Tharun S, He W, Mayes A E, Lennertz P, Beggs J D, Parker R
Department of Molecular and Cellular Biology and Howard Hughes Medical Institute, University of Arizona, Tucson 85721, USA.
Nature. 2000 Mar 30;404(6777):515-8. doi: 10.1038/35006676.
One of the main mechanisms of messenger RNA degradation in eukaryotes occurs by deadenylation-dependent decapping which leads to 5'-to-3' decay. A family of Sm-like (Lsm) proteins has been identified, members of which contain the 'Sm' sequence motif, form a complex with U6 small nuclear RNA and are required for pre-mRNA splicing. Here we show that mutations in seven yeast Lsm proteins (Lsm1-Lsm7) also lead to inhibition of mRNA decapping. In addition, the Lsm1-Lsm7 proteins co-immunoprecipitate with the mRNA decapping enzyme (Dcp1), a decapping activator (Pat1/Mrt1) and with mRNA. This indicates that the Lsm proteins may promote decapping by interactions with the mRNA and the decapping machinery. In addition, the Lsm complex that functions in mRNA decay appears to be distinct from the U6-associated Lsm complex, indicating that Lsm proteins form specific complexes that affect different aspects of mRNA metabolism.
真核生物中信使核糖核酸(mRNA)降解的主要机制之一是通过依赖去腺苷酸化的脱帽作用发生的,这会导致5'至3'方向的衰变。已鉴定出一类类Sm(Lsm)蛋白,其成员包含“Sm”序列基序,与U6小核RNA形成复合物,并且是前体mRNA剪接所必需的。在这里,我们表明七种酵母Lsm蛋白(Lsm1-Lsm7)中的突变也会导致mRNA脱帽受到抑制。此外,Lsm1-Lsm7蛋白与mRNA脱帽酶(Dcp1)、一种脱帽激活剂(Pat1/Mrt1)以及mRNA进行共免疫沉淀。这表明Lsm蛋白可能通过与mRNA和脱帽机制相互作用来促进脱帽。此外,在mRNA衰变中起作用的Lsm复合物似乎与U6相关的Lsm复合物不同,这表明Lsm蛋白形成了影响mRNA代谢不同方面的特定复合物。