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金属阳离子调节来自嗜热栖热菌的捕光1核心复合物中的细菌叶绿素-蛋白质相互作用。

Metal cations modulate the bacteriochlorophyll-protein interaction in the light-harvesting 1 core complex from Thermochromatium tepidum.

作者信息

Kimura Yukihiro, Inada Yuta, Numata Tomoko, Arikawa Teruhisa, Li Yong, Zhang Jian-Ping, Wang Zheng-Yu, Ohno Takashi

机构信息

Organization of Advanced Science and Technology, Kobe University, Nada, Kobe, Japan.

出版信息

Biochim Biophys Acta. 2012 Jul;1817(7):1022-9. doi: 10.1016/j.bbabio.2012.03.016. Epub 2012 Mar 21.

Abstract

The light-harvesting 1 reaction center (LH1-RC) complex from Thermochromatium (Tch.) tepidum exhibits unusual Q(y) absorption by LH1 bacteriochlorophyll-a (BChl-a) molecules at 915nm, and the transition energy is finely modulated by the binding of metal cations to the LH1 polypeptides. Here, we demonstrate the metal-dependent interactions between BChl-a and the polypeptides within the intact LH1-RC complexes by near-infrared Raman spectroscopy. The wild-type LH1-RC (B915) exhibited Raman bands for the C3-acetyl and C13-keto CO stretching modes at 1637 and 1675cm(-1), respectively. The corresponding bands appeared at 1643 and 1673cm(-1) when Ca(2+) was biosynthetically replaced with Sr(2+) (B888) or at 1647 and 1669cm(-1) in the mesophilic counterpart, Allochromatium vinosum. These results indicate the significant difference in the BChl-polypeptide interactions between B915 and B888 and between B915 and the mesophilic counterpart. The removal of the original metal cations from B915 and B888 resulted in marked band shifts of the C3-acetyl/C13-carbonyl νCO modes to 1645/1670cm(-1), supporting a model in which the metal cations are involved in the fine-tuning of the hydrogen bonding between the BChl-a and LH1-polypeptides. Interestingly, the interaction modes were almost identical between the Ca(2+)-depleted B915 and Sr(2+)-depleted B888 and between B915 and Ca(2+)-substituted B888, despite the significant differences in their LH1 Q(y) peak positions and the denaturing temperatures, as revealed by differential scanning calorimetry. These results suggest that not only the BChl-polypeptide interactions but some structural origin may be involved in the unusual Q(y) red-shift and the enhanced thermal stability of the LH1-RC complexes from Tch. tepidum.

摘要

来自嗜热栖热菌(Tch. tepidum)的光捕获1反应中心(LH1-RC)复合物在915nm处的LH1细菌叶绿素-a(BChl-a)分子表现出异常的Q(y)吸收,并且跃迁能量通过金属阳离子与LH1多肽的结合而得到精细调节。在此,我们通过近红外拉曼光谱证明了完整的LH1-RC复合物中BChl-a与多肽之间的金属依赖性相互作用。野生型LH1-RC(B915)在1637和1675cm⁻¹处分别表现出C3-乙酰基和C13-酮基CO伸缩模式的拉曼谱带。当Ca²⁺在生物合成过程中被Sr²⁺取代时(B888),相应的谱带出现在1643和1673cm⁻¹处,或者在嗜温对应物嗜酒色杆菌(Allochromatium vinosum)中出现在1647和1669cm⁻¹处。这些结果表明B915与B888之间以及B915与嗜温对应物之间的BChl-多肽相互作用存在显著差异。从B915和B888中去除原始金属阳离子导致C3-乙酰基/C13-羰基νCO模式的谱带明显位移至1645/1670cm⁻¹处,支持了金属阳离子参与BChl-a与LH1-多肽之间氢键精细调节的模型.有趣的是,尽管通过差示扫描量热法揭示它们的LH1 Q(y)峰位置和变性温度存在显著差异,但Ca²⁺耗尽的B915和Sr²⁺耗尽的B888之间以及B915与Ca²⁺取代的B888之间的相互作用模式几乎相同。这些结果表明,不仅BChl-多肽相互作用,而且某些结构起源可能参与了嗜热栖热菌LH1-RC复合物异常的Q(y)红移和增强的热稳定性。

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