Brostrom M A, Lin X J, Cade C, Gmitter D, Brostrom C O
Department of Pharmacology, University of Medicine and Dentistry of New Jersey, Robert Wood Johnson Medical School, Piscataway 08854.
J Biol Chem. 1989 Jan 25;264(3):1638-43.
Ca2+ is required for the maintenance of high rates of translational initiation in GH3 pituitary cells (Chin, K.-V., Cade, C., Brostrom, C.O., Galuska, E.M., and Brostrom, M.A. (1987) J. Biol. Chem. 262, 16509-16514). Following thermal stress at 46 degrees C or chemical stress from exposure to sodium arsenite or 8-hydroxyquinoline, rates of amino acid incorporation in Ca2+-restored GH3 cells were reduced acutely to those of unstressed, Ca2+-depleted control preparations. Sodium arsenite treatment resulted in loss of ability to accumulate polysomes in response to Ca2+. Stressed cells allowed to recover for 2-8 h either with or without Ca2+ in the medium exhibited comparable, increasing rates of amino acid incorporation and the induction of heat shock proteins (hsp). Abolition of the Ca2+-dependent component of translation was proportional to the intensity of the stress. Mild thermal stress (41 degrees C) resulted in the induction of hsp 68 and the retention of Ca2+-dependent protein synthesis; hsp 68 was synthesized in a Ca2+-dependent manner. After arsenite stress, restoration of the Ca2+ requirement for protein synthesis occurred by 24 h, and was preceded by a transitional period during which polysomes accumulated in response to Ca2+ without concomitant increased rates of incorporation. Responses to stress are proposed to include an acute inhibition of normal protein synthesis involving the destruction of Ca2+-stimulated initiation and a protracted period of recovery involving synthesis of the hsp accompanied by Ca2+-independent amino acid incorporation and slowed peptide chain elongation.
钙离子对于维持GH3垂体细胞中的高翻译起始速率是必需的(Chin, K.-V., Cade, C., Brostrom, C.O., Galuska, E.M., and Brostrom, M.A. (1987) J. Biol. Chem. 262, 16509 - 16514)。在46摄氏度的热应激或暴露于亚砷酸钠或8 - 羟基喹啉的化学应激之后,钙离子恢复的GH3细胞中的氨基酸掺入速率急剧降低至未应激的、钙离子耗尽的对照制剂的水平。亚砷酸钠处理导致细胞丧失了响应钙离子而积累多核糖体的能力。在培养基中添加或不添加钙离子的情况下,应激细胞恢复2 - 8小时后,氨基酸掺入速率呈现出相当的、不断增加的趋势,并且诱导了热休克蛋白(hsp)的产生。翻译过程中钙离子依赖性成分的消除与应激强度成正比。轻度热应激(41摄氏度)导致hsp 68的诱导以及钙离子依赖性蛋白质合成的保留;hsp 68是以钙离子依赖性方式合成的。亚砷酸盐应激后,蛋白质合成对钙离子的需求在24小时内恢复,并且在此之前有一个过渡期,在此期间多核糖体响应钙离子而积累,但氨基酸掺入速率并未随之增加。对应激的反应被认为包括对正常蛋白质合成的急性抑制,这涉及到对钙离子刺激的起始过程的破坏,以及一个长期的恢复阶段,包括热休克蛋白的合成,同时伴随着不依赖钙离子的氨基酸掺入以及肽链延伸减缓。