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FAR1基因座编码一种新型的、对光敏色素A信号传导具有特异性的核蛋白。

The FAR1 locus encodes a novel nuclear protein specific to phytochrome A signaling.

作者信息

Hudson M, Ringli C, Boylan M T, Quail P H

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, California 94720, USA.

出版信息

Genes Dev. 1999 Aug 1;13(15):2017-27. doi: 10.1101/gad.13.15.2017.

Abstract

The phytochrome family of photoreceptors has a well-defined role in regulating gene expression in response to informational light signals. Little is known, however, of the early steps of phytochrome signal transduction. Here we describe a new Arabidopsis mutant, far1 (far-red-impaired response), which has reduced responsiveness to continuous far-red light, but responds normally to other light wavelengths. This phenotype implies a specific requirement for FAR1 in phyA signal transduction. The far1 locus maps to the south arm of chromosome 4, and is not allelic to photomorphogenic loci identified previously. All five far1 alleles isolated have single nucleotide substitutions that introduce stop codons in a single ORF. The FAR1 gene encodes a protein with no significant sequence similarity to any proteins of known function. The FAR1 protein contains a predicted nuclear localization signal and is targeted to the nucleus in transient transfection assays. This result supports an emerging view that early steps in phytochrome signaling may be centered in the nucleus. The FAR1 gene defines a new multigene family, which consists of at least four genes in Arabidopsis. This observation raises the possibility of redundancy in the phyA-signaling pathway, which could account for the incomplete block of phyA signaling observed in the far1 mutant.

摘要

光敏色素家族的光感受器在响应信息光信号调节基因表达方面具有明确的作用。然而,对于光敏色素信号转导的早期步骤却知之甚少。在此,我们描述了一种新的拟南芥突变体far1(远红光响应受损),它对连续远红光的反应性降低,但对其他光波长的反应正常。这种表型意味着在phyA信号转导中对FAR1有特定需求。far1基因座定位于4号染色体的南臂,与先前鉴定的光形态建成基因座非等位。分离出的所有五个far1等位基因都有单核苷酸替换,在单个开放阅读框中引入了终止密码子。FAR1基因编码一种与任何已知功能蛋白质均无明显序列相似性的蛋白质。FAR1蛋白含有一个预测的核定位信号,并且在瞬时转染实验中靶向细胞核。这一结果支持了一种新出现的观点,即光敏色素信号转导的早期步骤可能集中在细胞核中。FAR1基因定义了一个新的多基因家族,在拟南芥中至少由四个基因组成。这一观察结果增加了phyA信号通路中存在冗余的可能性,这可以解释在far1突变体中观察到的phyA信号传导的不完全阻断。

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