Kwast K E, Hand S C
Department of Environmental, Population, and Organismic Biology, University of Colorado, Boulder 80309-0334.
Am J Physiol. 1993 Dec;265(6 Pt 2):R1238-46. doi: 10.1152/ajpregu.1993.265.6.R1238.
Optimal conditions were developed for measuring rates of protein synthesis in isolated mitochondria from encysted embryos of Artemia franciscana to 1) identify the required chemical constituents, 2) assess the influence of extramitochondrial pH on protein synthesis, and 3) investigate potential mechanisms coordinating nuclear and mitochondrial gene expression. Isolation procedures resulted in intact, highly coupled mitochondria [respiratory control ratio = 6.48 +/- 0.43 (SE), n = 21]. Requirements for maximal rates of protein synthesis, measured as incorporation of [3H]leucine (60 microM), included an oxidizable carbon source (10 mM succinate), adenine nucleotides (1.5 mM ADP), phosphate (10 mM), K+ (125 mM), Mg2+ (10 mM), amino acids (0.3 mM of each), sucrose or trehalose (500 mM), EGTA (1 mM), and bovine serum albumin (1 mg/ml). Rates were linear for 60 min at 25 degrees C (r = 0.99). Fluorography of translated products revealed 13 peptides. Previous research has shown that anoxia-induced acidification of intracellular pH (pHi) results in suppression of protein biosynthesis, as judged by cytochrome-c oxidase synthesis. In the present study, mitochondrial protein synthesis was acutely sensitive to external pH, with 80% inhibition observed by lowering pH from 7.5 to 6.8. Thus acidification of pHi may serve as one intracellular signal contributing to a coordinated suppression of both cytoplasmic and mitochondrial protein synthesis during transitions from active to anoxia-induced quiescent states.
已确定了用于测量卤虫包囊胚胎分离线粒体中蛋白质合成速率的最佳条件,以:1)确定所需的化学成分,2)评估线粒体外pH对蛋白质合成的影响,以及3)研究协调核基因和线粒体基因表达的潜在机制。分离程序得到了完整的、高度偶联的线粒体[呼吸控制率=6.48±0.43(标准误),n = 21]。以[3H]亮氨酸(60 microM)掺入量衡量的最大蛋白质合成速率的要求包括可氧化碳源(10 mM琥珀酸)、腺嘌呤核苷酸(1.5 mM ADP)、磷酸盐(10 mM)、K+(125 mM)、Mg2+(10 mM)、氨基酸(每种0.3 mM)、蔗糖或海藻糖(500 mM)、乙二醇双四乙酸(1 mM)和牛血清白蛋白(1 mg/ml)。在25℃下,速率在60分钟内呈线性(r = 0.99)。翻译产物的荧光自显影片显示有13种肽。先前的研究表明,由细胞色素c氧化酶合成判断,缺氧诱导的细胞内pH(pHi)酸化会导致蛋白质生物合成受到抑制。在本研究中,线粒体蛋白质合成对外部pH极为敏感,将pH从7.5降至6.8时观察到80%的抑制。因此,pHi酸化可能是一种细胞内信号,有助于在从活跃状态转变为缺氧诱导的静止状态期间,对细胞质和线粒体蛋白质合成进行协调抑制。