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Deregulation of acetohydroxy-acid synthase: Loss of allosteric inhibition conferred by mutations in the catalytic subunit

机译:乙酰羟酸合酶的失调:催化亚基突变赋予的变构抑制作用丧失

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Acetohydroxy-acid synthases (AHAS) of two mutant strains Streptomyces cinnamonensis ACB-NLR-2 and BVR-18 were chosen for this study for their apparent activation by valine, which regularly acts as an allosteric inhibitor. Sequencing the ilvB genes coding for the AHAS catalytic subunit revealed two distant changes in the mutants, ΔQ217 and E139A, respectively. Homology modeling was used to propose the structural changes caused by those mutations. In the mutant strain ACB-NLR-2 (resistant to 2-amino-3-chlorobutyrate and norleucine), deletion of Q217 affected a helix in ß-domain, distant from the active center. As no mutation was found in the regulatory subunit of this strain, ΔQ217 in IlvB was supposed to be responsible for the observed valine activation, probably via changed properties on the proposed regulatory-catalytic subunit interface. In mutant strain BVR-18 (resistant to 2-oxobutyrate), substitution E139A occurred in a conservative loop near the active center. In vitro AHAS activity assay with the enzyme reconstituted from the wild-type regulatory and BVR-18 catalytic subunits proved that the substitution in the catalytic subunit led to the apparent activation of AHAS by valine. We suggest that the conservative loop participated in a conformational change transfer to the active center during the allosteric regulation.
机译:本研究选择了两个突变株肉桂链霉菌ACB-NLR-2和BVR-18的乙酰羟酸合酶(AHAS),因为它们明显被缬氨酸激活,而缬氨酸通常充当变构抑制剂。对编码AHAS催化亚基的ilvB基因进行测序后,发现突变体ΔQ217和E139A分别发生了两个遥远的变化。同源建模被用来提出那些突变引起的结构变化。在突变菌株ACB-NLR-2(对2-氨基-3-氯丁酸和正亮氨酸有抗性)中,Q217的​​缺失影响了远离活性中心的ß结构域中的螺旋结构。由于在该菌株的调节亚基中未发现突变,因此IlvB中的ΔQ217可能是所观察到的缬氨酸活化的原因,可能是通过提议的调节催化亚基界面的性质改变所致。在突变株BVR-18(对2-氧代丁酸有抗性)中,取代E139A发生在活性中心附近的保守环中。用野生型调节和BVR-18催化亚基重构的酶进行体外AHAS活性测定,证明催化亚基中的取代导致缬氨酸明显活化了AHAS。我们建议,在变构调节过程中,保守环参与构象变化转移到活性中心。

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