首页> 外文期刊>The Journal of Membrane Biology >Amino Acids that Confer Transport of Raffinose and Maltose Sugars in the Raffinose Permease (RafB) of Escherichia coli as Implicated by Spontaneous Mutations at Val-35, Ser-138, Ser-139, Gly-389 and Ile-391
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Amino Acids that Confer Transport of Raffinose and Maltose Sugars in the Raffinose Permease (RafB) of Escherichia coli as Implicated by Spontaneous Mutations at Val-35, Ser-138, Ser-139, Gly-389 and Ile-391

机译:通过在Val-35,Ser-138,Ser-139,Gly-389和Ile-391上的自发突变牵涉的氨基酸,可在大肠杆菌的棉子糖通透酶(RafB)中提供棉子糖和麦芽糖的运输。

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In order to identify amino acid residues in the Escherichia coli raffinose-H+ permease (RafB) that play a role in sugar selection and transport, we first incubated E. coli HS4006 containing plasmid pRU600 (expresses inducible raffinose permease and α-galactosidase) on maltose MacConkey indicator plates overnight. Initially, all colonies were white, indicating no fermentation of maltose. Upon further incubation, 100 mutants appeared red. pRU600 DNA was prepared from 55 mutants. Five mutants transferred the phenotype for fermentation of maltose (red). Plasmid DNA from five maltose-positive phenotype transformants was prepared and sequenced, revealing three distinct types of mutations. Two mutants exhibited Val-35→Ala (MT1); one mutant had Ile-391→Ser (MT2); and two mutants had Ser-138→Asp, Ser-139→Leu and Gly-389→Ala (MT3). Transport studies of [3H]-maltose showed that cells harboring MT1, MT2 and MT3 had greater uptake (P ≤ 0.05) than cells harboring wild-type RafB. However, [14C]-raffinose uptake was reduced in all mutant cells (P ≤ 0.05) with MT1, MT2 and MT3 mutants compared to cells harboring wild-type RafB. Kinetic analysis showed enhanced apparent K m values for maltose and reduced V max/ K m ratios for raffinose compared to wild-type values. The apparent K i value of maltose for RafB indicates a competitive relationship between maltose and raffinose. Maltose “uphill” accumulation was greater for mutants (P ≤ 0.05) than for cells with wild-type RafB. Thus, we implicate residues in RafB that are responsible for raffinose transport and suggest that the substituted residues in RafB dictate structures that enhance transport of maltose.
机译:为了鉴定大肠杆菌棉子糖-H + 通透酶(RafB)中的糖残基,这些残基在糖的选择和运输中起作用,我们首先孵育了含有质粒pRU600的大肠杆菌HS4006(表达可诱导的棉子糖通透酶和α-半乳糖苷酶)在麦芽糖MacConkey指示板上过夜。最初,所有菌落均为白色,表明没有麦芽糖发酵。进一步孵育后,有100个突变体显示为红色。从55个突变体中制备了pRU600 DNA。五个突变体转移了麦芽糖发酵的表型(红色)。制备并测序了来自五个麦芽糖阳性表型转化体的质粒DNA,揭示了三种不同类型的突变。两个突变体表现出Val-35→Ala(MT1); 1个突变体具有Ile-391→Ser(MT2); 2个突变体具有Ser-138→Asp,Ser-139→Leu和Gly-389→Ala(MT3)。 [3 H]-麦芽糖的转运研究表明,与野生型RafB相比,具有MT1,MT2和MT3的细胞具有更高的摄取(P≤0.05)。然而,与携带野生型RafB的细胞相比,在所有带有MT1,MT2和MT3突变体的突变细胞中,[14 C]-棉子糖的摄取均降低(P≤0.05)。动力学分析表明,与野生型相比,麦芽糖的表观K m 值增加,而棉子糖的V max / K m 比值降低。麦芽糖对RafB的表观K i值表明麦芽糖和棉子糖之间存在竞争关系。突变体(P≤0.05)的麦芽糖“上坡”积累大于野生型RafB的细胞。因此,我们暗示RafB中负责棉子糖运输的残基,并建议RafB中的取代残基决定增强麦芽糖运输的结构。

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