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首页> 外文期刊>Journal of bacteriology >One of the Two Genes Encoding Nucleoid-Associated HU Proteins in Streptomyces coelicolor Is Developmentally Regulated and Specifically Involved in Spore Maturation
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One of the Two Genes Encoding Nucleoid-Associated HU Proteins in Streptomyces coelicolor Is Developmentally Regulated and Specifically Involved in Spore Maturation

机译:编码天蓝色链霉菌中与核仁相关的HU蛋白的两个基因之一受到发育调控,并特别参与孢子成熟。

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Streptomyces genomes encode two homologs of the nucleoid-associated HU proteins. One of them, here designated HupA, is of a conventional type similar to E. coli HUα and HUβ, while the other, HupS, is a two-domain protein. In addition to the N-terminal part that is similar to that of HU proteins, it has a C-terminal domain that is similar to the alanine- and lysine-rich C termini of eukaryotic linker histones. Such two-domain HU proteins are found only among Actinobacteria. In this phylum some organisms have only a single HU protein of the type with a C-terminal histone H1-like domain (e.g., Hlp in Mycobacterium smegmatis), while others have only a single conventional HU. Yet others, including the streptomycetes, produce both types of HU proteins. We show here that the two HU genes in Streptomyces coelicolor are differentially regulated and that hupS is specifically expressed during sporulation, while hupA is expressed in vegetative hyphae. The developmental upregulation of hupS occurred in sporogenic aerial hyphal compartments and was dependent on the developmental regulators whiA, whiG, and whiI. HupS was found to be nucleoid associated in spores, and a hupS deletion mutant had an average nucleoid size in spores larger than that in the parent strain. The mutant spores were also defective in heat resistance and spore pigmentation, although they possessed apparently normal spore walls and displayed no increased sensitivity to detergents. Overall, the results show that HupS is specifically involved in sporulation and may affect nucleoid architecture and protection in spores of S. coelicolor.
机译:链霉菌基因组编码与核苷酸相关的HU蛋白的两个同源物。其中一个,这里称为HupA,是类似于 E的常规类型。大肠杆菌HUα和HUβ,另一个是HupS,是一个两个域的蛋白质。除了类似于HU蛋白的N末端部分外,它还具有一个C末端域,与真核连接蛋白组蛋白的富含丙氨酸和赖氨酸的C末端相似。这样的两结构域HU蛋白仅在放线杆菌中发现。在这个门中,某些生物只有一个具有C端组蛋白H1样结构域的HU蛋白(例如,耻垢分枝杆菌中的Hlp),而其他生物只有一个常规HU。还有其他一些,包括链霉菌,都产生两种类型的HU蛋白。我们在这里显示,链霉菌中的两个HU基因受到差异调节,并且 hupS 在孢子形成过程中被特异性表达,而 hupA 在植物中表达菌丝。 hupS 的发育上调发生在孢子形成的气生菌丝隔室中,并取决于发育调节剂 whiA whiG whiI 。发现HupS是孢子中的类核苷酸相关,并且 hupS 缺失突变体的孢子中平均核苷酸大小大于亲本菌株。突变体孢子在耐热性和孢子色素沉着方面也有缺陷,尽管它们显然具有正常的孢子壁并且对洗涤剂的敏感性没有增加。总体而言,结果表明HupS特别参与孢子形成,并可能影响 S孢子的核苷结构和保护。 coelicolor

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