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拟南芥中早期生长素诱导型mRNA的PS-IAA4/5样家族。

The PS-IAA4/5-like family of early auxin-inducible mRNAs in Arabidopsis thaliana.

作者信息

Abel S, Nguyen M D, Theologis A

机构信息

Plant Gene Expression Center, Albany, CA 94710, USA.

出版信息

J Mol Biol. 1995 Aug 25;251(4):533-49. doi: 10.1006/jmbi.1995.0454.

Abstract

The plant hormone auxin transcriptionally activates early genes. We have isolated a 14-member family of DNA sequences complementary to indoleacetic acid (IAA)-inducible transcripts in Arabidopsis thaliana. The corresponding genes, IAA1 to IAA14, are homologs of PS-IAA4/5 and PS-IAA6 from pea, Aux22 and Aux28 from soybean, ARG3 and ARG4 from mungbean, and AtAux2-11 and AtAux2-27 from Arabidopsis. The members of the family are differentially expressed in mature Arabidopsis plants. Characterization of IAA gene expression in etiolated seedlings demonstrates specificity for auxin inducibility. The response of most family members to IAA is rapid (within 4 to 30 minutes) and insensitive to cycloheximide. Cycloheximide alone induces all the early genes. Auxin-induction of two late genes, IAA7 and IAA8, is inhibited by cycloheximide, indicating requirement of protein synthesis for their activation. All IAA genes display a biphasic dose response that is optimal at 10 microM IAA. However, individual genes respond differentially between 10 nM and 5 microM IAA. Expression of all genes is defective in the Arabidopsis auxin-resistant mutant lines axr1, axr2 and aux1. The encoded polypeptides share four conserved domains, and seven invariant residues in the intervening regions. The spacers vary considerably in length, rendering the calculated molecular mass of IAA proteins to range from 19 kDa to 36 kDa. Overall sequence identity between members of the family is highly variable (36 to 87%). Their most significant structural features are functional nuclear transport signals, and a putative beta alpha alpha-fold whose modeled three dimensional structure appears to be compatible with the prokaryotic beta-ribbon DNA recognition motif. The data suggest that auxin induces in a differential and hierarchical fashion a large family of early genes that encode a structurally diverse class of nuclear proteins. These proteins are proposed to mediate tissue-specific and cell-type restricted responses to the hormone during plant growth and development.

摘要

植物激素生长素通过转录激活早期基因。我们从拟南芥中分离出了一个由14个DNA序列组成的家族,这些序列与吲哚乙酸(IAA)诱导的转录本互补。相应的基因IAA1至IAA14是豌豆PS-IAA4/5和PS-IAA6、大豆Aux22和Aux28、绿豆ARG3和ARG4以及拟南芥AtAux2-11和AtAux2-27的同源物。该家族成员在成熟的拟南芥植株中差异表达。黄化幼苗中IAA基因表达的特征表明其对生长素诱导具有特异性。大多数家族成员对IAA的反应迅速(4至30分钟内),且对放线菌酮不敏感。单独使用放线菌酮可诱导所有早期基因。放线菌酮抑制生长素对两个晚期基因IAA7和IAA8的诱导,表明它们的激活需要蛋白质合成。所有IAA基因均呈现双相剂量反应,在10微摩尔/升IAA时达到最佳。然而,在10纳摩尔/升至5微摩尔/升IAA之间,各个基因的反应有所不同。在拟南芥生长素抗性突变体axr1、axr2和aux1中,所有基因的表达均存在缺陷。编码的多肽共有四个保守结构域,中间区域有七个不变残基。间隔区长度差异很大,使得IAA蛋白的计算分子量范围为19千道尔顿至36千道尔顿。该家族成员之间的总体序列同一性高度可变(36%至87%)。它们最显著的结构特征是功能性核转运信号,以及一个假定的β-α-α折叠,其模拟的三维结构似乎与原核β-带状DNA识别基序兼容。数据表明,生长素以差异和分级的方式诱导一个大型早期基因家族,这些基因编码一类结构多样的核蛋白。这些蛋白被认为在植物生长和发育过程中介导对激素的组织特异性和细胞类型特异性反应。

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