Department of Plant Science, Plant Genomics and Breeding Institute, and Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul 151-921, Korea.
Plant Cell. 2012 Feb;24(2):507-18. doi: 10.1105/tpc.111.089474. Epub 2012 Feb 24.
During leaf senescence, plants degrade chlorophyll to colorless linear tetrapyrroles that are stored in the vacuole of senescing cells. The early steps of chlorophyll breakdown occur in plastids. To date, five chlorophyll catabolic enzymes (CCEs), NONYELLOW COLORING1 (NYC1), NYC1-LIKE, pheophytinase, pheophorbide a oxygenase (PAO), and red chlorophyll catabolite reductase, have been identified; these enzymes catalyze the stepwise degradation of chlorophyll to a fluorescent intermediate, pFCC, which is then exported from the plastid. In addition, STAY-GREEN (SGR), Mendel's green cotyledon gene encoding a chloroplast protein, is required for the initiation of chlorophyll breakdown in plastids. Senescence-induced SGR binds to light-harvesting complex II (LHCII), but its exact role remains elusive. Here, we show that all five CCEs also specifically interact with LHCII. In addition, SGR and CCEs interact directly or indirectly with each other at LHCII, and SGR is essential for recruiting CCEs in senescing chloroplasts. PAO, which had been attributed to the inner envelope, is found to localize in the thylakoid membrane. These data indicate a predominant role for the SGR-CCE-LHCII protein interaction in the breakdown of LHCII-located chlorophyll, likely to allow metabolic channeling of phototoxic chlorophyll breakdown intermediates upstream of nontoxic pFCC.
在叶片衰老过程中,植物将叶绿素降解为无色的线性四吡咯,这些物质储存在衰老细胞的液泡中。叶绿素降解的早期步骤发生在质体中。迄今为止,已经鉴定了五种叶绿素分解酶(CCEs),分别是非黄化蛋白 1(NYC1)、NYC1 样蛋白、脱镁叶绿酸酶、叶红素加氧酶(PAO)和红色叶绿素分解还原酶;这些酶催化叶绿素逐步降解为荧光中间产物 pFCC,然后从质体中输出。此外,STAY-GREEN(SGR),孟德尔的绿色子叶基因编码一种叶绿体蛋白,是质体中叶绿素分解的起始所必需的。衰老诱导的 SGR 与光捕获复合物 II(LHCII)结合,但它的确切作用仍不清楚。在这里,我们表明,所有五种 CCE 也特异性地与 LHCII 相互作用。此外,SGR 和 CCE 直接或间接地相互作用于 LHCII,并且 SGR 对于在衰老的叶绿体中募集 CCE 是必需的。先前被归因于内囊体的 PAO 被发现定位于类囊体膜中。这些数据表明,SGR-CCE-LHCII 蛋白相互作用在 LHCII 定位的叶绿素的降解中起着主要作用,可能允许光毒性叶绿素分解中间产物在无毒的 pFCC 上游进行代谢分流。