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水稻转录因子 IDElF1 可直接与铁和其他二价金属结合,用于感应细胞内铁状态。

The rice transcription factor IDEF1 directly binds to iron and other divalent metals for sensing cellular iron status.

机构信息

Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Plant J. 2012 Jan;69(1):81-91. doi: 10.1111/j.1365-313X.2011.04772.x. Epub 2011 Oct 13.

Abstract

Iron is essential for most living organisms and its availability often determines survival and proliferation. The Oryza sativa (rice) transcription factor IDEF1 plays a crucial role in regulating iron deficiency-induced genes involved in iron homeostasis. In the present report, we found characteristic histidine-asparagine repeat and proline-rich regions in IDEF1 and its homolog in Hordeum vulgare (barley), HvIDEF1. An immobilized metal ion affinity chromatography assay revealed that IDEF1 and HvIDEF1 bind to various divalent metals, including Fe(2+) and Ni(2+) . Recombinant IDEF1 protein expressed in Escherichia coli contained mainly Fe and Zn. This metal-binding activity of IDEF1 was almost abolished by deletion of the histidine-asparagine and proline-rich regions, but DNA-binding and trans-activation functions were not impaired by the deletion. Transgenic rice plants constitutively overexpressing IDEF1 without these metal-binding domains failed to cause pleiotropic effects conferred by overexpression of full-length IDEF1, including a low germination rate, impaired seedling growth, tolerance to iron deficiency in hydroponic culture, and enhanced expression of various iron deficiency-inducible genes. Impairment of the transcriptional regulation of IDEF1 by deletion of the metal-binding domains occurred primarily at an early stage of iron deficiency. These results suggest that the histidine-asparagine and proline-rich regions in rice IDEF1 directly bind to divalent metals and sense the cellular metal ion balance caused by changes in iron availability.

摘要

铁对于大多数生物体都是必需的,其可用性通常决定了生物的生存和增殖。水稻转录因子 IDEF1 在调节铁饥饿诱导的涉及铁稳态的基因方面起着至关重要的作用。在本报告中,我们发现 IDEF1 及其在大麦中的同源物 HvIDEF1 具有特征性的组氨酸-天冬酰胺重复和脯氨酸丰富区。固定金属离子亲和层析试验表明,IDEF1 和 HvIDEF1 结合多种二价金属,包括 Fe(2+)和 Ni(2+)。在大肠杆菌中表达的重组 IDDEF1 蛋白主要含有 Fe 和 Zn。这种 IDDEF1 的金属结合活性几乎被组氨酸-天冬酰胺和脯氨酸丰富区的缺失所消除,但 DNA 结合和转录激活功能不受缺失的影响。在没有这些金属结合结构域的情况下,组成型过表达 IDDEF1 的转基因水稻未能引起全长 IDDEF1 过表达所赋予的多种表型效应,包括发芽率低、幼苗生长受损、水培条件下对缺铁的耐受性增强以及各种缺铁诱导基因的表达增强。缺失金属结合结构域对 IDDEF1 的转录调控的损害主要发生在缺铁的早期阶段。这些结果表明,水稻 IDEF1 中的组氨酸-天冬酰胺和脯氨酸丰富区直接结合二价金属,并感知由铁可用性变化引起的细胞金属离子平衡的变化。

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