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在集胞藻 PCC 6803 中,NDH 和 Cup 蛋白在 CO2 摄取中的协调作用。

Co-ordination of NDH and Cup proteins in CO2 uptake in cyanobacterium Synechocystis sp. PCC 6803.

机构信息

National Key Laboratory of Plant Molecular Genetics, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, 300 Fenglin Road, Shanghai 200032, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Exp Bot. 2017 Jun 1;68(14):3869-3877. doi: 10.1093/jxb/erx129.

Abstract

High and low affinity CO2-uptake systems containing CupA (NDH-1MS) and CupB (NDH-1MS'), respectively, have been identified in Synechocystis sp. PCC 6803, but it is yet unknown how the complexes function in CO2 uptake. In this work, we found that deletion of cupB significantly lowered the growth of cells, and deletion of both cupA and cupB seriously suppressed the growth below pH 7.0 even under 3% CO2. The rate of photosynthetic oxygen evolution was decreased slightly by deletion of cupA but significantly by deletion of cupB and more severely by deletion of both cupA and cupB, especially in response to changed pH conditions under 3% CO2. Furthermore, we found that assembly of CupB into NDH-1MS' was dependent on NdhD4 and NdhF4. NDH-1MS' was not affected in the NDH-1MS-degradation mutant and NDH-1MS was not affected in the NDH-1MS'-degradation mutants, indicating the existence of independent CO2-uptake systems under high CO2 conditions. The light-induced proton gradient across thylakoid membranes was significantly inhibited in ndhD-deletion mutants, suggesting that NdhDs functions in proton pumping. The carbonic anhydrase activity was suppressed partly in the cupA- or cupB-deletion mutant but severely in the mutant with both cupA and cupB deletion, indicating that CupA and CupB function in conversion of CO2 to HCO3-. In turn, deletion of cup genes lowered the transthylakoid membrane proton gradient and deletion of ndhDs decreased the CO2 hydration. Our results suggest that NDH-1M provides an alkaline region to activate Cup proteins involved in CO2 uptake.

摘要

高亲和度和低亲和度 CO2 摄取系统分别含有 CupA(NDH-1MS)和 CupB(NDH-1MS'),已在集胞藻 PCC 6803 中被鉴定,但复合物在 CO2 摄取中的功能尚不清楚。在这项工作中,我们发现 cupB 的缺失显著降低了细胞的生长,而 cupA 和 cupB 的缺失严重抑制了 pH 值低于 7.0 时的生长,即使在 3% CO2 下也是如此。CupA 的缺失略微降低了光合氧气释放的速率,但 CupB 的缺失显著降低,而 CupA 和 CupB 的缺失更为严重,尤其是在 3% CO2 下改变 pH 条件时。此外,我们发现 CupB 组装到 NDH-1MS'依赖于 NdhD4 和 NdhF4。在 NDH-1MS 降解突变体中,NDH-1MS'不受影响,在 NDH-1MS'-降解突变体中,NDH-1MS 不受影响,表明在高 CO2 条件下存在独立的 CO2 摄取系统。在 ndhD 缺失突变体中,类囊体膜上的光诱导质子梯度显著受到抑制,表明 NdhDs 参与质子泵的功能。在 cupA 或 cupB 缺失突变体中,碳酸酐酶活性部分受到抑制,但在 cupA 和 cupB 缺失的突变体中严重受到抑制,表明 CupA 和 CupB 参与 CO2 向 HCO3-的转化。反过来,cup 基因的缺失降低了跨类囊体膜质子梯度,ndhDs 的缺失降低了 CO2 水合作用。我们的结果表明,NDH-1M 提供了一个碱性区域来激活参与 CO2 摄取的 Cup 蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27ab/5853218/8d6ccb907b38/erx12901.jpg

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