Beijing Fisheries Research Institute & Beijing Key Laboratory of Fishery Biotechnology, Beijing, 100068, People's Republic of China.
National Freshwater Fisheries Engineering Technology Research Center, Beijing, 100068, People's Republic of China.
Fish Physiol Biochem. 2020 Apr;46(2):519-531. doi: 10.1007/s10695-019-00702-w. Epub 2019 Dec 17.
The 14-3-3 proteins are a family of widely expressed acidic proteins, which are involved in the regulation of many biological processes of animals. However, no research regarding 14-3-3 has been described in sturgeon to date, one of the most primitive Actinopterygii species. Here, we identified the first 14-3-3 gene from Siberian sturgeon (Acipenser baeri), named Ab14-3-3β/α (GenBank Accession No. KY094076.1). The cDNA of Ab14-3-3β/α is 1212 bp in length, containing a 5'-untranslated region (UTR) of 82 bp, a 3'UTR of 392 bp, and an open reading frame (ORF) of 738 bp, encoding a polypeptide of 245 amino acids which contains a 14-3-3 homologs domain (PF00244). Phylogenetic analysis showed that the 14-3-3 gene product from Acipenser baeri is a counterpart of vertebrate 14-3-3β/α. The deduced Ab14-3-3β/α protein shares high identities of 46.5-95.5% with the homologs of other species. Ab14-3-3β/α mRNA was constitutively expressed in all examined tissues, with high expression levels in the blood and gill. Furthermore, the expression level of Ab14-3-3β/α mRNA increased significantly in the gill at 1 h under acute salinity shock by transfer of Siberian sturgeons from fresh water (FW) to 15 ppt. In fish subjected to a high temperature (31 °C), Ab14-3-3β/α showed a significant upregulation in the liver at 3 h compared with the control group (24 °C). A 4.85-fold increase of Ab14-3-3β/α expression in the spleen of Siberian sturgeon was observed at 24 h following Aeromonas hydrophila challenge. Collectively, these results indicated that Ab14-3-3β/α might play a certain role in sturgeon in response to some environmental stresses and bacterial challenge.
14-3-3 蛋白是一类广泛表达的酸性蛋白家族,参与动物许多生物过程的调节。然而,到目前为止,在最原始的硬骨鱼之一西伯利亚鲟中,还没有关于 14-3-3 的研究。在这里,我们从西伯利亚鲟(Acipenser baeri)中鉴定出第一个 14-3-3 基因,命名为 Ab14-3-3β/α(GenBank 登录号 KY094076.1)。Ab14-3-3β/α 的 cDNA 长 1212bp,包含一个 5'-非翻译区(UTR)82bp,一个 3'-UTR 392bp 和一个开放阅读框(ORF)738bp,编码一个 245 个氨基酸的多肽,其中包含一个 14-3-3 同源结构域(PF00244)。系统发育分析表明,西伯利亚鲟的 14-3-3 基因产物是脊椎动物 14-3-3β/α 的对应物。推导的 Ab14-3-3β/α 蛋白与其他物种的同源物具有 46.5-95.5%的高度同一性。Ab14-3-3β/α mRNA 在所有检测组织中均呈组成型表达,在血液和鳃中表达水平较高。此外,西伯利亚鲟从淡水(FW)转移到 15 ppt 时,急性盐度冲击后鳃中 Ab14-3-3β/α mRNA 的表达水平显著升高。在高温(31°C)下,与对照组(24°C)相比,肝脏中 Ab14-3-3β/α 在 3 小时时显著上调。在受到嗜水气单胞菌攻击后,西伯利亚鲟脾脏中 Ab14-3-3β/α 的表达水平增加了 4.85 倍。综上所述,这些结果表明 Ab14-3-3β/α 可能在西伯利亚鲟应对某些环境压力和细菌挑战中发挥一定作用。