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聚球藻属PCC 6301光合系统I复合物及光合系统I核心蛋白的多肽组成

Polypeptide composition of the Photosystem I complex and the Photosystem I core protein from Synechococcus sp. PCC 6301.

作者信息

Li N, Warren P V, Golbeck J H, Frank G, Zuber H, Bryant D A

机构信息

Department of Biochemistry, University of Nebraska, Lincoln.

出版信息

Biochim Biophys Acta. 1991 Aug 23;1059(2):215-25. doi: 10.1016/s0005-2728(05)80206-3.

Abstract

The polypeptide composition of the Photosystem I complex from Synechococcus sp. PCC 6301 was determined by sodium-dodecyl sulfate polyacrylamide gel electrophoresis and N-terminal amino acid sequencing. The PsaA, PsaB, PsaC, PsaD, PsaE, PsaF, PsaK and PsaL proteins, as well as three polypeptides with apparent masses less than 8 kDa and small amounts of the 12.6 kDa GlnB (PII) protein, wee present in the Photosystem I complex. No proteins homologous to the PsaG and PsaH subunits of eukaryotic Photosystem I complexes were detected. When the Photosystem I complex was treated with 6.8 M urea and ultrafiltered using a 100 kDa cutoff membrane, the resulting Photosystem I core protein was found to be depleted of the PsaC, PsaD and PsaE proteins. The filtrate contained the missing proteins, along with five proteolytically-cleaved polypeptides with apparent masses of less than 16 kDa and with N-termini identical to that of the PsaD protein. The PsaF and PsaL proteins, along with the three less than 8 kDa polypeptides, were not released from the Photosystem I complex to any significant extent, but low-abundance polypeptides with N-termini identical to those of PsaF and PsaL were found in the filtrate with apparent masses slightly smaller than those found in the native Photosystem I complex. When the filtrate was incubated with FeCl3, Na2S and beta-mercaptoethanol in the presence of the isolated Photosystem I core protein, the PsaC, PsaD and PsaE proteins were rebound to reconstitute a Photosystem I complex functional in light-induced electron flow from P700 to FA/FB. In the absence of the iron-sulfur reconstitution agents, there was little rebinding of the PsaC, psaD or PsaE proteins to the Photosystem I core protein. No binding of the truncated PsaD polypeptides occurred, either in the presence or absence of the iron-sulfur reagents. The reconstitution of the FA/FB iron-sulfur clusters thus appears to be a necessary precondition for rebinding of the PsaC, psaD and psaE proteins to the Photosystem I core protein.

摘要

通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳和N端氨基酸测序,确定了聚球藻属PCC 6301光系统I复合物的多肽组成。光系统I复合物中存在PsaA、PsaB、PsaC、PsaD、PsaE、PsaF、PsaK和PsaL蛋白,以及三种表观质量小于8 kDa的多肽和少量12.6 kDa的GlnB(PII)蛋白。未检测到与真核生物光系统I复合物的PsaG和PsaH亚基同源的蛋白质。用光系统I复合物用6.8 M尿素处理并用截留分子量为100 kDa的膜进行超滤时,发现所得的光系统I核心蛋白中不含PsaC、PsaD和PsaE蛋白。滤液中含有缺失的蛋白质,以及五种表观质量小于16 kDa且N端与PsaD蛋白相同的蛋白水解切割多肽。PsaF和PsaL蛋白以及三种小于8 kDa的多肽在很大程度上没有从光系统I复合物中释放出来,但在滤液中发现了N端与PsaF和PsaL相同的低丰度多肽,其表观质量略小于天然光系统I复合物中的多肽。当滤液在分离的光系统I核心蛋白存在下与FeCl3、Na2S和β-巯基乙醇一起孵育时,PsaC、PsaD和PsaE蛋白会重新结合,以重建一个在光诱导电子从P700流向FA/FB过程中起作用的光系统I复合物。在没有铁硫重建剂的情况下,PsaC、PsaD或PsaE蛋白与光系统I核心蛋白的重新结合很少。无论是否存在铁硫试剂,截短的PsaD多肽都不会发生结合。因此,FA/FB铁硫簇的重建似乎是PsaC、PsaD和PsaE蛋白与光系统I核心蛋白重新结合的必要前提条件。

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