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SMC Protein-Dependent Chromosome Condensation during Aerial Hyphal Development in Streptomyces

机译:链霉菌空中菌丝发育过程中SMC蛋白依赖性染色体的浓缩。

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摘要

Members of the SMC (structural maintenance of chromosomes) protein family play a central role in higher-order chromosome dynamics from bacteria to humans. So far, studies of bacterial SMC proteins have focused only on unicellular rod-shaped organisms that divide by binary fission. The conversion of multigenomic aerial hyphae of the mycelial organism Streptomyces coelicolor into chains of unigenomic spores requires the synchronous segregation of multiple chromosomes. Here we focus on the contribution of SMC proteins to sporulation-associated chromosome segregation in S. coelicolor. Deletion of the smc gene causes aberrant DNA condensation and missegregation of chromosomes (7.5% anucleate spores). In vegetative mycelium, immunostained SMC proteins were observed sporadically, while in aerial hyphae about to undergo sporulation they appeared as irregularly spaced foci which accompanied but did not colocalize with ParB complexes. Our data demonstrate that efficient chromosome segregation requires the joint action of SMC and ParB proteins. SMC proteins, similarly to ParAB and FtsZ, presumably belong to a larger group of proteins whose expression is highly induced in response to the requirement of aerial hyphal maturation.
机译:SMC(染色体的结构维持)蛋白家族的成员在从细菌到人类的高阶染色体动力学中起着核心作用。到目前为止,细菌SMC蛋白的研究仅集中于通过二元裂变分裂的单细胞杆状生物。将菌丝体天蓝色链霉菌的多基因组气生菌丝转化为单基因组孢子链需要多条染色体的同步分离。在这里,我们专注于SMC蛋白对天蓝色链霉菌中与孢子形成相关的染色体分离的贡献。 smc基因的缺失会导致异常的DNA浓缩和染色体的失聚(7.5%的无核孢子)。在营养菌丝体中,偶尔观察到免疫染色的SMC蛋白,而在即将发生孢子形成的气生菌丝中,它们表现为不规则间隔的病灶,伴有但不与ParB复合体共定位。我们的数据表明有效的染色体分离需要SMC和ParB蛋白的联合作用。 SMC蛋白类似于ParAB和FtsZ,可能属于一大类蛋白,其表达是根据气生菌丝成熟的需要而被高度诱导的。

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