Chidgey Jack W, Linhartová Markéta, Komenda Josef, Jackson Philip J, Dickman Mark J, Canniffe Daniel P, Koník Peter, Pilný Jan, Hunter C Neil, Sobotka Roman
Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield S10 2TN, United Kingdom.
Plant Cell. 2014 Mar;26(3):1267-79. doi: 10.1105/tpc.114.124495. Epub 2014 Mar 28.
Macromolecular membrane assemblies of chlorophyll-protein complexes efficiently harvest and trap light energy for photosynthesis. To investigate the delivery of chlorophylls to the newly synthesized photosystem apoproteins, a terminal enzyme of chlorophyll biosynthesis, chlorophyll synthase (ChlG), was tagged in the cyanobacterium Synechocystis PCC 6803 (Synechocystis) and used as bait in pull-down experiments. We retrieved an enzymatically active complex comprising ChlG and the high-light-inducible protein HliD, which associates with the Ycf39 protein, a putative assembly factor for photosystem II, and with the YidC/Alb3 insertase. 2D electrophoresis and immunoblotting also provided evidence for the presence of SecY and ribosome subunits. The isolated complex contained chlorophyll, chlorophyllide, and carotenoid pigments. Deletion of hliD elevated the level of the ChlG substrate, chlorophyllide, more than 6-fold; HliD is apparently required for assembly of FLAG-ChlG into larger complexes with other proteins such as Ycf39. These data reveal a link between chlorophyll biosynthesis and the Sec/YidC-dependent cotranslational insertion of nascent photosystem polypeptides into membranes. We expect that this close physical linkage coordinates the arrival of pigments and nascent apoproteins to produce photosynthetic pigment-protein complexes with minimal risk of accumulating phototoxic unbound chlorophylls.
叶绿素 - 蛋白质复合物的大分子膜组件能有效地捕获和利用光能进行光合作用。为了研究叶绿素向新合成的光系统脱辅基蛋白的传递过程,我们在集胞藻PCC 6803(集胞藻)中对叶绿素生物合成的末端酶叶绿素合酶(ChlG)进行了标记,并将其用作下拉实验的诱饵。我们获得了一种具有酶活性的复合物,该复合物包含ChlG和高光诱导蛋白HliD,HliD与Ycf39蛋白(一种推测的光系统II组装因子)以及YidC/Alb3插入酶相关联。二维电泳和免疫印迹也为SecY和核糖体亚基的存在提供了证据。分离出的复合物含有叶绿素、叶绿素酸酯和类胡萝卜素色素。hliD基因的缺失使ChlG底物叶绿素酸酯的水平提高了6倍多;显然,HliD是将FLAG - ChlG组装成与其他蛋白质(如Ycf39)的更大复合物所必需的。这些数据揭示了叶绿素生物合成与新生光系统多肽的Sec/YidC依赖性共翻译插入膜之间的联系。我们预计这种紧密的物理联系能够协调色素和新生脱辅基蛋白的到达,从而产生光合色素 - 蛋白质复合物,将积累光毒性游离叶绿素的风险降至最低。