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Role of conserved residues in hydrophilic loop 8-9 of the lactose permease.

机译:保守的残基在乳糖通透酶的亲水环8-9中的作用。

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摘要

A peptide motif, GXXX(D/E)(R/K)XG(R/K)(R/K), has been conserved in a large group of evolutionarily related membrane proteins that transport small molecules across the membrane. Within the superfamily, this motif is located in two cytoplasmic loops that connect transmembrane segments 2 and 3 and transmembrane segments 8 and 9. In a previous study concerning the loop 2-3 motif of the lactose permease (A. E. Jessen-Marshall, N. J. Paul, and R. J. Brooker, J. Biol. Chem. 270:16251-16257, 1995), it was shown that the first-position glycine and the fifth-position aspartate are critical for transport activity since a variety of site-directed mutations greatly diminished the rate of transport. In the current study, a similar approach was used to investigate the functional significance of the conserved residues in the loop 8-9 motif. In the wild-type lactose permease, however, this motif has been evolutionarily modified so that the first-position glycine (an alpha-helix breaker) has been changed to proline (also a helix breaker); the fifth position has been changed to an asparagine; and one of the basic residues has been altered. In this investigation, we made a total of 28 single and 7 double mutants within the loop 8-9 motif to explore the functional importance of this loop. With regard to transport activity, amino acid substitutions within the loop 8-9 motif tend to be fairly well tolerated. Most substitutions produced permeases with normal or mildly defective transport activities. However, three substitutions at the first position (i.e., position 280) resulted in defective lactose transport. Kinetic analysis of position 280 mutants indicated that the defect decreased the Vmax for lactose uptake. Besides substitutions at position 280, a Gly-288-to-Thr mutant had the interesting property that the kinetic parameters for lactose uptake were normal yet the rates of lactose efflux and exchange were approximately 10-fold faster than wild-type rates. The results of this study suggest that loop 8-9 may facilitate conformational changes that translocate lactose.
机译:肽基序GXXX(D / E)(R / K)XG(R / K)(R / K)已保存在一大批与进化相关的膜蛋白中,这些蛋白在膜上转运小分子。在超家族中,该基序位于连接跨膜段2和3以及跨膜段8和9的两个胞质环中。在先前有关乳糖通透酶2-3环基序的研究中(AE Jessen-Marshall,NJ Paul, (RJ Brooker,J。Biol。Chem。270:16251-16257,1995),表明第一位甘氨酸和第五位天门冬氨酸对转运活性至关重要,因为各种定点突变大大降低了其活性。运输速度。在当前的研究中,使用类似的方法来研究8-9环基序中保守残基的功能意义。然而,在野生型乳糖通透酶中,该基序已经过进化修饰,因此第一位甘氨酸(α-螺旋破坏剂)已更改为脯氨酸(也是螺旋破坏剂)。第五位改为天冬酰胺;基本残基之一已被改变。在这项研究中,我们在8-9环基序中总共制作了28个单突变体和7个双突变体,以探索该环的功能重要性。关于转运活性,在环8-9基序内的氨基酸取代倾向于被很好地耐受。大多数替代产生的渗透酶具有正常或轻度缺陷的运输活性。然而,在第一位置(即位置280)的三个取代导致缺陷的乳糖转运。 280位突变体的动力学分析表明,该缺陷降低了乳糖摄取的Vmax。除了在280位的取代外,Gly-288-Thr突变体还具有有趣的特性,即乳糖摄取的动力学参数是正常的,但乳糖的外排和交换速率比野生型速率快约10倍。这项研究的结果表明环8-9可能促进易位乳糖的构象变化。

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