Spremulli G H, Spremulli L L
Department of Chemistry, University of North Carolina, Chapel Hill 27514.
Biochem Biophys Res Commun. 1987 Nov 13;148(3):1490-5. doi: 10.1016/s0006-291x(87)80300-5.
The effects of varying concentrations of GDP on the stability of homologous and heterologous EF-Tu:EF-Ts complexes formed with the elongation factors from the chloroplast of Euglena gracilis and from E. coli have been investigated. The complexes formed with chloroplast EF-Ts were significantly more stable to GDP-induced dissociation than those formed with E. coli EF-Ts. The complex between chloroplast EF-Tu and chloroplast EF-Ts required nearly 1,000-fold higher concentrations of GDP for dissociation than the complex between chloroplast EF-Tu and E. coli EF-Ts. The E. coli EF-Tu:chloroplast EF-Ts complex required nearly 100-fold higher levels of GDP for dissociation than the E. coli EF-Tu:E. coli EF-Ts complex.
已研究了不同浓度的GDP对与纤细裸藻叶绿体和大肠杆菌的延伸因子形成的同源和异源EF-Tu:EF-Ts复合物稳定性的影响。与叶绿体EF-Ts形成的复合物比与大肠杆菌EF-Ts形成的复合物对GDP诱导的解离显著更稳定。叶绿体EF-Tu和叶绿体EF-Ts之间的复合物解离所需的GDP浓度比叶绿体EF-Tu和大肠杆菌EF-Ts之间的复合物高近1000倍。大肠杆菌EF-Tu:叶绿体EF-Ts复合物解离所需的GDP水平比大肠杆菌EF-Tu:大肠杆菌EF-Ts复合物高近100倍。