The jasmonate-inducible AP2/ERF-domain transcription factor ORCA3 activates gene expression via interaction with a jasmonate-responsive promoter element.

L. Fits, J. Memelink
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引用次数: 292

Abstract

The AP2/ERF-domain transcription factor ORCA3 is a master regulator of primary and secondary metabolism in Catharanthus roseus (periwinkle). Here we demonstrate that ORCA3 specifically binds to and activates gene expression via a previously characterized jasmonate- and elicitor-responsive element (JERE) in the promoter of the terpenoid indole alkaloid biosynthetic gene Strictosidine synthase (Str). Functional characterization of different domains in the ORCA3 protein in yeast and plant cells revealed the presence of an N-terminal acidic activation domain and a serine-rich C-terminal domain with a negative regulatory function. Orca3 mRNA accumulation was rapidly induced by the plant stress hormone methyljasmonate with biphasic kinetics. A precursor and an intermediate of the jasmonate biosynthetic pathway also induced Orca3 gene expression, further substantiating the role for ORCA3 in jasmonate signaling. The protein synthesis inhibitor cycloheximide did not inhibit jasmonate-responsive expression of Orca3, nor of its target genes Str and Tryptophan decarboxylase (Tdc). In conclusion, ORCA3 regulates jasmonate-responsive expression of the Str gene via direct interaction with the JERE. The activating activities of ORCA proteins do not seem to depend on jasmonate-induced de novo protein synthesis, but presumably occur via modification of pre-existing ORCA protein.
茉莉素诱导的AP2/ erf结构域转录因子ORCA3通过与茉莉素响应启动子元件相互作用激活基因表达。
AP2/ erf结构域转录因子ORCA3是长春花(Catharanthus roseus, perwinkle)初级和次级代谢的主要调控因子。在这里,我们证明ORCA3特异性结合并激活基因表达,通过先前表征的萜类吲哚生物碱生物合成基因Strictosidine synthase (Str)启动子中的茉莉酸和激发子响应元件(JERE)。通过对酵母和植物细胞中ORCA3蛋白不同结构域的功能表征,发现ORCA3蛋白存在一个n端酸性活化结构域和一个富丝氨酸的c端负调控结构域。植物胁迫激素甲基茉莉酸盐诱导Orca3 mRNA快速积累,具有双相动力学。茉莉酸生物合成途径的一个前体和中间体也能诱导Orca3基因表达,进一步证实了Orca3在茉莉酸信号传导中的作用。蛋白合成抑制剂环己亚胺不抑制Orca3及其靶基因Str和色氨酸脱羧酶(Tdc)的茉莉酸响应性表达。综上所述,ORCA3通过与JERE的直接相互作用调控了茉莉酸反应性Str基因的表达。ORCA蛋白的激活活性似乎不依赖于茉莉酸诱导的从头蛋白合成,而可能是通过对已有ORCA蛋白的修饰而发生的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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