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一个保守酪氨酸残基在高电位铁硫蛋白中的作用。

The role of a conserved tyrosine residue in high-potential iron sulfur proteins.

作者信息

Iwagami S G, Creagh A L, Haynes C A, Borsari M, Felli I C, Piccioli M, Eltis L D

机构信息

Biotechnology Laboratory, University of British Columbia, Vancouver, Canada.

出版信息

Protein Sci. 1995 Dec;4(12):2562-72. doi: 10.1002/pro.5560041213.

Abstract

Conserved tyrosine-12 of Ectothiorhodospira halophila high-potential iron sulphur protein (HiPIP) iso-I was substituted with phenylalanine (Y12F), histidine (Y12H), tryptophan (Y12W), isoleucine (Y12I), and alanine (Y12A). Variants Y12A and Y12I were expressed to reasonable levels in cells grown at lower temperatures, but decomposed during purification. Variants Y12F, Y12H, and Y12W were substantially destabilized with respect to the recombinant wild-type HiPIP (rcWT) as determined by differential scanning calorimetry over a pH range of 7.0-11.0. Characterization of the Y12F variant by NMR indicates that the principal structural differences between this variant and the rcWT HiPIP result from the loss of the two hydrogen bonds of the Tyr-12 hydroxyl group with Asn-14 O delta 1 and Lys-59 NH, respectively. The effect of the loss of the latter interaction is propagated through the Lys-59/Val-58 peptide bond, thereby perturbing Gly-46. The delta delta GDapp of Y12F of 2.3 kcal/mol with respect to rcWT HiPIP (25 degrees C, pH 7.0) is entirely consistent with the contribution of these two hydrogen bonds to the stability of the latter. CD measurements show that Tyr-12 influences several electronic transitions within the cluster. The midpoint reduction potentials of variants Y12F, Y12H, and Y12W were 17, 19, and 22 mV (20 mM MOPS, 0.2 M sodium chloride, pH 6.98, 25 degrees C), respectively, higher than that of rcWT HiPIP. The current results indicate that, although conserved Tyr-12 modulates the properties of the cluster, its principle function is to stabilize the HiPIP through hydrogen bonds involving its hydroxyl group and electrostatic interactions involving its aromatic ring.

摘要

嗜盐外硫红螺菌高电位铁硫蛋白(HiPIP)同工型I中保守的酪氨酸-12被苯丙氨酸(Y12F)、组氨酸(Y12H)、色氨酸(Y12W)、异亮氨酸(Y12I)和丙氨酸(Y12A)取代。变体Y12A和Y12I在较低温度下生长的细胞中表达至合理水平,但在纯化过程中分解。通过差示扫描量热法在7.0 - 11.0的pH范围内测定,变体Y12F、Y12H和Y12W相对于重组野生型HiPIP(rcWT)显著不稳定。通过核磁共振对Y12F变体的表征表明,该变体与rcWT HiPIP之间的主要结构差异分别源于Tyr-12羟基与Asn-14 Oδ1和Lys-59 NH的两个氢键的丧失。后一种相互作用丧失的影响通过Lys-59/Val-58肽键传播,从而扰动Gly-46。相对于rcWT HiPIP(25℃,pH 7.0),Y12F的ΔΔGDapp为2.3 kcal/mol,这与这两个氢键对后者稳定性的贡献完全一致。圆二色性测量表明,Tyr-12影响簇内的几个电子跃迁。变体Y12F、Y12H和Y12W的中点还原电位分别为17、19和22 mV(20 mM MOPS,0.2 M氯化钠,pH 6.98,25℃),高于rcWT HiPIP。目前的结果表明,尽管保守的Tyr-12调节簇的性质,但其主要功能是通过涉及其羟基的氢键和涉及其芳香环的静电相互作用来稳定HiPIP。

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