Götz F, Dabbs E R, Gualerzi C O
Max-Planck-Institut für Molekulare Genetik, Berlin, Germany.
Biochim Biophys Acta. 1990 Aug 27;1050(1-3):93-7. doi: 10.1016/0167-4781(90)90147-t.
The 30S ribosomal subunits derived from Escherichia coli TA114, a a temperature-sensitive mutant lacking ribosomal protein S20, were shown to be defective in two ways: (a) they have a reduced capacity for association with the 50S ribosomal subunit which results in the impairment of most of the functions requiring a coordinated interaction between the two subunits; (b) they are defective in functions which do not require their interaction with the large subunit (i.e., the formation of ternary complexes with aminocyl-tRNAs and templates, including the formation of 30S initiation complexes with fMet-tRNA and mRNA). The 30S (-S20) subunits seem to interact normally with both template and aminoacyl-tRNA individually, but appear to be impaired in the rate-limiting isomerization step leading to the formation of a codon-anticodon interaction in the P site.
源自大肠杆菌TA114(一种缺乏核糖体蛋白S20的温度敏感突变体)的30S核糖体亚基在两个方面存在缺陷:(a)它们与50S核糖体亚基的结合能力降低,这导致大多数需要两个亚基协同相互作用的功能受损;(b)它们在不需要与大亚基相互作用的功能方面存在缺陷(即与氨酰-tRNA和模板形成三元复合物,包括与fMet-tRNA和mRNA形成30S起始复合物)。30S(-S20)亚基似乎分别与模板和氨酰-tRNA正常相互作用,但在导致P位点密码子-反密码子相互作用形成的限速异构化步骤中似乎受损。