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ermK Leader Peptide : Amino Acid Sequence Critical for Induction by Erythromycin
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  • ermK Leader Peptide : Amino Acid Sequence Critical for Induction by Erythromycin
  • ermK Leader Peptide : Amino Acid Sequence Critical for Induction by Erythromycin
저자명
Kwon. Ae-Ran,Min. Yu-Hong,Yoon. Eun-Jeong,Kim. Jung-A,Shim. Mi-Ja,Choi. Eung-Chil
간행물명
Archives of pharmacal research : a publication of the Pharmaceutical Society of Korea
권/호정보
2006년|29권 12호|pp.1154-1157 (4 pages)
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대한약학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The ermK gene from Bacillus lichenformis encodes an inducible rRNA methylase that confers resistance to the macrolide-lincosamide-streptogramin B antibiotics. The ermK mRNA leader sequence has a total length of 357 nucleotides and encodes a 14-amino acid leader peptide together with its ribosome binding site. The secondary structure of ermK leader mRNA and a leader peptide sequence have been reported as the elements that control expression. In this study, the contribution of specific leader peptide amino acid residues to induction of ermK was studied using the PCR-based megaprimer mutation method. ermK methylases with altered leader peptide codons were translationally fused to E. coli ${eta}-galactosidase$ reporter gene. The deletion of the codons for Thr-2 through Ser-4 reduced inducibility by erythromycin, whereas that for Thr-2 and His-3 was not. The replacement of the individual codons for Ser-4, Met-5 and Arg-6 with termination codon led to loss of inducibility, but stop mutation of codon Phe-9 restored inducibility by erythromycin. Collectively, these findings suggest that the codons for residue 4, 5 and 6 comprise the critical region for induction. The stop mutation at Leu-7 expressed constitutively ermK gene. Thus, ribosome stalling at codon 7 appears to be important for ermK induction.