Walton G M, Gill G N
Biochim Biophys Acta. 1976 Jan 19;418(2):195-203. doi: 10.1016/0005-2787(76)90069-1.
Formation of the ternary [Met-tRNAf - GTP - eukaryotic initiation factor 2] protein synthesis initiation complex in rabbit reticulocyte ribosomal eluates is dependent on the GTP: GDP ratio and on the adenylate energy charge. The elements controlling ternary initiation complex formation have been studied in a reconstituted system contianing eukaryotic initiation factor 2 and nucleoside diphosphate kinase purified from the ribosomal eluate. The concentration of GTP required for half maximal formation of the ternary initiation complex is 2.5 - 10(6) M; GDP is a potent competitive inhibitor with Ki equals 3.4 - 10(7) M. Sensitive control of ternary initiation complex formation by the adenylate energy charge occurs through nucleoside diphosphate kinase regulation of the GTP : GDP ratio. Over a wide range of GTP : GDP ratios, 50% of maximal ternary initiation complex formation is observed at an adenylate energy charge of 0.85-0.90 resembling that seen in the unfractionated system. Small changes in adenylate energy charge near this value result in significant changes in the extent of ternary initiation complex formation. Since GTP is continually hydrolyzed to GDP during protein synthesis and since GDP is a competitive inhibitor of GTP binding to several of the protein factors necessary for mRNA translation, the synthetic process provides sensitive control by product inhibition. Ribosome-associated nucleoside diphosphate kinase control of GTP regeneration in response to the adenylate energy charge provides one mechanism for linking protein synthesis to the nutrient state and energy charge of the cell.
在兔网织红细胞核糖体洗脱液中三元[甲硫氨酰 - tRNAf - GTP - 真核起始因子2]蛋白质合成起始复合物的形成取决于GTP与GDP的比例以及腺苷酸能荷。在一个含有从核糖体洗脱液中纯化的真核起始因子2和核苷二磷酸激酶的重组系统中,对控制三元起始复合物形成的因素进行了研究。三元起始复合物形成半最大值所需的GTP浓度为2.5 - 10⁻⁶ M;GDP是一种有效的竞争性抑制剂,Ki等于3.4 - 10⁻⁷ M。腺苷酸能荷对三元起始复合物形成的敏感控制是通过核苷二磷酸激酶对GTP与GDP比例的调节实现的。在很宽的GTP与GDP比例范围内,在腺苷酸能荷为0.85 - 0.90时观察到50%的最大三元起始复合物形成,这与在未分级系统中看到的情况相似。在此值附近腺苷酸能荷的微小变化会导致三元起始复合物形成程度的显著变化。由于在蛋白质合成过程中GTP不断水解为GDP,并且由于GDP是GTP与mRNA翻译所需的几种蛋白质因子结合的竞争性抑制剂,合成过程通过产物抑制提供了敏感控制。核糖体相关的核苷二磷酸激酶响应腺苷酸能荷对GTP再生的控制提供了一种将蛋白质合成与细胞的营养状态和能荷联系起来的机制。