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完整的含P-700和Fx的光系统I核心蛋白的纯化及性质

Purification and properties of the intact P-700 and Fx-containing Photosystem I core protein.

作者信息

Parrett K G, Mehari T, Warren P G, Golbeck J H

机构信息

Department of Chemistry, Portland State University, OR 97207.

出版信息

Biochim Biophys Acta. 1989 Feb 28;973(2):324-32. doi: 10.1016/s0005-2728(89)80439-6.

Abstract

The intact Photosystem I core protein, containing the psaA and psaB polypeptides, and electron transfer components P-700 through FX, was isolated from cyanobacterial and higher plant Photosystem I complexes with chaotropic agents followed by sucrose density ultracentrifugation. The concentrations of NaClO4, NaSCN, NaI, NaBr or urea required for the functional removal of the 8.9 kDa, FA/FB polypeptide was shown to be inversely related to the strength of the chaotrope. The Photosystem I core protein, which was purified to homogeniety, contains 4 mol of acid-labile sulfide and has the following properties: (i) the FX-containing core consists of the 82 and 83 kDa reaction center polypeptides but is totally devoid of the low-molecular-mass polypeptides; (ii) methyl viologen and other bipyridilium dyes have the ability to accept electrons directly from FX; (iii) the difference spectrum of FX from 400 to 900 nm is characteristic of an iron-sulfur cluster; (iv) the midpoint potential of FX, determined optically at room temperature, is 60 mV more positive than in the control; (v) there is indication by ESR spectroscopy of low-temperature heterogeneity within FX; and (vi) the heterogeneity is seen by optical spectroscopy as inefficiency in low-temperature electron flow to FX. The constraints imposed by the amount of non-heme iron and labile sulfide in the Photosystem I core protein, the cysteine content of the psaA and psaB polypeptides, and the stoichiometry of high-molecular-mass polypeptides, cause us to re-examine the possibility that FX is a [4Fe-4S] rather than a [2Fe-2S] cluster ligated by homologous cysteine residues on the psaA and psaB heterodimer.

摘要

完整的光系统I核心蛋白包含psaA和psaB多肽以及从P-700到FX的电子传递组分,通过用离液剂处理蓝藻和高等植物的光系统I复合物,随后进行蔗糖密度超速离心将其分离出来。结果表明,功能性去除8.9 kDa的FA/FB多肽所需的高氯酸钠、硫氰酸钠、碘化钠、溴化钠或尿素的浓度与离液剂的强度呈反比。纯化至同质的光系统I核心蛋白含有4摩尔酸不稳定硫化物,并具有以下特性:(i) 含FX的核心由82 kDa和83 kDa的反应中心多肽组成,但完全不含低分子量多肽;(ii) 甲基紫精和其他联吡啶鎓染料能够直接从FX接受电子;(iii) FX在400至900 nm的差光谱是铁硫簇的特征;(iv) 在室温下通过光学方法测定的FX的中点电位比对照高60 mV;(v) ESR光谱表明FX在低温下存在异质性;(vi) 光学光谱显示这种异质性表现为低温电子流向FX的效率低下。光系统I核心蛋白中无血红素铁和不稳定硫化物的量、psaA和psaB多肽的半胱氨酸含量以及高分子量多肽的化学计量所施加的限制,使我们重新审视FX是由psaA和psaB异二聚体上同源半胱氨酸残基连接的[4Fe-4S]簇而不是[2Fe-2S]簇的可能性。

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