Du Hansen, Tardiff Daniel F, Moore Melissa J, Rosbash Michael
Howard Hughes Medical Institute, Department of Biology, Brandeis University, MS008, 415 South Street, Waltham, MA 02454, USA.
Proc Natl Acad Sci U S A. 2004 Oct 12;101(41):14841-6. doi: 10.1073/pnas.0406319101. Epub 2004 Oct 1.
The U1 small nuclear ribonucleoprotein particle U1C protein has a zinc finger-like structure (C2H2 motif) at its N terminus, which is conserved from yeast to humans. Mutations of amino acid L13 within this domain rescue the essential function of the helicase protein Prp28p. Prp28p has been implicated in unwinding the 5' splice site (5'ss)-U1 small nuclear RNA (snRNA) base-pairing, to allow replacement of U1 snRNA with U6 snRNA during spliceosome assembly. The L13 phenotype has therefore been interpreted to indicate that WT U1C contributes to 5'ss-U1 snRNA stabilization by binding to the RNA duplex. We show here that an L13 mutant extract cannot form stable base-pairing at room temperature but is permissive for U1-5'ss base-pairing at low temperature. This phenotype is similar to that of a U1C-depleted extract, indicating that the U1C L13 mutation is a strong loss-of-function mutation. The two mutant extracts are unlike a WT extract, which undergoes stable pairing at room temperature but little or no pairing at low temperature. Taken together with previous results and the failure to observe a direct interaction of U1C with the U1-5'ss duplex, the data suggest that U1C contributes indirectly to stable U1-5'ss base-pairing under permissive conditions. A model is proposed to account for the L13 results.
U1 小核糖核蛋白颗粒 U1C 蛋白在其 N 末端具有锌指样结构(C2H2 基序),该结构从酵母到人类都保守。该结构域内氨基酸 L13 的突变挽救了解旋酶蛋白 Prp28p 的基本功能。Prp28p 参与解开 5' 剪接位点(5'ss)-U1 小核 RNA(snRNA)碱基对,以便在剪接体组装过程中用 U6 snRNA 取代 U1 snRNA。因此,L13 表型被解释为表明野生型 U1C 通过与 RNA 双链体结合来促进 5'ss-U1 snRNA 的稳定。我们在此表明,L13 突变体提取物在室温下不能形成稳定的碱基对,但在低温下允许 U1-5'ss 碱基对形成。这种表型类似于 U1C 缺失提取物的表型,表明 U1C L13 突变是一种强烈的功能丧失突变。这两种突变体提取物与野生型提取物不同,野生型提取物在室温下进行稳定配对,但在低温下几乎不配对或不配对。结合先前的结果以及未观察到 U1C 与 U1-5'ss 双链体的直接相互作用,数据表明 U1C 在允许的条件下间接促进稳定的 U1-5'ss 碱基对形成。提出了一个模型来解释 L13 的结果。