首页> 外文期刊>Biochemistry >Site-specificity of the second-site suppressor mutation of the Asp-285-->Asn mutant of metal-tetracycline/H+ antiporter of Escherichia coli and the effects of amino acid substitutions at the first and second sites.
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Site-specificity of the second-site suppressor mutation of the Asp-285-->Asn mutant of metal-tetracycline/H+ antiporter of Escherichia coli and the effects of amino acid substitutions at the first and second sites.

机译:大肠杆菌金属四环素/ H +反转运蛋白的Asp-285-> Asn突变体的第二位抑制子突变的位点特异性以及在第一和第二位点的氨基酸取代的影响。

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    摘要

    The deleterious effect of the mutation of Asp-285 to Asn of the metal-tetracycline/H+ antiporter (TetA) of Escherichia coli is suppressed by the second-site mutation of Ala-220 to an acidic amino acid residue (Yamaguchi, A., O'yauchi, R., Someya, Y., & Sawai, T. (1993) J. Biol. Chem. 268, 26990-26995). In this study, site-specific second-site Glu mutants as to 11 different positions around position 220 were established from the Asp-285-->Asn mutant TetA protein. Among them, only the Ala-220-->Glu mutant completely suppressed the deleterious effect of the Asp-285-->Asn mutation, indicating that position 220 is highly specific for the suppression. Although E. coli cells producing second-site Glu mutants as to positions 213, 216, 217, 218, 219, 221, 222, and 223 of the Asn-285 mutant were as tetracycline sensitive as the host cells without TetA, Gly-224-->Glu and Pro-227-->Glu second-site mutants of the Asn-285 mutant conferred low-level tetracycline resistance, the levels decreasing in this order. These two positions and position 220 are on the same side of putative transmembrane helix VII. The Phe-289-->Asp mutation, which is located at a position one-alpha-helical-turn downstream from Asp-285 in the same putative helix, IX, did not suppress the Asn-285 mutation. The introduction of an acidic residue at the second site was essential for suppression of the Asn-285 mutation because Lys-220 and Gln-220 second-site mutants of the Asn-285 mutant showed very low tetracycline resistance.(ABSTRACT TRUNCATED AT 250 WORDS)
    机译:通过将Ala-220的第二个位点突变为酸性氨基酸残基,可以抑制Asp-285突变为大肠杆菌金属四环素/ H +反转运蛋白(TetA)的Asn的有害作用(Yamaguchi,A。, O'yauchi,R.,Someya,Y。,&Sawai,T。(1993)J.Biol.Chem.268,26990-26995)。在这项研究中,从Asp-285-> Asn突变体TetA蛋白建立了针对位置220周围11个不同位置的特定位点第二位Glu突变体。其中,只有Ala-220-> Glu突变体完全抑制了Asp-285-> Asn突变的有害作用,表明220位对抑制具有高度特异性。尽管产生Asn-285突变体第213、216、217、218、219、221、222和223位第二位Glu突变体的大肠杆菌细胞与没有TetA的宿主细胞一样对四环素敏感,但Gly-224 -> Glu和Pro-227-> Asn-285突变体的Glu第二位突变体赋予了低水平的四环素抗性,其水平按此顺序降低。这两个位置和位置220在推定的跨膜螺旋VII的同一侧。 Phe-289-> Asp突变位于同一个推定螺旋IX中位于Asp-285下游一α-螺旋转角的位置,没有抑制Asn-285突变。在第二个位点引入酸性残基对于抑制Asn-285突变是必不可少的,因为Asn-285突变体的Lys-220和Gln-220第二个位点突变体显示出极低的四环素抗性。(摘要截短为250字) )

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