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在拟南芥中,必需且广泛保守的 DAMAGED DNA BINDING1-Cullin4 ASSOCIATED FACTOR 基因 OZS3 的突变导致对锌过量、寒冷和 UV 应激的敏感性增加。

A mutation in the essential and widely conserved DAMAGED DNA BINDING1-Cullin4 ASSOCIATED FACTOR gene OZS3 causes hypersensitivity to zinc excess, cold and UV stress in Arabidopsis thaliana.

机构信息

Department of Plant Physiology, University of Bayreuth, Bayreuth, 95440, Germany.

出版信息

Plant J. 2020 Aug;103(3):995-1009. doi: 10.1111/tpj.14779. Epub 2020 May 9.

Abstract

The overly zinc sensitive Arabidopsis thaliana mutant ozs3 shows reduced growth of the primary root, which is exacerbated by an excess specifically of Zn ions. In addition, ozs3 plants display various subtle developmental phenotypes, such as longer petioles and early flowering. Also, ozs3 seedlings are completely but reversibly growth-arrested when shifted to 4°C. The causal mutation was mapped to a gene encoding a putative substrate-recognition receptor of cullin4 E3 ligases. OZS3 orthologous genes can be found in almost all eukaryotic genomes. Most species from Schizosaccharomyces pombe to Homo sapiens, and including A. thaliana, possess one ortholog. No functional data are available for these genes in any of the multicellular model systems. CRISPR-Cas9-mediated knockout demonstrated that a complete loss of OZS3 function is embryo-lethal, indicating essentiality of OZS3 and its orthologs. The OZS3 protein interacts with the adaptor protein DAMAGED DNA BINDING1 (DDB1) in the nucleus. Thus, it is indeed a member of the large yet poorly characterized family of DDB1-cullin4 associated factors in plants. Mutant phenotypes of ozs3 plants are apparently caused by the weakened DDB1-OZS3 interaction as a result of the exchange of a conserved amino acid near the conserved WDxR motif.

摘要

过度锌敏感的拟南芥突变体 ozs3 表现出主根生长受阻,过量的锌离子会加重这种情况。此外,ozs3 植物还表现出各种微妙的发育表型,如叶柄较长和提前开花。此外,ozs3 幼苗在转移到 4°C 时会完全但可逆地停止生长。导致突变的原因被定位到一个编码假定的 Cullin4 E3 连接酶底物识别受体的基因上。OZS3 的同源基因几乎存在于所有真核生物的基因组中。从酿酒酵母到人类,包括拟南芥在内的大多数物种都拥有一个同源基因。然而,在任何多细胞模型系统中,这些基因都没有功能数据。CRISPR-Cas9 介导的基因敲除实验表明,OZS3 功能完全缺失是胚胎致死的,这表明 OZS3 和其同源基因的必要性。OZS3 蛋白在细胞核中与接头蛋白 DAMAGED DNA BINDING1 (DDB1) 相互作用。因此,它确实是植物中大量但特征不明确的 DDB1-cullin4 相关因子家族的成员。ozs3 植物的突变表型显然是由于保守 WDxR 基序附近的保守氨基酸交换导致 DDB1-OZS3 相互作用减弱所致。

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