Institut für Biochemie und Biologie, Universität Potsdam, 14476 Potsdam, Germany.
Proc Natl Acad Sci U S A. 2013 Aug 20;110(34):13994-9. doi: 10.1073/pnas.1303967110. Epub 2013 Aug 5.
Polyadenylation of pre-mRNAs is critical for efficient nuclear export, stability, and translation of the mature mRNAs, and thus for gene expression. The bulk of pre-mRNAs are processed by canonical nuclear poly(A) polymerase (PAPS). Both vertebrate and higher-plant genomes encode more than one isoform of this enzyme, and these are coexpressed in different tissues. However, in neither case is it known whether the isoforms fulfill different functions or polyadenylate distinct subsets of pre-mRNAs. Here we show that the three canonical nuclear PAPS isoforms in Arabidopsis are functionally specialized owing to their evolutionarily divergent C-terminal domains. A strong loss-of-function mutation in PAPS1 causes a male gametophytic defect, whereas a weak allele leads to reduced leaf growth that results in part from a constitutive pathogen response. By contrast, plants lacking both PAPS2 and PAPS4 function are viable with wild-type leaf growth. Polyadenylation of SMALL AUXIN UP RNA (SAUR) mRNAs depends specifically on PAPS1 function. The resulting reduction in SAUR activity in paps1 mutants contributes to their reduced leaf growth, providing a causal link between polyadenylation of specific pre-mRNAs by a particular PAPS isoform and plant growth. This suggests the existence of an additional layer of regulation in plant and possibly vertebrate gene expression, whereby the relative activities of canonical nuclear PAPS isoforms control de novo synthesized poly(A) tail length and hence expression of specific subsets of mRNAs.
聚腺苷酸化的 pre-mRNAs 是至关重要的有效核输出、稳定和成熟的 mRNAs 的翻译,因此对基因表达。大部分 pre-mRNAs 是由规范核聚腺苷酸化酶(PAPS)处理。脊椎动物和高等植物基因组编码这种酶的一个以上的同工型,这些在不同的组织中共同表达。然而,在这两种情况下,都不知道同工型是否履行不同的功能或聚腺苷酸化不同的 pre-mRNAs 子集。在这里,我们表明拟南芥中的三个规范核 PAPS 同工型由于其进化上不同的 C 末端结构域而具有功能特异性。PAPS1 的强功能丧失突变导致雄性配子体缺陷,而弱等位基因导致叶片生长减少,这部分是由于组成性病原体反应。相比之下,缺乏 PAPS2 和 PAPS4 功能的植物具有野生型叶片生长的活力。SMALL AUXIN UP RNA(SAUR)mRNA 的聚腺苷酸化特别依赖于 PAPS1 的功能。在 paps1 突变体中,SAUR 活性的降低导致叶片生长减少,这为特定 PAPS 同工型对特定 pre-mRNAs 的聚腺苷酸化与植物生长之间的因果关系提供了证据。这表明在植物中存在一个额外的调控层,可能在脊椎动物中也存在,即规范核 PAPS 同工型的相对活性控制新合成的 poly(A)尾的长度,从而控制特定的 mRNAs 子集的表达。