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Expression Characteristics of the Transfer-Related kilB Gene Product of Streptomyces Plasmid pIJ101: Implications for the Plasmid Spread Function

机译:链霉菌质粒pIJ101的转移相关kilB基因产物的表达特征:对质粒传播功能的影响。

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摘要

Intermycelial transfer of Streptomyces plasmid pIJ101 occurs prior to cellular differentiation and is mediated by plasmid functions that are also required for production of zones of growth-inhibited recipient cells (i.e., pocks) that develop around individual donors during mating on agar medium. Several other pIJ101 functions, including that of the kilB gene, whose unregulated expression on pIJ101 is lethal, are required for normal pock size and so have been postulated to mediate intramycelial spread of the plasmid throughout recipient cells. Using antibodies raised against a KilB fusion protein expressed in Escherichia coli, native KilB protein was detected throughout development of pIJ101-containing Streptomyces lividans cells, with the concentration of KilB increasing dramatically and reaching a maximum during the final stages (i.e., sporulation and secondary metabolism) of cellular differentiation. Insertion of the kilB gene of pIJ101 into the S. lividans chromosome in cells lacking the pIJ101 KorB protein, which normally represses kilB gene transcription, resulted in elevated but still temporally increasing amounts of KilB. The increased expression or accumulation of the KilB spread protein throughout cellular differentiation of S. lividans, which leads to maximum KilB concentrations during developmental stages that occur far later than when intermycelial transfer of pIJ101 is mediated, supports the existence of a subsequent intramycelial component to the pIJ101 spread function. The results also suggest that intramycelial spread of pIJ101 molecules within the recipient extends beyond intercompartmental movements within the substrate mycelia and includes undetermined steps within the spore-yielding aerial hyphae as well.
机译:链霉菌质粒pIJ101的菌丝间转移发生在细胞分化之前,并由质粒功能介导,这也是在琼脂培养基上交配期间在单个供体周围发育的生长抑制受体细胞(即小袋)区域产生所必需的。正常鸡痘大小还需要其他几种pIJ101功能,包括kilB基因的功能(其在pIJ101上的失控表达具有致死性),因此被假定为介导质粒在整个受体细胞内的菌丝体扩散。使用针对大肠杆菌中表达的KilB融合蛋白的抗体,在包含pIJ101的链霉菌青紫质细胞的整个发育过程中都检测到了天然KilB蛋白,KilB的浓度急剧增加并在最终阶段(即孢子形成和次级代谢)达到最大值)的细胞分化。在缺乏pIJ101 KorB蛋白的细胞中,将pIJ101的kilB基因插入Li。S. lividans染色体中(通常会抑制kilB基因的转录),导致KilB的数量增加,但在时间上仍然增加。 KilB传播蛋白在整个Lividans细胞分化过程中的表达或积累增加,从而导致发育阶段的最大KilB浓度比介导pIJ101的菌丝间转移的发生晚得多,这支持了随后的菌丝内组分向核糖体的存在。 pIJ101扩展功能。结果还表明,pIJ101分子在受体内的菌丝内扩散延伸超过了底物菌丝体内的室间运动,并且在产生孢子的气生菌丝内还包括不确定的步骤。

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