蛋白类
鲁比斯科
衣原体
固碳
生物
叶绿体
细胞器
生物发生
莱茵衣藻
光合作用
植物
生物化学
突变体
基因
作者
Luke C. M. Mackinder,Moritz T. Meyer,Tabea Mettler‐Altmann,Vivian K. Chen,Madeline Mitchell,Oliver D. Caspari,Elizabeth S. Freeman Rosenzweig,Leif J. Pallesen,Gregory Reeves,Alan K. Itakura,Robyn Roth,Frederik Sommer,Stefan Geimer,Timo Mühlhaus,Michael Schroda,Ursula Goodenough,Mark Stitt,Howard Griffiths,Martin C. Jonikas
标识
DOI:10.1073/pnas.1522866113
摘要
Significance Eukaryotic algae, which play a fundamental role in global CO 2 fixation, enhance the performance of the carbon-fixing enzyme Rubisco by placing it into an organelle called the pyrenoid. Despite the ubiquitous presence and biogeochemical importance of this organelle, how Rubisco assembles to form the pyrenoid remains a long-standing mystery. Our discovery of an abundant repeat protein that binds Rubisco in the pyrenoid represents a critical advance in our understanding of pyrenoid biogenesis. The repeat sequence of this protein suggests elegant models to explain the structural arrangement of Rubisco enzymes in the pyrenoid. Beyond advances in basic understanding, our findings open doors to the engineering of algal pyrenoids into crops to enhance yields.
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