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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Glutamate 87 is important for menaquinol binding in DmsC of the DMSO reductase (DmsABC) from Escherichia coli
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Glutamate 87 is important for menaquinol binding in DmsC of the DMSO reductase (DmsABC) from Escherichia coli

机译:谷氨酸87对于薄荷醇在大肠杆菌DMSO还原酶(DmsABC)的DmsC中的结合很重要

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摘要

Escherichia coli dimethylsulfoxide (DMSO) reductase is a trimeric enzyme with a catalytic dimer (DmsAB) and an integral membrane anchor (DmsC). Using site-directed mutagenesis, we examined six residues in the periplasmic loop between helices two and three, potentially involved in menaquinol binding in DmsC. Mutants were characterised for growth, enzyme expression and activity, and 2-n-heptyl-4-hydroxoquinoline N-oxide (HOQNO) inhibitor binding. Mutations of leucine 66, glycine 67, arginine 71, phenylalanine 73 and serine 75 had no effect on menaquinol binding. Only a glutamate residue (E87) located in helix three was important for menaquinol binding. E87 was replaced with lysine, glutamine and aspartate. All three mutants were assembled into the membrane. Neither the lysine nor the glutamine mutant enzymes were able to support anaerobic growth on glycerol/DMSO minimal media or oxidise lapachol. The glutamine mutant bound the inhibitor with lower affinity compared to wild-type, whereas in the lysine mutant, binding was almost abolished. The aspartate mutant behaved as a wild-type enzyme. The data shows that E87 is important for menaquinol binding and oxidation and is likely to act as a proton acceptor in the menaquinol binding site.
机译:大肠杆菌二甲基亚砜(DMSO)还原酶是一种三聚酶,具有催化二聚体(DmsAB)和完整的膜锚(DmsC)。使用定点诱变,我们检查了两个和三个螺旋之间的周质环中的六个残基,可能与DmsC中甲萘醌的结合有关。表征突变体的生长,酶表达和活性以及2-正庚基-4-羟基喹啉N-氧化物(HOQNO)抑制剂的结合。亮氨酸66,甘氨酸67,精氨酸71,苯丙氨酸73和丝氨酸75的突变对甲萘醌的结合没有影响。仅位于螺旋三的谷氨酸残基(E87)对甲萘醌的结合很重要。用赖氨酸,谷氨酰胺和天冬氨酸代替E87。将所有三个突变体组装到膜中。赖氨酸和谷氨酰胺突变酶均不能支持在甘油/ DMSO基本培养基上的厌氧生长或氧化拉帕胆。与野生型相比,谷氨酰胺突变体以较低的亲和力结合抑制剂,而在赖氨酸突变体中,结合几乎被消除。天冬氨酸突变体表现为野生型酶。数据表明,E87对甲萘醌的结合和氧化很重要,并且很可能在甲萘醌的结合位点充当质子受体。

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