Department of Botany, Graduate School of Science, Kyoto University, Kita-Shirakawa Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.
Graduate School of Science and Engineering, Ibaraki University, Bunkyo, Mito, Ibaraki 310-8512, Japan.
Proc Natl Acad Sci U S A. 2021 May 18;118(20). doi: 10.1073/pnas.2021053118.
Compaction of bulky DNA is a universal issue for all DNA-based life forms. Chloroplast nucleoids (chloroplast DNA-protein complexes) are critical for chloroplast DNA maintenance and transcription, thereby supporting photosynthesis, but their detailed structure remains enigmatic. Our proteomic analysis of chloroplast nucleoids of the green alga identified a protein (HBD1) with a tandem repeat of two DNA-binding high mobility group box (HMG-box) domains, which is structurally similar to major mitochondrial nucleoid proteins transcription factor A, mitochondrial (TFAM), and ARS binding factor 2 protein (Abf2p). Disruption of the gene by CRISPR-Cas9-mediated genome editing resulted in the scattering of chloroplast nucleoids. This phenotype was complemented when intact HBD1 was reintroduced, whereas a truncated HBD1 with a single HMG-box domain failed to complement the phenotype. Furthermore, ectopic expression of HBD1 in the mitochondria of yeast mutant successfully complemented the defects, suggesting functional similarity between HBD1 and Abf2p. Furthermore, in vitro assays of HBD1, including the electrophoretic mobility shift assay and DNA origami/atomic force microscopy, showed that HBD1 is capable of introducing U-turns and cross-strand bridges, indicating that proteins with two HMG-box domains would function as DNA clips to compact DNA in both chloroplast and mitochondrial nucleoids.
DNA 压缩是所有基于 DNA 的生命形式所面临的一个普遍问题。叶绿体类核(叶绿体 DNA-蛋白复合物)对于叶绿体 DNA 的维持和转录至关重要,从而支持光合作用,但它们的详细结构仍然是个谜。我们对绿藻叶绿体类核的蛋白质组学分析发现了一种蛋白(HBD1),它具有两个 DNA 结合高迁移率族盒(HMG-box)结构域的串联重复,其结构与主要的线粒体类核蛋白转录因子 A、线粒体(TFAM)和 ARS 结合因子 2 蛋白(Abf2p)相似。通过 CRISPR-Cas9 介导的基因组编辑破坏基因导致叶绿体类核的散射。当完整的 HBD1 被重新引入时,这种表型得到了互补,而具有单个 HMG-box 结构域的截断 HBD1 则无法互补表型。此外,HBD1 在酵母线粒体中的异位表达成功地弥补了缺陷,表明 HBD1 和 Abf2p 之间存在功能相似性。此外,包括电泳迁移率变动分析和 DNA 折纸/原子力显微镜在内的 HBD1 的体外实验表明,HBD1 能够引入 U 形转弯和跨链桥,表明具有两个 HMG-box 结构域的蛋白将作为 DNA 夹子,将 DNA 压缩在叶绿体和线粒体类核中。