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一株缺乏光系统 I 的聚球藻 PCC 7002 突变体的特性。在缺乏光系统 I 反应中心核心复合物的情况下,蛋白质组装和能量分布。

Characterization of a Synechococcus sp. strain PCC 7002 mutant lacking Photosystem I. Protein assembly and energy distribution in the absence of the Photosystem I reaction center core complex.

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, 16802, University Park, PA, USA.

出版信息

Photosynth Res. 1995 May;44(1-2):41-53. doi: 10.1007/BF00018295.

Abstract

A Synechococcus sp. strain PCC 7002 ΔpsaAB::cat mutant has been constructed by deletional interposon mutagenesis of the psaA and psaB genes through selection and segregation under low-light conditions. This strain can grow photoheterotrophically with glycerol as carbon source with a doubling time of 25 h at low light intensity (10 μE m(-2) s(-1)). No Photosystem I (PS I)-associated chlorophyll fluorescence emission peak was detected in the ΔpsaAB::cat mutant. The chlorophyll content of the ΔpsaAB::cat mutant was approximately 20% that of the wild-type strain on a per cell basis. In the absence of the PsaA and PsaB proteins, several other PS I proteins do not accumulate to normal levels. Assembly of the peripheral PS I proteins PsaC,PsaD, PsaE, and PsaL is dependent on the presence of the PsaA and PsaB heterodimer core. The precursor form of PsaF may be inserted into the thylakoid membrane but is not processed to its mature form in the absence of PsaA and PsaB. The absence of PS I reaction centers has no apparent effect on Photosystem II (PS II) assembly and activity. Although the mutant exhibited somewhat greater fluorescence emission from phycocyanin, most of the light energy absorbed by phycobilisomes was efficiently transferred to the PS II reaction centers in the absence of the PS I. No light state transition could be detected in the ΔpsaAB::cat strain; in the absence of PS I, cells remain in state 1. Development of this relatively light-tolerant strain lacking PS I provides an important new tool for the genetic manipulation of PS I and further demonstrates the utility of Synechococcus sp. PCC 7002 for structural and functional analyses of the PS I reaction center.

摘要

通过在低光照条件下通过选择和分离对 psaA 和 psaB 基因进行缺失插入突变,构建了 Synechococcus sp. 菌株 PCC 7002 ΔpsaAB::cat 突变体。该菌株可以以甘油为碳源进行光异养生长,在低光强(10 μE m(-2) s(-1))下倍增时间为 25 h。在 ΔpsaAB::cat 突变体中未检测到与 Photosystem I (PS I) 相关的叶绿素荧光发射峰。ΔpsaAB::cat 突变体的叶绿素含量约为野生型菌株的 20%。在没有 PsaA 和 PsaB 蛋白的情况下,其他几种 PS I 蛋白不会积累到正常水平。外周 PS I 蛋白 PsaC、PsaD、PsaE 和 PsaL 的组装依赖于 PsaA 和 PsaB 异二聚体核心的存在。PsaF 的前体形式可能插入类囊体膜中,但在没有 PsaA 和 PsaB 的情况下,不会加工成熟形式。PS I 反应中心的缺失对 PS II 组装和活性没有明显影响。尽管突变体表现出藻蓝蛋白荧光发射略有增加,但在没有 PS I 的情况下,大部分吸收的光能被有效地转移到 PS II 反应中心。在 ΔpsaAB::cat 菌株中未检测到光状态转变;在没有 PS I 的情况下,细胞保持在状态 1。缺乏 PS I 的这种相对耐光菌株的发展为 PS I 的遗传操作提供了一个重要的新工具,并进一步证明了 Synechococcus sp. PCC 7002 用于 PS I 反应中心的结构和功能分析的实用性。

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