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细菌叶绿素连接的空间控制。

Steric control of bacteriochlorophyll ligation.

作者信息

Kania Agnieszka, Fiedor Leszek

机构信息

Faculty of Chemistry, Jagiellonian University, Cracow, Poland.

出版信息

J Am Chem Soc. 2006 Jan 18;128(2):454-8. doi: 10.1021/ja055537x.

Abstract

The axial coordination of central Mg(2+) ion in chlorophylls is of great structural and functional importance for virtually all photosynthetic chlorophyll proteins; however, little thermodynamic data are available on the ligand binding to these pigments. In the present study, spectral deconvolution of the bacteriochlorophyll Q(X) band serves to determine the ligand binding equilibria and relationships between thermodynamic parameters of ligand binding, ligand properties, and steric interactions occurring within the pigment. On the basis of the temperature effects on coordination, DeltaH degrees, DeltaS degrees, and DeltaG degrees of binding various types of ligands (acetone, dimethylformamide, imidazole, and pyridine) to diastereoisomeric bacteriochlorophylls were derived from respective van't Hoff's plots. At ambient temperatures, only ligation by imidazole and pyridine occurs spontaneously while DeltaG degrees becomes positive for ligation by acetone and dimethylformamide, due to a relatively large entropic effect, which is dominating when the energetic effects of ligation are small. It reflects, in quantitative terms, the control of the equatorial coordination of the Mg(2+) ion via the axial coordination: a "hard" free Mg(2+) ion is made into a softer center through the coordination of tetrapyrrole. Pigment structural features have comparable effects on the energetic and entropic contributions to the difference of ligation free energy between the diastereoisomers of bacteriochlorophyll. DeltaS degrees and DeltaH degrees values are consistently lower for the S epimer, most likely due to the steric crowding between bulky substituents. The two epimers show a 5 J.mol(-1).K(-1) difference in DeltaS degrees values, regardless of the ligand type, while the difference in DeltaH degrees amounts to 1.7 kJ.mol(-1), depending on the ligand. Such steric control of ligation would relate to the partial diastereoselectivity of chlorophyll self-assembly and, in particular, the very high diastereoselectivity of the ligation of chlorophylls in photosynthetic proteins.

摘要

对于几乎所有光合叶绿素蛋白而言,叶绿素中中心镁离子(Mg²⁺)的轴向配位在结构和功能方面都极为重要;然而,关于配体与这些色素结合的热力学数据却很少。在本研究中,细菌叶绿素Q(X)带的光谱去卷积用于确定配体结合平衡以及配体结合的热力学参数、配体性质和色素内部发生的空间相互作用之间的关系。基于温度对配位的影响,通过各自的范特霍夫图得出了各种类型配体(丙酮、二甲基甲酰胺、咪唑和吡啶)与非对映异构细菌叶绿素结合的ΔH°、ΔS°和ΔG°。在环境温度下,只有咪唑和吡啶的配位反应能自发发生,而丙酮和二甲基甲酰胺的配位反应由于相对较大的熵效应使得ΔG°变为正值,当配位的能量效应较小时,熵效应起主导作用。这从定量角度反映了通过轴向配位对Mg²⁺离子赤道配位的控制:一个“硬”的游离Mg²⁺离子通过四吡咯的配位变成了一个较软的中心。色素结构特征对细菌叶绿素非对映异构体之间配位自由能差异的能量和熵贡献具有类似影响。S型差向异构体的ΔS°和ΔH°值始终较低,这很可能是由于庞大取代基之间的空间拥挤所致。无论配体类型如何,这两种差向异构体的ΔS°值相差5 J·mol⁻¹·K⁻¹,而ΔH°的差异则为1.7 kJ·mol⁻¹,具体取决于配体。这种配位的空间控制可能与叶绿素自组装的部分非对映选择性有关,特别是与光合蛋白中叶绿素配位的非常高的非对映选择性有关。

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