泰特
抑制因子
诱导剂
DNA
基因
螺旋(腹足类)
突变体
操作员(生物学)
生物物理学
基因表达
化学
生物
四环素
遗传学
抗生素
生态学
蜗牛
作者
Wolfram Saenger,Winfried Hinrichs,Peter Orth,Dirk Schnappinger,Wolfgang Hillen
摘要
The tetracycline repressor (TetR) regulates the most abundant resistance mechanism against the antibiotic tetracycline in grain-negative bacteria. The TetR protein and its mutants are commonly used as control elements to regulate gene expression in higher eukaryotes. We present the crystal structure of the TetR homodimer in complex with its palindromic DNA operator at 2.5 A resolution. Comparison to the structure of TetR in complex with the inducer tetracycline-Mg2+ allows the mechanism of induction to be deduced. Inducer binding in the repressor core initiates conformational changes starting with C-terminal unwinding and shifting of the short helix a6 in each monomer. This forces a pendulum-like motion of helix a4, which increases the separation of the attached DNA binding domains by 3 A, abolishing the affinity of TetR for its operator DNA.
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