GLOBAL ARREST OF TRANSLATION DURING INVERTEBRATE QUIESCENCE

被引:51
作者
HOFMANN, GE
HAND, SC
机构
[1] Dept. Environ., Pop., Organismic B., University of Colorado, Boulder
[2] Department of Zoology, Oregon State University, Corvallis
关键词
ANOXIA; ARTEMIA FRANCISCANA; DORMANCY; INTRACELLULAR PH; PROTEIN SYNTHESIS;
D O I
10.1073/pnas.91.18.8492
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Comparing the translational capacities of cell-free systems from aerobically developing embryos of the brine shrimp Artemia franciscana vs. quiescent embryos has revealed a global arrest of protein synthesis. Incorporation rates of [H-3]leucine by lysates from 4-h anoxic embryos were 8% of those from aerobic (control) embryos, when assayed at the respective pH values measured for each treatment in vivo. Exposure of embryos to 4 h of aerobic acidosis (elevated CO2 in the presence of oxygen) suppressed protein synthesis to 3% of control values. These latter two experimental treatments promote developmental arrest of Artemia embryos and, concomitantly, cause acute declines in intracellular pH. When lysates from each treatment were assayed over a range of physiologically relevant pH values (pH 6.4-8.0), amino acid incorporation rates in lysates from quiescent embryos were consistently lower than values for the aerobic controls. Acute reversal of pH to alkaline values during the 6-min assays was not sufficient to return the incorporation rates of quiescent lysates to control values, Thus, a stable alteration in translational capacity of quiescent lysates is indicated. Addition of exogenous mRNA did hot rescue the suppressed protein synthesis in quiescent lysates, which suggests that the acute blockage of amino acid incorporation is apparently not due to limitation in message. Thus, the results support a role for intracellular pH as an initial signaling event in translational control during quiescence yet, at the same time, indicate that a direct proton effect on the translational machinery is not the sole proximal agent for biosynthetic arrest in this primitive crustacean.
引用
收藏
页码:8492 / 8496
页数:5
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