Li Z, Brow D A
Department of Biomolecular Chemistry, University of Wisconsin Medical School, Madison 53706-1532, USA.
RNA. 1996 Sep;2(9):879-94.
U6 RNA enters the spliceosome base paired with U4 RNA, but dissociates from U4 RNA before the catalytic steps of splicing. We have identified a cold-sensitive lethal mutation in U4 RNA (U4-cs1) that blocks the splicing pathway after U4/U6 complex formation, but before the first catalytic step of splicing. Remarkably, selection for suppressors of the cold-sensitive growth of the U4-cs1 strain yielded a tandem duplication of the highly conserved ACAGA sequence of U6 RNA (U6-Dup). The ACAGA sequence plays an essential role in spliceosome assembly and in the second catalytic step of pre-mRNA splicing; one or both of these roles involves direct base pairing to the pre-mRNA 5' splice site. In a U4-cs1/U6-Dup double-mutant strain grown at low temperature, the upstream ACAGA sequence of U6 RNA is required for suppression of the U4 mutation, whereas the downstream ACAGA sequence is required for other essential functions. Based on the sequence requirements for function of the upstream ACAGA element of U6-Dup, we propose that it pairs with the pre-mRNA 5' splice site during incorporation of the U4/U6 complex into the spliceosome and that the subsequent dissociation of U4 RNA exposes the downstream ACAGA sequence, which functions in the catalytic steps. The properties of this mutant U4/U6 complex provide compelling in vivo evidence that U6 RNA normally base pairs with the 5' splice site before disruption of its pairing with U4 RNA.
U6 RNA与U4 RNA碱基配对进入剪接体,但在剪接的催化步骤之前与U4 RNA解离。我们在U4 RNA中鉴定出一个冷敏感致死突变(U4-cs1),该突变在U4/U6复合物形成后但在剪接的第一个催化步骤之前阻断剪接途径。值得注意的是,对U4-cs1菌株冷敏感生长的抑制子进行筛选,得到了U6 RNA高度保守的ACAGA序列的串联重复(U6-Dup)。ACAGA序列在剪接体组装和前体mRNA剪接的第二个催化步骤中起重要作用;这些作用中的一个或两个涉及与前体mRNA 5'剪接位点的直接碱基配对。在低温下生长的U4-cs1/U6-Dup双突变菌株中,U6 RNA的上游ACAGA序列是抑制U4突变所必需的,而下游ACAGA序列是其他基本功能所必需 的。基于U6-Dup上游ACAGA元件功能的序列要求,我们提出,在U4/U6复合物掺入剪接体的过程中,它与前体mRNA 5'剪接位点配对,随后U4 RNA的解离暴露出下游ACAGA序列,该序列在催化步骤中起作用。这种突变的U4/U6复合物的特性提供了令人信服的体内证据,表明U6 RNA在与U4 RNA的配对被破坏之前通常与5'剪接位点碱基配对。