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首页> 外文期刊>The Plant Cell >The Conserved Splicing Factor SUA Controls Alternative Splicing of the Developmental Regulator ABI3 in Arabidopsis
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The Conserved Splicing Factor SUA Controls Alternative Splicing of the Developmental Regulator ABI3 in Arabidopsis

机译:保守的剪接因子SUA控制拟南芥中发育调节剂ABI3的选择性剪接。

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摘要

ABSCISIC ACID INSENSITIVE3 (ABI3) is a major regulator of seed maturation in Arabidopsis thaliana. We detected two ABI3 transcripts, ABI3-alpha and ABI3-beta, which encode full-length and truncated proteins, respectively. Alternative splicing of ABI3 is developmentally regulated, and the ABI3-beta transcript accumulates at the end of seed maturation. The two ABI3 transcripts differ by the presence of a cryptic intron in ABI3-alpha, which is spliced out in ABI3-beta. The suppressor of abi3-5 (sua) mutant consistently restores wild-type seed features in the frameshift mutant abi3-5 but does not suppress other abi3 mutant alleles. SUA is a conserved splicing factor, homologous to the human protein RBM5, and reduces splicing of the cryptic ABI3 intron, leading to a decrease in ABI3-beta transcript. In the abi3-5 mutant, ABI3-beta codes for a functional ABI3 protein due to frameshift restoration.
机译:ABSCISIC ACID INSENSITIVE3(ABI3)是拟南芥种子成熟的主要调节剂。我们检测到两个ABI3转录本,ABI3-alpha和ABI3-beta,分别编码全长和截短的蛋白质。 ABI3的选择性剪接受到发育调控,并且ABI3-beta转录物在种子成熟结束时积累。这两个ABI3转录本的不同之处在于ABI3-alpha中存在一个内含子,该内含子在ABI3-beta中被剪接。 abi3-5(sua)突变体的抑制子可在移码突变体abi3-5中持续恢复野生型种子特征,但不会抑制其他abi3突变体等位基因。 SUA是一个保守的剪接因子,与人蛋白质RBM5同源,并减少了隐秘的ABI3内含子的剪接,导致ABI3-beta转录物减少。在abi3-5突变体中,由于移码恢复,ABI3-beta编码功能性ABI3蛋白。

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