Department of Microbiology and Molecular Genetics, University of Texas Health Science Center, Houston, TX 77030, USA.
Proc Natl Acad Sci U S A. 2011 Feb 8;108(6):2366-71. doi: 10.1073/pnas.1013180108. Epub 2011 Jan 24.
Two general pathways of mRNA decay have been characterized in yeast. In one pathway, the mRNA is degraded by the cytoplasmic form of the exosome. The exosome has both 3' to 5' exoribonuclease and endoribonuclease activity, and the available evidence suggests that the exonuclease activity is required for the degradation of mRNAs. We confirm here that this is true for normal mRNAs, but that aberrant mRNAs that lack a stop codon can be efficiently degraded in the absence of the exonuclease activity of the exosome. Specifically, we show that the endo- and exonuclease activities of the exosome are both capable of rapidly degrading nonstop mRNAs and ribozyme-cleaved mRNAs. Additionally, the endonuclease activity of the exosome is not required for endonucleolytic cleavage in no-go decay. In vitro, the endonuclease domain of the exosome is active only under nonphysiological conditions, but our findings show that the in vivo activity is sufficient for the rapid degradation of nonstop mRNAs. Thus, whereas normal mRNAs are degraded by two exonucleases (Xrn1p and Rrp44p), several endonucleases contribute to the decay of many aberrant mRNAs, including transcripts subject to nonstop and no-go decay. Our findings suggest that the nuclease requirements for general and nonstop mRNA decay are different, and describe a molecular function of the core exosome that is not disrupted by inactivating its exonuclease activity.
在酵母中,已经鉴定出两种 mRNA 降解的一般途径。在一种途径中,mRNA 被胞质形式的核酶体降解。核酶体具有 3'到 5'外切核酸酶和内切核酸酶活性,并且现有证据表明,外切核酸酶活性是降解 mRNA 所必需的。我们在这里证实,这对于正常的 mRNA 是正确的,但缺乏终止密码子的异常 mRNA 在没有核酶体外切核酸酶活性的情况下可以有效地被降解。具体来说,我们表明核酶体的内切核酸酶和外切核酸酶活性都能够快速降解无终止的 mRNA 和核酶切割的 mRNA。此外,核酶体的内切核酸酶活性不是无终止衰变中核内切割所必需的。在体外,核酶体的内切核酸酶结构域仅在非生理条件下才具有活性,但我们的研究结果表明,其体内活性足以快速降解无终止的 mRNA。因此,尽管正常的 mRNA 是由两种外切核酸酶(Xrn1p 和 Rrp44p)降解的,但几种内切核酸酶有助于许多异常 mRNA 的降解,包括无终止和无终止衰变的转录物。我们的发现表明,一般和无终止 mRNA 降解的核酸酶要求不同,并描述了核心核酶体的分子功能,其外切核酸酶活性的失活不会破坏该功能。