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首页> 外文期刊>Biochemistry >Vibrational Spectroscopy Favors a Unique Q(B) Binding Site at the Proximal Position in Wild-Type Reaction Centers and in the Pro-L209 --> Tyr Mutant from Rhodobacter sphaeroides.
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Vibrational Spectroscopy Favors a Unique Q(B) Binding Site at the Proximal Position in Wild-Type Reaction Centers and in the Pro-L209 --> Tyr Mutant from Rhodobacter sphaeroides.

机译:振动光谱有利于野生型反应中心的近端位置的独特Q(B)结合位点,并从乳氏菌氏菌的Pro-L209 - > Tyr突变体中。

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    摘要

    In the various X-ray structures of native reaction centers (RCs) from the photosynthetic bacterium Rhodobacter sphaeroides, two distinct main binding sites (distal and proximal) for the secondary quinone Q(B) have been described in the literature. The movement of Q(B) from its distal to proximal position has been proposed to account for the conformational gate limiting the rate of the first electron transfer from the primary quinone Q(A)(-) to Q(B). Recently, Q(B) was found to bind in the proximal binding site in the dark-adapted crystals of a mutant RC where Pro-L209 was changed to Tyr [Kuglstatter, A., Ermler, U., Michel, H., Baciou, L., and Fritzsch, G. (2001) Biochemistry 40, 4253-4260]. To test the structural and functional implications of the distal and proximal sites, a comparison of the FTIR vibrational properties of Q(B) in native RCs and in the Pro-L209 --> Tyr mutant was performed. Light-induced FTIR absorption changes associated with the reduction of Q(B) in Pro-L209 --> Tyr RCs reconstituted with (13)C-labeled ubiquinone (Q(3)) at the 1 or 4 position show a highly specific IR fingerprint for the C=O and C=C modes of Q(B) upon selective labeling at C(1) or C(4). This IR fingerprint is very similar to that of native RCs, demonstrating that equivalent interactions occur between neutral Q(B) and the protein in native and mutant RCs. Consequently, Q(B) occupies the same binding site in all RCs. Since the FTIR data fit the description of Q(B) bonding interactions in the proximal site, it is therefore concluded that neutral Q(B) also binds to the proximal site in native functional RCs. The implication of these new results for the conformational gate of the first electron transfer to Q(B) is outlined.
    机译:在来自光合乳菌氏菌的天然反应中心(RCS)的各种X射线结构中,在文献中已经描述了用于仲醌Q(B)的两个不同的主结合位点(远端和近端)。已经提出了Q(b)从其远端位置的运动,以解释限制从主醌Q(a)( - )至q(b)的第一电子传递速率的构象栅极。最近,发现Q(b)在突变体Rc的暗色适应晶体中与突变体Rc的近似结合位点结合,其中Pro-L209改变为Tyr [Kuglstatter,A.,Ermler,U.,Michel,H.,Baciou ,L.和Fritzsch,G。(2001)生物化学40,4253-4260]。为了测试远端和近端位点的结构和功能影响,进行天然RCs和Pro-L209 - > Tyr突变体中Q(B)的FTIR振动性能的比较。光诱导的FTIR吸收变化与Pro-L209 - > Tyr RC中的Q(b)的减少相关的变化,在1或4个位置处重构(13)C标记的泛醌(Q(3))显示出高度特异性的红外线C = O和C = C Q(B)的C = C和C = C模式的指纹在C(1)或C(4)的选择性标记时。该IR指纹与天然RCS非常相似,证明了在天然和突变rcs中中性Q(b)和蛋白质之间发生的等效相互作用。因此,Q(b)占据所有RCS中的相同结合位点。由于FTIR数据适合Q(B)邻近位点的键合相互作用的描述,因此得出结论,中性Q(B)还与天然功能RC中的近端部位结合。概述了第一电子转移的构象栅极的这些新结果的含义是概述于Q(B)的。

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