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大肠杆菌乳糖载体中自发点突变和缺失突变导致的糖选择与转运改变。

Altered sugar selection and transport conferred by spontaneous point and deletion mutations in the lactose carrier of Escherichia coli.

作者信息

Shinnick S G, Varela M F

机构信息

Department of Biology, Eastern New Mexico University, Station 33, Portales, NM 88130, USA.

出版信息

J Membr Biol. 2002 Oct 1;189(3):191-9. doi: 10.1007/s00232-002-1013-9.

Abstract

Spontaneous mutants harboring the lacY gene on an F'-factor were isolated. Those mutants that failed to grow on 5 mM lactose minimal media plates were chosen for further study. The mutants showed striking mutations in the lactose carrier as well as in sugar selection properties during transport assays. DNA sequencing of the lacY gene of the mutants revealed the following mutations: M-1-I, R-144-W, G-370-C and a deletion of residues 387-392, located in helix 12 of the carrier. Transport studies indicated that ONPG transport ranged between 8 and 25% of normal for the M-1-I, G-370-C and D387-392 mutants and 51% of normal for the R-144-W mutant. The downhill transport of lactose was 2-fold greater than for melibiose in cells harboring the M-1-I mutation and 3-fold higher for cells with the G-370-C mutation. On the other hand, cells with the D387-392-deletion mutation showed no lactose downhill transport, but 47% melibiose transport. Accumulation of TMG, a lactose analog, was 3-fold higher than the accumulation of melibiose in cells with the G-370-C mutation. On the other hand, in cells with the D387-392 mutation, TMG accumulation was completely defective, whereas melibiose accumulation was 50-fold higher than that of TMG, indicating that one or more of these residues in helix 12 of the carrier play a role in the active transport of b-galactoside, but not a-galactoside sugars. Initial lactose downhill transport rates were too unreliable to obtain trustworthy kinetic data. TMG and melibiose accumulation activities were present, but severely reduced in the mutant containing the R144W mutation, confirming that Arg-144 is important for active transport. All transport data were normalized for expression levels. The results indicate that the affected residues play a role in dictating sugar specificity and transport in the lactose carrier. The results here are novel in that they represent mutations in unique locations along the lactose carrier protein. For example, the M-1-I mutation was located at the N-terminal cytoplasmic tail of the carrier. Furthermore, G-370-C was located in the periplasmic loop between helices 11 and 12, suggesting a role for residues in this loop in mediating sugar selection.

摘要

分离出了在F'-因子上携带lacY基因的自发突变体。选择那些在5 mM乳糖基本培养基平板上无法生长的突变体进行进一步研究。在转运分析中,这些突变体在乳糖载体以及糖选择特性方面表现出显著突变。对突变体的lacY基因进行DNA测序,发现了以下突变:M-1-I、R-144-W、G-370-C以及位于载体第12螺旋中的387 - 392位残基缺失。转运研究表明,对于M-1-I、G-370-C和D387-392突变体,ONPG转运量为正常水平的8%至25%,而R-144-W突变体为正常水平的51%。在携带M-1-I突变的细胞中,乳糖的顺向转运比蜜二糖高2倍,在携带G-370-C突变的细胞中高3倍。另一方面,具有D387-392缺失突变的细胞没有乳糖顺向转运,但有47%的蜜二糖转运。乳糖类似物TMG的积累在携带G-370-C突变的细胞中比蜜二糖的积累高3倍。另一方面,在具有D387-392突变的细胞中,TMG积累完全缺陷,而蜜二糖积累比TMG高50倍,这表明载体第12螺旋中的这些残基中的一个或多个在β-半乳糖苷的主动转运中起作用,但在α-半乳糖苷糖的转运中不起作用。初始乳糖顺向转运速率太不可靠,无法获得可靠的动力学数据。TMG和蜜二糖积累活性存在,但在含有R144W突变的突变体中严重降低,证实精氨酸-144对主动转运很重要。所有转运数据均根据表达水平进行了标准化。结果表明,受影响的残基在决定乳糖载体中的糖特异性和转运方面起作用。这里的结果是新颖的,因为它们代表了乳糖载体蛋白上独特位置的突变。例如,M-1-I突变位于载体的N端细胞质尾巴。此外,G-370-C位于第11和第12螺旋之间的周质环中,表明该环中的残基在介导糖选择方面起作用。

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