Search for putative gene regulatory motifs in CAHS3, linked to anhydrobiosis in a tardigrade Ramazzottius varieornatus, in vivo and in silico.

IF 1.3 4区 生物学 Q4 CELL BIOLOGY
Genes to Cells Pub Date : 2024-09-30 DOI:10.1111/gtc.13168
Sora Ishikawa, Sae Tanaka, Kazuharu Arakawa
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引用次数: 0

Abstract

Tardigrades possess the ability to enter an almost completely dehydrated state, anhydrobiosis. The CAHS (cytosolic abundant heat-soluble) protein family has been identified as one of the anhydrobiosis-related proteins. In particular, CAHS3 protein from an anhydrobiotic tardigrade, Ramazzottius varieornatus, shows heat-solubility and reversible condensation and is one of the most highly expressed among the CAHS paralogs. A recently developed tardigrade-specific vector showed tissue-specific expression of RvCAHS3 most pronounced in the epidermis in vivo, contrary to the idea that anhydrobiotic genes are uniformly expressed in all tardigrade cells. In this study, we investigated the regulation of RvCAHS3 gene expression through in vivo expression experiments using tardigrade vectors with a series of truncated upstream regions coupled with in silico analysis to identify the anhydrobiosis-related genes that are expressed under the same regulatory system as RvCAHS3. As a result, the 300-350 bp region upstream of RvCAHS3 is critical for regulating gene expression in tardigrade vector experiments, and three motifs conserved between two species of anhydrobiotic tardigrades were identified within a 500 bp region directly upstream of RvCAHS3 start codon. These motifs, which have also been identified upstream of other CAHS genes, could be associated with the regulatory system of anhydrobiosis-related genes in tardigrades.

寻找 CAHS3 中的推定基因调控基团,在体内和硅学中研究与迟行龙 Ramazzottius varieornatus 的无水生物症有关的基因调控基团。
迟发型生物具有进入几乎完全脱水状态(无水生生物)的能力。CAHS(细胞膜丰富热溶性)蛋白家族已被确认为与无水生物状态相关的蛋白之一。特别是,来自一种水生沙蜥(Ramazzottius varieornatus)的 CAHS3 蛋白具有热溶解性和可逆缩合性,是 CAHS 旁系亲属中表达量最高的蛋白之一。最近开发的一种游仆虫特异性载体显示,RvCAHS3的组织特异性表达在体内表皮中最为明显,这与无水生生物基因在所有游仆虫细胞中均匀表达的观点相反。在本研究中,我们通过使用带有一系列截短上游区域的沙蜥载体进行体内表达实验,并结合硅学分析,研究了 RvCAHS3 基因的表达调控,以确定与 RvCAHS3 在相同调控系统下表达的抗水解相关基因。结果发现,RvCAHS3 上游的 300-350 bp 区域对于调控沙蜥载体实验中的基因表达至关重要,并且在 RvCAHS3 起始密码子正上方的 500 bp 区域内发现了两个无水生生物沙蜥物种之间的三个保守基团。在其他 CAHS 基因的上游也发现了这些基团,它们可能与沙蜥无水生生物相关基因的调控系统有关。
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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来源期刊
Genes to Cells
Genes to Cells 生物-细胞生物学
CiteScore
3.40
自引率
0.00%
发文量
71
审稿时长
3 months
期刊介绍: Genes to Cells provides an international forum for the publication of papers describing important aspects of molecular and cellular biology. The journal aims to present papers that provide conceptual advance in the relevant field. Particular emphasis will be placed on work aimed at understanding the basic mechanisms underlying biological events.
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