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豌豆ABI3样因子可变剪接产生的异构体的功能分析。

Functional analysis of the isoforms of an ABI3-like factor of Pisum sativum generated by alternative splicing.

作者信息

Gagete Andrés P, Riera Marta, Franco Luis, Rodrigo M Isabel

机构信息

Department of Biochemistry and Molecular Biology, University of Valencia, E-46100 Burjassot, Valencia, Spain.

出版信息

J Exp Bot. 2009;60(6):1703-14. doi: 10.1093/jxb/erp038. Epub 2009 Mar 4.

Abstract

At least seven isoforms (PsABI3-1 to PsABI3-7) of a putative, pea ABI3-like factor, originated by alternative splicing, have been identified after cDNA cloning. A similar variability had previously only been described for monocot genes. The full-length isoform, PsABI3-1, contains the typical N-terminal acidic domains and C-terminal basic subdomains, B1 to B3. Reverse transcriptase-PCR analysis revealed that the gene is expressed just in seeds, starting at middle embryogenesis; no gene products are observed in embryo axes after 18 h post-imbibition although they are more persistent in cotyledons. The activity of the isoforms was studied by yeast one-hybrid assays. When yeast was transformed with the isoforms fused to the DNA binding domain of Gal4p, only the polypeptides PsABI3-2 and PsABI3-7 failed to complement the activity of Gal4p. Acidic domains A1 and A2 exhibit transactivating activity, but the former requires a small C-terminal extension to be active. Yeast two-hybrid analysis showed that PsABI3 is able to heterodimerize with Arabidopsis thaliana ABI5, thus proving that PsABI3 is functionally active. The minimum requirement for the interaction PsABI3-AtABI5 is the presence of the subdomain B1 with an extension, 81 amino acids long, at their C-terminal side. Finally, a transient onion transformation assay showed that both the active PsABI3-1 and the inactive PsABI3-2 isoforms are localized to nuclei. Considering that the major isoforms remain approximately constant in developing seeds although their relative proportion varied, the possible role of splicing in the regulatory network of ABA signalling is discussed.

摘要

通过cDNA克隆,已鉴定出一种假定的豌豆ABI3样因子的至少七种同工型(PsABI3-1至PsABI3-7),这些同工型由可变剪接产生。此前,类似的变异性仅在单子叶植物基因中有所描述。全长同工型PsABI3-1包含典型的N端酸性结构域和C端碱性亚结构域B1至B3。逆转录酶-PCR分析表明,该基因仅在种子中表达,始于胚胎发育中期;吸胀18小时后,在胚轴中未观察到基因产物,尽管它们在子叶中持续时间更长。通过酵母单杂交试验研究了同工型的活性。当用与Gal4p的DNA结合结构域融合的同工型转化酵母时,只有多肽PsABI3-2和PsABI3-7未能补充Gal4p的活性。酸性结构域A1和A2表现出反式激活活性,但前者需要一个小的C端延伸才能激活。酵母双杂交分析表明,PsABI3能够与拟南芥ABI5异源二聚化,从而证明PsABI3具有功能活性。PsABI3与AtABI5相互作用的最低要求是存在亚结构域B1,其C端有一个81个氨基酸长的延伸。最后,瞬时洋葱转化试验表明,活性同工型PsABI3-1和非活性同工型PsABI3-2都定位于细胞核。考虑到主要同工型在发育中的种子中大致保持恒定,尽管它们的相对比例有所变化,因此讨论了剪接在ABA信号调控网络中的可能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2144/2671620/55b089a84302/jexboterp038f01_ht.jpg

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