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小麦胚芽延伸因子2与鸟苷核苷酸及核糖体的相互作用。

Interaction of elongation factor 2 from wheat germ with guanosine nucleotides and ribosomes.

作者信息

Twardowski T, Legocki A

出版信息

Acta Biochim Pol. 1977;24(1):21-33.

PMID:194440
Abstract
  1. The amino acid composition of wheat germ EF2 differs to some extent from that of elongation factors from mammals and bacteria. 2. The purified wheat germ EF2, similarly as the factors from other sources, is active in the: EF1-dependent polymerization of phenylalanine; ribosome-dependent GTP hydrolysis; binding of guanosine nucleotides; and ADP-ribosylation in the presence of diphtheria toxin. Fusidic acid at a concentration of 1 mM inhibits all these EF2-dependent reactions. 3. Diphtheria toxin in the presence of NAD+ inhibits polymerization of phenylalanine but does not effect GTP binding to EF2. 4. Binding of GDP to wheat germ EF2 is inhibited by ribosomes. During interaction with ribosomes, GTP in EF2-GTP complex is rapidly hydrolysed to GDP. Both GTP and 5'-guanylmethylenediphosphonate competitively inhibit formation of the ribosome-EF2-GDP complex due to the replacement of GDP from the complex. The latter is stabilized by fusidic acid.
摘要
  1. 小麦胚芽延伸因子2(EF2)的氨基酸组成在一定程度上不同于哺乳动物和细菌的延伸因子。2. 纯化后的小麦胚芽EF2与其他来源的因子类似,在以下方面具有活性:依赖EF1的苯丙氨酸聚合反应;依赖核糖体的GTP水解反应;鸟苷核苷酸结合反应;以及在白喉毒素存在下的ADP核糖基化反应。浓度为1 mM的夫西地酸会抑制所有这些依赖EF2的反应。3. 在NAD+存在的情况下,白喉毒素会抑制苯丙氨酸的聚合反应,但不影响GTP与EF2的结合。4. 核糖体抑制GDP与小麦胚芽EF2的结合。在与核糖体相互作用的过程中,EF2-GTP复合物中的GTP会迅速水解为GDP。由于复合物中的GDP被取代,GTP和5'-鸟苷亚甲基二磷酸均竞争性抑制核糖体-EF2-GDP复合物的形成。后者会被夫西地酸稳定下来。

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