACAGAGA sequence and helix I of U6 snRNA function during the first and second step of splicing, suggesting that these two sequence elements are closely associated with the catalytic center of the spliceosome. Comparison with previous results in yeast indicates a fundamental conservation of the U6 snRNA function in the pre-mRNA splicing mechanism.
基于酵母中的突变分析,U6小核RNA(snRNA)高度保守的ACAGAGA序列以及相邻的U6-U2螺旋I被认为是剪接体活性中心的一部分。我们在此报告,利用哺乳动物体外剪接互补系统和突变方法,对剪接第一步和第二步过程中人类U6 snRNA的序列要求进行了详细分析。位置A53G54C55(螺旋Ib)被确定为对第一步特别重要,但对剪接体组装不重要。ACAGAGA序列的A45和螺旋Ia的U52在第二步发挥作用;此外,分隔螺旋Ia和Ib的凸起似乎对第二步至关重要。相比之下,在ACAGAGA序列上游的中央结构域中未发现剪接必需序列。总之,我们的数据表明,对于哺乳动物剪接系统,U6 snRNA的ACAGAGA序列和螺旋I中的离散位置在剪接第一步和第二步发挥作用,这表明这两个序列元件与剪接体的催化中心密切相关。与酵母先前的结果比较表明,U6 snRNA在mRNA前体剪接机制中的功能具有基本保守性。