Rajavel K S, Neufeld E F
Department of Biological Chemistry, University of California Los Angeles, Los Angeles, California 90095-1737, USA.
Mol Cell Biol. 2001 Aug;21(16):5512-9. doi: 10.1128/MCB.21.16.5512-5519.2001.
Nonsense-mediated mRNA decay (NMD), the loss of mRNAs carrying premature stop codons, is a process by which cells recognize and degrade nonsense mRNAs to prevent possibly toxic effects of truncated peptides. Most mammalian nonsense mRNAs are degraded while associated with the nucleus, but a few are degraded in the cytoplasm; at either site, there is a requirement for translation and for an intron downstream of the early stop codon. We have examined the NMD of a mutant HEXA message in lymphoblasts derived from a Tay-Sachs disease patient homozygous for the common frameshift mutation 1278ins4. The mutant mRNA was nearly undetectable in these cells and increased to approximately 40% of normal in the presence of the translation inhibitor cycloheximide. The stabilized transcript was found in the cytoplasm in association with polysomes. Within 5 h of cycloheximide removal, the polysome-associated nonsense message was completely degraded, while the normal message was stable. The increased lability of the polysome-associated mutant HEXA mRNA shows that NMD of this endogenous mRNA occurred in the cytoplasm. Transfection of Chinese hamster ovary cells showed that expression of an intronless HEXA minigene harboring the frameshift mutation or a closely located nonsense codon resulted in half the normal mRNA level. Inclusion of multiple downstream introns decreased the abundance further, to about 20% of normal. Thus, in contrast to other systems, introns are not absolutely required for NMD of HEXA mRNA, although they enhance the low-HEXA-mRNA phenotype.
无义介导的mRNA降解(NMD)是指携带提前终止密码子的mRNA的丢失,这是一个细胞识别并降解无义mRNA以防止截短肽可能产生的毒性作用的过程。大多数哺乳动物的无义mRNA在与细胞核相关联时被降解,但也有少数在细胞质中被降解;在任何一个位点,都需要翻译以及早期终止密码子下游的一个内含子。我们研究了来自患有常见移码突变1278ins4的纯合泰-萨克斯病患者的淋巴母细胞中突变型HEXA信使核糖核酸的NMD。在这些细胞中,突变型mRNA几乎检测不到,而在存在翻译抑制剂环己酰亚胺的情况下,其水平增加到正常水平的约40%。稳定化的转录本在细胞质中与多核糖体相关联被发现。在去除环己酰亚胺后的5小时内,与多核糖体相关的无义信使核糖核酸完全降解,而正常信使核糖核酸则保持稳定。与多核糖体相关的突变型HEXA mRNA的不稳定性增加表明,这种内源性mRNA的NMD发生在细胞质中。对中国仓鼠卵巢细胞的转染表明,携带移码突变或紧邻无义密码子的无内含子HEXA小基因的表达导致mRNA水平为正常水平的一半。包含多个下游内含子进一步降低了丰度,至正常水平的约20%。因此,与其他系统不同,虽然内含子会增强低HEXA mRNA表型,但它们对于HEXA mRNA的NMD并非绝对必需。