Laboratory of Molecular Plant Biology, Department of Biochemistry, University of Turku, Tykist�katu 6 A, Turku FI, Finland.
Plant Cell Physiol. 2019 Jun 1;60(6):1386-1399. doi: 10.1093/pcp/pcz044.
NdbA, one of the three type 2 NAD(P)H dehydrogenases (NDH-2) in Synechocystis sp. PCC 6803 (hereafter Synechocystis) was here localized to the thylakoid membrane (TM), unique for the three NDH-2s, and investigated with respect to photosynthetic and cellular redox metabolism. For this purpose, a deletion mutant (ΔndbA) and a complementation strain overexpressing NdbA (ΔndbA::ndbA) were constructed. It is demonstrated that NdbA is expressed at very low level in the wild-type (WT) Synechocystis under photoautotrophic (PA) growth whilst substantially higher expression occurs under light-activated heterotrophic growth (LAHG). The absence of NdbA resulted in non-optimal growth of Synechocystis under LAHG and concomitantly enhanced the expression of photoprotection-related flavodiiron proteins and carbon acquisition-related proteins as well as various transporters, but downregulated a few iron homeostasis-related proteins. NdbA overexpression, on the other hand, promoted photosynthetic pigmentation and functionality of photosystem I under LAHG conditions while distinct photoprotective and carbon concentrating proteins were downregulated. NdbA overexpression also exerted an effect on the expression of many signaling and gene regulation proteins. It is concluded that the amount and function of NdbA in the TM has a capacity to modulate the redox signaling of gene expression, but apparently has a major physiological role in maintaining iron homeostasis under LAHG conditions. LC-MS/MS data are available via ProteomeXchange with identifier PXD011671.
NdbA 是集胞藻 6803(以下简称集胞藻)中三种类型 2 NAD(P)H 脱氢酶(NDH-2)之一,它定位于类囊体膜(TM),这是三种 NDH-2 所特有的,并且与光合作用和细胞氧化还原代谢有关。为此,构建了 NdbA 缺失突变体(ΔndbA)和过表达 NdbA 的互补菌株(ΔndbA::ndbA)。结果表明,在光自养(PA)生长条件下,野生型(WT)集胞藻中 NdbA 的表达水平非常低,而在光激活异养生长(LAHG)下表达水平显著升高。NdbA 的缺失导致集胞藻在 LAHG 下的非最佳生长,同时增强了光保护相关黄素铁蛋白和碳获取相关蛋白以及各种转运蛋白的表达,但下调了一些铁稳态相关蛋白。另一方面,NdbA 的过表达促进了 LAHG 条件下光合作用色素和光系统 I 的功能,而明显下调了一些光保护和碳浓缩蛋白。NdbA 的过表达还对许多信号转导和基因调控蛋白的表达产生影响。总之,TM 中 NdbA 的数量和功能具有调节基因表达氧化还原信号的能力,但在 LAHG 条件下,显然在维持铁稳态方面具有主要的生理作用。LC-MS/MS 数据可通过 ProteomeXchange 以标识符 PXD011671 获得。