Molecular and Cellular Biochemistry Department, Indiana University, Bloomington, IN, USA.
Génétique Moléculaire, Génomique, Microbiologie, UMR 7156 CNRS, Université de Strasbourg, Strasbourg, France.
Nat Microbiol. 2024 Jan;9(1):263-273. doi: 10.1038/s41564-023-01540-6. Epub 2023 Dec 18.
Proteins in the structural maintenance of chromosomes (SMC) superfamily play key roles in chromosome organization and are ubiquitous across all domains of life. However, SMC proteins are notably absent in the Desulfurococcales of phylum Crenarchaeota. Intrigued by this observation, we performed chromosome conformation capture experiments in the model Desulfurococcales species Aeropyrum pernix. As in other archaea, we observe chromosomal interaction domains across the chromosome. The boundaries between chromosomal interaction domains show a dependence on transcription and translation for their definition. Importantly, however, we reveal an additional higher-order, bipartite organization of the chromosome-with a small high-gene-expression and self-interacting domain that is defined by transcriptional activity and loop structures. Viewing these data in the context of the distribution of SMC superfamily proteins in the Crenarchaeota, we suggest that the organization of the Aeropyrum genome represents an evolutionary antecedent of the compartmentalized architecture observed in the Sulfolobus lineage.
结构维持染色体(SMC)超家族中的蛋白质在染色体组织中发挥着关键作用,并且普遍存在于所有生命领域。然而,在门古菌的脱硫球菌目中却明显缺乏 SMC 蛋白。受这一观察结果的启发,我们在模式脱硫球菌 Aeropyrum pernix 中进行了染色体构象捕获实验。与其他古菌一样,我们观察到了整个染色体上的染色体相互作用域。染色体相互作用域之间的边界依赖于转录和翻译来定义。然而,重要的是,我们揭示了染色体的另一种更高阶的二分组织——一个小的高基因表达和自我相互作用的域,由转录活性和环结构定义。从 Crenarchaeota 中 SMC 超家族蛋白的分布来看,我们认为 Aeropyrum 基因组的组织代表了 Sulfolobus 谱系中观察到的分隔式结构的进化前体。