Luhtala Natalie, Parker Roy
Cancer Biology Graduate Interdisciplinary Program, University of Arizona, Tucson, AZ 85721-0106, USA.
Nucleic Acids Res. 2009 Sep;37(16):5529-36. doi: 10.1093/nar/gkp572. Epub 2009 Jul 13.
Lsm1 is a component of the Lsm1-7 complex involved in cytoplasmic mRNA degradation. Lsm1 is over-expressed in multiple tumor types, including over 80% of pancreatic tumors, and increased levels of Lsm1 protein have been shown to induce carcinogenic effects. Therefore, understanding the perturbations in cell process due to increased Lsm1 protein may help to identify possible therapeutics targeting tumors over-expressing Lsm1. Herein, we show that LSM1 over-expression in the yeast Saccharomyces cerevisiae inhibits growth primarily due to U6 snRNA depletion, thereby altering pre-mRNA splicing. The decrease in U6 snRNA levels causes yeast strains over-expressing Lsm1 to be hypersensitive to loss of other proteins required for production or function of the U6 snRNA, supporting a model wherein excess Lsm1 reduces the availability of the Lsm2-7 proteins, which also assemble with Lsm8 to form a complex that binds and stabilizes the U6 snRNA. Yeast strains over-expressing Lsm1 also display minor alterations in mRNA decay and demonstrate increased susceptibility to mutations inhibiting cytoplasmic deadenylation, a process required for both 5'-to-3' and 3'-to-5' pathways of exonucleolytic decay. These results suggest that inhibition of splicing and/or deadenylation may be effective therapies for Lsm1-over-expressing tumors.
Lsm1是参与细胞质mRNA降解的Lsm1-7复合物的一个组成部分。Lsm1在多种肿瘤类型中过度表达,包括超过80%的胰腺肿瘤,并且已证明Lsm1蛋白水平的升高会诱导致癌作用。因此,了解由于Lsm1蛋白增加而导致的细胞过程中的扰动可能有助于确定针对过度表达Lsm1的肿瘤的潜在治疗方法。在此,我们表明在酿酒酵母中过表达LSM1主要由于U6 snRNA耗竭而抑制生长,从而改变前体mRNA剪接。U6 snRNA水平的降低导致过表达Lsm1的酵母菌株对U6 snRNA产生或功能所需的其他蛋白质的缺失高度敏感,支持了一种模型,即过量的Lsm1降低了Lsm2-7蛋白的可用性,Lsm2-7蛋白也与Lsm8组装形成一个结合并稳定U6 snRNA的复合物。过表达Lsm1的酵母菌株在mRNA衰变中也表现出微小变化,并显示出对抑制细胞质去腺苷酸化的突变的易感性增加,细胞质去腺苷酸化是核酸外切酶衰变的5'至3'和3'至5'途径所必需的过程。这些结果表明,抑制剪接和/或去腺苷酸化可能是治疗过度表达Lsm1的肿瘤的有效疗法。