Literature DB >> 7915160

Oat phytochrome A mRNA degradation appears to occur via two distinct pathways.

D C Higgs1, J T Colbert.   

Abstract

We have identified possible mechanisms for the degradation of oat phytochrome A (PHYA) mRNA. The majority of PHYA mRNA molecules appeared to be degraded prior to removal of the poly(A) tail, a pathway that differs from that reported for the degradation of other eukaryotic mRNAs. Polyadenylated PHYA mRNA contained a pattern of putative degradation products that is consistent with a 5'-->3' exoribonuclease, although the participation of a stochastic endoribonuclease cannot be excluded. The poly(A) tail of PHYA mRNA was heterogeneous in size and ranged from approximately 14 to 220 nucleotides. Early PHYA mRNA degradation events did not appear to involve site-specific endoribonucleases. Approximately 25% of the apparently full-length PHYA mRNA was poly(A) deficient. Oat H4 histone, beta-tubulin, and actin mRNA populations had lower amounts of apparently full-length mRNAs that were poly(A) deficient. Degradation of the poly(A)-deficient PHYA mRNA, a second pathway, appeared to be initiated by a 3'-->5' exoribonucleolytic removal of the poly(A) tail followed by both 5'-->3' and 3'-->5' exoribonuclease activities. Polysome-associated RNA contained putative PHYA mRNA degradation products and was a mixture of polyadenylated and deadenylated PHYA messages, suggesting that the two distinct degradation pathways are polysome associated.

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Year:  1994        PMID: 7915160      PMCID: PMC160496          DOI: 10.1105/tpc.6.7.1007

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  40 in total

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Authors:  M Kenna; A Stevens; M McCammon; M G Douglas
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  19 in total

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7.  Deadenylation-dependent and -independent decay pathways for alpha1-tubulin mRNA in Chlamydomonas reinhardtii.

Authors:  J F Gera; E J Baker
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8.  Zrp2: a novel maize gene whose mRNA accumulates in the root cortex and mature stems.

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9.  Transcriptome-wide analysis of uncapped mRNAs in Arabidopsis reveals regulation of mRNA degradation.

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10.  mRNA deadenylation by PARN is essential for embryogenesis in higher plants.

Authors:  Sergei V Reverdatto; James A Dutko; Julia A Chekanova; Douglas A Hamilton; Dmitry A Belostotsky
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