Fatani Afnan, Wu Xiangyang, Gbotsyo Yayra, MacRae Thomas H, Song Xiaojun, Tan Jiabo
Infection Prevention and Control Department, East Jeddah Hospital, Ministry of Health, Al Sulaymaniyah, Jeddah, Saudi Arabia.
Laboratory of Comparative Immunology, School of Marine Science and Engineering, Qingdao Agricultural University, Qingdao, Shandong, China.
Cell Stress Chaperones. 2024 Apr;29(2):285-299. doi: 10.1016/j.cstres.2024.02.004. Epub 2024 Feb 29.
Females of the extremophile crustacean, Artemia franciscana, either release motile nauplii via the ovoviviparous pathway or encysted embryos (cysts) via the oviparous pathway. Cysts contain an abundant amount of the ATP-independent small heat shock protein that contributes to stress tolerance and embryo development, however, little is known of the role of ATP-dependent molecular chaperone, heat shock protein 90 (Hsp90) in the two processes. In this study, a hsp90 was cloned from A. franciscana. Characteristic domains of ArHsp90 were simulated from the deduced amino acid sequence, and 3D structures of ArHsp90 and Hsp90s of organisms from different groups were aligned. RNA interference was then employed to characterize ArHsp90 in A. franciscana nauplii and cysts. The partial knockdown of ArHsp90 slowed the development of nauplius-destined, but not cyst-destined embryos. ArHsp90 knockdown also reduced the survival and stress tolerance of nauplii newly released from A. franciscana females. Although the reduction of ArHsp90 had no effect on the development of diapause-destined embryos, the resulting cysts displayed reduced tolerance to desiccation and low temperature, two stresses normally encountered by A. franciscana in its natural environment. The results reveal that Hsp90 contributes to the development, growth, and stress tolerance of A. franciscana, an organism of practical importance as a feed source in aquaculture.
嗜极甲壳动物卤虫(Artemia franciscana)的雌性个体,要么通过卵胎生途径释放可游动的无节幼体,要么通过卵生途径释放包囊胚胎(卵囊)。卵囊中含有大量不依赖ATP的小分子热休克蛋白,该蛋白有助于提高应激耐受性和胚胎发育,但对于依赖ATP的分子伴侣热休克蛋白90(Hsp90)在这两个过程中的作用却知之甚少。在本研究中,从卤虫中克隆出了一个hsp90基因。根据推导的氨基酸序列模拟了卤虫Hsp90(ArHsp90)的特征结构域,并对ArHsp90和不同生物类群的Hsp90s的三维结构进行了比对。随后利用RNA干扰技术对卤虫无节幼体和卵囊中的ArHsp90进行了功能鉴定。ArHsp90的部分敲低减缓了发育为无节幼体的胚胎的发育速度,但对发育为卵囊的胚胎没有影响。敲低ArHsp90还降低了从卤虫雌性个体新释放出的无节幼体的存活率和应激耐受性。虽然ArHsp90的减少对发育为滞育胚胎的发育没有影响,但所产生的卵囊对干燥和低温的耐受性降低,而这两种应激是卤虫在其自然环境中通常会遇到的。研究结果表明,Hsp90对卤虫的发育、生长和应激耐受性有重要作用,卤虫作为水产养殖中的饲料来源具有重要的实际意义。