Karimi R, Ehrenberg M
Department of Molecular Biology, Biomedical Center, Uppsala, Sweden.
Eur J Biochem. 1994 Dec 1;226(2):355-60. doi: 10.1111/j.1432-1033.1994.tb20059.x.
The binding stability of the aminoacyl-tRNA site (A-site), estimated from the dissociation rate constant kd, of AcPhe-Phe-tRNA(Phe) has been studied for wild-type (wt), for hyperaccurate ribosomes altered in S12 [streptomycin-dependent (SmD) and streptomycin-pseudodependent (SmP) phenotypes], for error-prone ribosomes altered in S4 (Ram phenotype), and for ribosomes in complex with the error-inducing aminoglycosides streptomycin and neomycin. The AcPhe2-tRNA stability is slightly and identically reduced for SmD and SmP phenotypes in relation to wt ribosomes. The stability is increased (kd is reduced) for Ram ribosomes to about the same extent as the proof-reading accuracy is decreased for this phenotype. kd is also reduced by the action of streptomycin and neomycin, but much less than the reduction in proof-reading accuracy induced by streptomycin. Similar kd values for SmD and SmP ribosomes indicate that the cause of streptomycin dependence is not excessive drop-off of peptidyl-tRNAs from the A-site.
已针对野生型(wt)、在S12中发生改变的超精确核糖体[链霉素依赖型(SmD)和链霉素假依赖型(SmP)表型]、在S4中发生改变的易错核糖体(Ram表型)以及与诱导错误的氨基糖苷类抗生素链霉素和新霉素形成复合物的核糖体,研究了从解离速率常数kd估算的氨酰tRNA位点(A位点)上AcPhe - Phe - tRNA(Phe)的结合稳定性。与wt核糖体相比,SmD和SmP表型的AcPhe2 - tRNA稳定性略有且同等程度地降低。对于Ram核糖体,稳定性增加(kd降低),其程度与该表型的校对准确性降低程度大致相同。链霉素和新霉素的作用也会使kd降低,但远小于链霉素诱导的校对准确性降低程度。SmD和SmP核糖体的kd值相似,表明链霉素依赖的原因并非肽基tRNA从A位点过度脱落。