Sapunaric Frédéric M, Levy Stuart B
The Center for Adaptation Genetics and Drug Resistance and Department of Molecular Biology and Microbiology, Tufts University School of Medicine, 136 Harrison Ave, Boston, MA 02111, USA.
Microbiology (Reading). 2005 Jul;151(Pt 7):2315-2322. doi: 10.1099/mic.0.27997-0.
Cysteine replacement of Asp190, Glu192 and Ser201 residues in the cytoplasmic interdomain loop of the TetA(B) tetracycline efflux antiporter from Tn10 reduces tetracycline resistance [Tamura, N., Konishi, S., Iwaki, S., Kimura-Someya, T., Nada, S. & Yamaguchi, A. (2001). J Biol Chem 276, 20330-20339]. It was found that these Cys substitutions altered the substrate specificity of TetA(B), increasing the relative resistance to doxycycline and minocycline over that to tetracycline by three- to sixfold. Substitutions of Asp190 and Glu192 by Ala, Asn and Gln also impaired the ability of TetA(B) to mediate tetracycline resistance while Ser201Ala and Ser201Thr substitutions did not. A Leu9Phe substitution in the first transmembrane helix of TetA(B) suppressed the Ser201Cys mutation, undoing the alterations in resistance and specificity. That the interdomain loop might contact substrate during transport, as is suggested from its role in substrate specificity, is unexpected considering that the primary sequence in the loop is not conserved among a group of otherwise homologous TetA proteins. However, in the interdomain loop of 11 of 14 homologous TetA efflux proteins, computational analysis revealed a short alpha-helix, which includes some residues affecting activity and substrate specificity. Perhaps this conserved secondary structure accounts for the role of the non-conserved interdomain loop in TetA function.
来自Tn10的TetA(B)四环素外排反向转运蛋白胞质结构域间环中Asp190、Glu192和Ser201残基被半胱氨酸取代会降低四环素抗性[田村,N.,小西,S.,岩木,S.,木村-索梅亚,T.,名田,S. & 山口,A.(2001年)。《生物化学杂志》276,20330 - 20339]。研究发现,这些半胱氨酸取代改变了TetA(B)的底物特异性,使其对强力霉素和米诺环素的相对抗性比四环素增加了三到六倍。用丙氨酸、天冬酰胺和谷氨酰胺取代Asp190和Glu192也损害了TetA(B)介导四环素抗性的能力,而Ser201Ala和Ser201Thr取代则没有。TetA(B)第一个跨膜螺旋中的Leu9Phe取代抑制了Ser201Cys突变,消除了抗性和特异性的改变。考虑到环中的一级序列在一组其他方面同源的TetA蛋白中并不保守,结构域间环在转运过程中可能与底物接触(正如其在底物特异性方面的作用所暗示的那样),这是出乎意料的。然而,在14个同源TetA外排蛋白中的11个的结构域间环中,计算分析揭示了一个短的α螺旋,其中包括一些影响活性和底物特异性的残基。也许这种保守的二级结构解释了非保守的结构域间环在TetA功能中的作用。