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多信号调控 H43/Fea1 的表达。

Regulation of the expression of H43/Fea1 by multi-signals.

机构信息

Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Japan.

出版信息

Photosynth Res. 2011 Sep;109(1-3):169-77. doi: 10.1007/s11120-010-9619-8. Epub 2011 Jan 18.

Abstract

The composition of extracellular proteins is known to be drastically changed in the unicellular green alga Chlamydomonas reinhardtii when the cells are transferred from ambient CO(2) to elevated CO(2) conditions. We previously observed very high production of the H43/Fea1 protein under high-CO(2) (0.3-3% in air) conditions. In addition, H43/Fea1 gene expression was reported to be induced under iron-deficient and cadmium-excess conditions, but it remains unclear how gene expression is regulated by multiple signals. To elucidate the regulatory mechanism of H43/Fea1 expression, this study intended to identify a high-CO(2)-responsive cis-element in a wall-deficient strain C. reinhardtti CC-400. Cells incubated in the presence of acetate in the dark, namely heterotrophically generated high-CO(2) conditions, were used for inducing H43/Fea1 gene expression following our previous study (Hanawa et al., Plant Cell Physiol 48:299-309, 2007) in Fe-sufficient and Cd-deficient medium to prevent the generation of other signals. First, we constructed a reporter assay system using transformants constructed by introducing genes with series of 5'-deleted upstream sequences of H43/Fea1 that were fused to a coding sequence of the Ars for arylsulfatase2 reporter gene. Consequently, the high-CO(2)-responsive cis-element (HCRE) was found to be located at a -537/-370 upstream region from the transcriptional initiation site of H43/Fea1. However, it still remains possible that a -724/-537 upstream region may also have a significant role in activating gene expression regulated by high-CO(2). Remarkably, a -925/-370 upstream region could successfully activate the Ars reporter gene under heterotrophically generated high-CO(2) conditions even when the sequence containing two Fe-deficiency-responsive elements was completely deleted. These results clearly showed that H43/Fea1 expression is regulated by high-CO(2) signal independently via the HCRE that is located distantly from Fe-deficient-signal responsive element, indicating that H43/Fea1 is a multi-signal-regulated gene.

摘要

当细胞从环境 CO(2)转移到升高的 CO(2)条件时,已知单细胞绿藻莱茵衣藻的细胞外蛋白组成会发生剧烈变化。我们之前在高 CO(2)(空气中 0.3-3%)条件下观察到 H43/Fea1 蛋白的高产量。此外,据报道,在缺铁和镉过量条件下,H43/Fea1 基因表达会被诱导,但基因表达如何受多种信号调控仍不清楚。为了阐明 H43/Fea1 表达的调控机制,本研究旨在鉴定在细胞壁缺陷型 C. reinhardtti CC-400 菌株中一个对高 CO(2)有反应的顺式作用元件。根据我们之前在铁充足和 Cd 缺乏培养基中进行的研究(Hanawa 等人,植物细胞生理学 48:299-309,2007),细胞在黑暗中用乙酸孵育,即异养产生的高 CO(2)条件,用于诱导 H43/Fea1 基因表达,以防止产生其他信号。首先,我们构建了一个报告基因检测系统,使用引入了一系列 H43/Fea1 5'端缺失上游序列的转化体,这些序列与 Ars 编码序列融合,用于芳基硫酸酯酶 2 报告基因。结果发现,高 CO(2)反应顺式作用元件(HCRE)位于 H43/Fea1 转录起始位点上游的-537/-370 区域。然而,-724/-537 上游区域也可能在激活由高 CO(2)调节的基因表达方面发挥重要作用,这仍然是有可能的。引人注目的是,即使完全删除包含两个缺铁响应元件的序列,-925/-370 上游区域也可以在异养产生的高 CO(2)条件下成功激活 Ars 报告基因。这些结果清楚地表明,H43/Fea1 的表达是通过远离缺铁信号响应元件的 HCRE 独立地受高 CO(2)信号调节的,表明 H43/Fea1 是一个多信号调节基因。

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