Jajoo Anjana, Szabó Milán, Zsiros Ottó, Garab Győző
School of Life Science, Devi Ahilya University, Indore, India.
Biochim Biophys Acta. 2012 Aug;1817(8):1388-91. doi: 10.1016/j.bbabio.2012.01.002. Epub 2012 Jan 8.
By using low temperature fluorescence spectroscopy, it has been shown that exposing chloroplast thylakoid membranes to acidic pH reversibly decreases the fluorescence of photosystem II while the fluorescence of photosystem I increases [P. Singh-Rawal et al. (2010) Evidence that pH can drive state transitions in isolated thylakoid membranes from spinach, Photochem Photobiol Sci, 9 830-837]. In order to shed light on the origin of these changes, we performed circular dichroism (CD) spectroscopy on freshly isolated pea thylakoid membranes. We show that the magnitude of the psi-type CD, which is associated with the presence of chirally ordered macroarrays of the chromophores in intact thylakoid membranes, decreases gradually and reversibly upon gradually lowering the pH of the medium from 7.5 to 4.5 (psi, polymer or salt induced). The same treatment, as shown on thylakoid membranes washed in hypotonic low salt medium possessing no psi-type bands, induces no discernible change in the excitonic CD. These data show that while no change in the pigment-pigment interactions and thus in the molecular organization of the bulk protein complexes can be held responsible for the observed changes in the fluorescence, acidification of the medium significantly alters the macro-organization of the complexes, hence providing an explanation for the pH-induced redistribution of the excitation energy between the two photosystems. This article is part of a Special Issue entitled: Photosynthesis Research for Sustainability: from Natural to Artificial.
通过使用低温荧光光谱法,研究表明,将叶绿体类囊体膜暴露于酸性pH值环境下会使光系统II的荧光可逆性降低,而光系统I的荧光则会增加[P. Singh-Rawal等人(2010年)。pH值可驱动菠菜离体类囊体膜中的状态转换,《光化学与光生物学科学》,9,830 - 837]。为了阐明这些变化的起源,我们对新鲜分离的豌豆类囊体膜进行了圆二色性(CD)光谱分析。我们发现,psi型CD的强度与完整类囊体膜中发色团手性有序宏观阵列的存在相关,当将介质的pH值从7.5逐渐降低到4.5(psi,聚合物或盐诱导)时,其强度会逐渐且可逆地降低。对于在低渗低盐介质中洗涤且不存在psi型条带的类囊体膜进行相同处理,激子CD没有明显变化。这些数据表明,虽然色素 - 色素相互作用以及因此整体蛋白质复合物的分子组织没有变化,但介质的酸化会显著改变复合物的宏观组织,从而为pH值诱导的两个光系统之间激发能的重新分布提供了解释。本文是名为:可持续性光合作用研究:从自然到人工的特刊的一部分。