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不稳定叶绿体信使核糖核酸5'→3'外切核糖核酸酶降解的体内证据。

In vivo evidence for 5'-->3' exoribonuclease degradation of an unstable chloroplast mRNA.

作者信息

Drager R G, Girard-Bascou J, Choquet Y, Kindle K L, Stern D B

机构信息

Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, NY 14853, USA.

出版信息

Plant J. 1998 Jan;13(1):85-96. doi: 10.1046/j.1365-313x.1998.00016.x.

Abstract

The acetate-requiring Chlamydomonas reinhardtii nuclear mutant F16 harbors the mutation mcd1-1 and fails to accumulate the cytochrome b6/f complex. The primary defect of mcd1-1 was determined to be the instability of petD mRNA, which encodes subunit IV of the complex. Chimeric reporter genes introduced by chloroplast transformation demonstrated that the determinant of petD mRNA instability in the mcd1-1 background is located in the 5' untranslated region (UTR). However, when this 5' UTR was present downstream of other sequences in dicistronic or chimeric transcripts, the RNAs were no longer destabilized in the mcd1-1 background. Together, these results suggest that the 5' end of the petD 5' UTR interacts with the MCD1 product. The insertion of a polyguanosine sequence into the petD 5' UTR fused to a reporter gene allowed accumulation of the reporter gene transcript in the mutant background. Since polyguanosine forms a structure that is known to impede exonucleases, these data provide in vivo evidence that petD mRNA can be degraded by 5'-->3' exoribonuclease activity. Furthermore, the data support a model in which protein binding to the petD 5' UTR protects the mRNA from 5'-->3' degradation in wild-type cells.

摘要

需要乙酸盐的莱茵衣藻核突变体F16携带mcd1 - 1突变,无法积累细胞色素b6/f复合体。已确定mcd1 - 1的主要缺陷是petD mRNA不稳定,petD mRNA编码该复合体的亚基IV。通过叶绿体转化引入的嵌合报告基因表明,mcd1 - 1背景下petD mRNA不稳定的决定因素位于5'非翻译区(UTR)。然而,当这个5'UTR存在于双顺反子或嵌合转录本中其他序列的下游时,RNA在mcd1 - 1背景下不再不稳定。这些结果共同表明,petD 5'UTR的5'末端与MCD1产物相互作用。将多聚鸟苷酸序列插入与报告基因融合的petD 5'UTR中,可使报告基因转录本在突变体背景中积累。由于多聚鸟苷酸形成一种已知会阻碍外切核酸酶的结构,这些数据提供了体内证据,表明petD mRNA可被5'→3'外切核糖核酸酶活性降解。此外,这些数据支持一种模型,即蛋白质与petD 5'UTR结合可保护mRNA在野生型细胞中不被5'→3'降解。

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