长聚球菌PCC 7942有效修复PSII所需的叶绿素和叶绿素脱植酶

Nobuyuki Takatani, Makoto Uenosono, Yuriko Hara, Hisanori Yamakawa, Yuichi Fujita, Tatsuo Omata
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引用次数: 2

摘要

拟南芥叶绿素脱植酶1 (CLD1)和叶绿素脱植酶(PPH)蛋白是同源蛋白,分别是叶绿素(Chls)和叶绿素a (Phein a)的脱植酶和Phein a特异性的脱植酶。在长聚球菌PCC 7942的基因组中发现了3个编码CLD1/PPH同源物的基因(dphA1、dphA2和dphA3),这些基因在大多数蓝藻中都是保守的。h6标记的DphA1、DphA2和DphA3蛋白在大肠杆菌中表达,纯化到接近均匀性,显示出对Chl a和Phein a具有显著水平的脱phytylase活性。每种DphA蛋白对Chl a和Phein a具有相似的脱phytylase活性,但三种蛋白的动力学性质不同,其中DphA3蛋白的Vmax和Km值分别最高和最低。在强光条件下,dphA1和dphA3的转录增强,而dphA2的转录不受光照条件的影响。在低光(50µmol光子m-2 s-1)和高光(400µmol光子m-2 s-1)条件下,长叶丝瓜dphA单突变体均未表现出严重的生长缺陷。在这些条件下,三倍dphA突变体也没有表现出明显的生长缺陷,但在1000µmol光子m-2 s-1的光照下,突变体比野生型(WT)表现出更严重的生长迟缓。三突变体光系统II (PSII)的修复速度比WT慢得多。这些结果表明,为了有效修复光损伤的PSII, Chl a或Phein a或两者都需要脱藻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chlorophyll and Pheophytin Dephytylating Enzymes Required for Efficient Repair of PSII in Synechococcus elongatus PCC 7942.

The Chlorophyll Dephytylase1 (CLD1) and pheophytinase (PPH) proteins of Arabidopsis thaliana are homologous proteins characterized respectively as a dephytylase for chlorophylls (Chls) and pheophytin a (Phein a) and a Phein a-specific dephytylase. Three genes encoding CLD1/PPH homologs (dphA1, dphA2 and dphA3) were found in the genome of the cyanobacterium Synechococcus elongatus PCC 7942 and shown to be conserved in most cyanobacteria. His6-tagged DphA1, DphA2 and DphA3 proteins were expressed in Escherichia coli, purified to near homogeneity, and shown to exhibit significant levels of dephytylase activity for Chl a and Phein a. Each DphA protein showed similar dephytylase activities for Chl a and Phein a, but the three proteins were distinct in their kinetic properties, with DphA3 showing the highest and lowest Vmax and Km values, respectively, among the three. Transcription of dphA1 and dphA3 was enhanced under high-light conditions, whereas that of dphA2 was not affected by the light conditions. None of the dphA single mutants of S. elongatus showed profound growth defects under low (50 µmol photons m-2 s-1) or high (400 µmol photons m-2 s-1) light conditions. The triple dphA mutant did not show obvious growth defects under these conditions, either, but under illumination of 1,000 µmol photons m-2 s-1, the mutant showed more profound growth retardation compared with wild type (WT). The repair of photodamaged photosystem II (PSII) was much slower in the triple mutant than in WT. These results revealed that dephytylation of Chl a or Phein a or of both is required for efficient repair of photodamaged PSII.

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