Atkinson B G, Blaker T W, Tomlinson J, Dean R L
Department of Zoology, University of Western Ontario, London, Canada.
J Biol Chem. 1990 Aug 25;265(24):14156-62.
Heat-shock avian reticulocytes exhibit enhanced synthesis of a greater than 450-kDa protein. Biochemical, immunochemical, and visual criteria were used to identify this protein as the iron storage protein ferritin. The 21-kDa ferritin subunits synthesized during heat shock are similar in size and pI to the subunits that are constitutively synthesized. The 2-6-fold heat shock-induced increase in ferritin synthesis appears to be regulated at the translational level as it is insensitive to actinomycin D. Northern and dot-blot hybridization analyses of cytoplasmic RNAs with avian H-ferritin cDNA fragments support the contention that the heat shock stimulation of ferritin synthesis is translationally regulated. These latter studies demonstrate that the heat shock-induced synthesis of ferritin does not involve a change in the amount of total cytoplasmic ferritin mRNAs, but rather appears to entail a translocation of cytoplasmic H-ferritin mRNAs from a polyribosome-free, translationally repressed state to a polyribosome-associated, translationally active state. These results suggest that thermally stressed avian reticulocytes have a critical and functional need for the synthesis of additional ferritin and that its enhanced synthesis, unlike the new and/or enhanced synthesis of the well-established avian heat shock proteins, is regulated wholly at the translational level.
热休克禽类网织红细胞中大于450 kDa的蛋白质合成增强。采用生化、免疫化学和可视化标准将该蛋白质鉴定为铁储存蛋白铁蛋白。热休克期间合成的21 kDa铁蛋白亚基在大小和等电点上与组成型合成的亚基相似。热休克诱导的铁蛋白合成增加2 - 6倍似乎在翻译水平受到调控,因为它对放线菌素D不敏感。用禽类H - 铁蛋白cDNA片段对细胞质RNA进行Northern和斑点杂交分析支持了铁蛋白合成的热休克刺激是在翻译水平调控的观点。这些后续研究表明,热休克诱导的铁蛋白合成并不涉及细胞质中铁蛋白总mRNA量的变化,而是似乎需要将细胞质H - 铁蛋白mRNA从无多聚核糖体、翻译抑制状态转运到与多聚核糖体相关的翻译活性状态。这些结果表明,热应激的禽类网织红细胞对额外铁蛋白的合成有至关重要的功能需求,并且其合成增强,与已确定的禽类热休克蛋白的新合成和/或合成增强不同,完全在翻译水平受到调控。