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Mycobacterium avium Genes Expressed during Growth in Human Macrophages Detected by Selective Capture of Transcribed Sequences (SCOTS)

机译:通过选择性捕获转录序列(SCOTS)检测到的人类巨噬细胞生长过程中表达的鸟分枝杆菌基因

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摘要

Selective capture of transcribed sequences (SCOTS) has been employed to identify 54 cDNA molecules that represent 46 genes that are expressed by Mycobacterium avium during growth in human macrophages. Some cDNA molecules correspond to genes that are apparently expressed 48 h after infection of macrophages, while others correspond to genes expressed 110 h after infection, and still others correspond to genes expressed throughout the course of infection in our model system. Genes expressed by M. avium during growth in macrophages include genes encoding enzymes of several biosynthetic pathways (pyrimidines, mycobactin, and polyketides); genes that encode enzymes involved in intermediary metabolism, energy metabolism (tricarboxylic acid cycle, glyoxalate shunt), and nitrogen metabolism; and genes that encode regulatory proteins. A number of genes of unknown function were also identified, including genes that code for proteins similar to members of the PPE family of proteins of Mycobacterium tuberculosis and proteins similar to those encoded by the M. tuberculosis mce genes, which have been previously associated with mycobacterial virulence. The SCOTS technique, followed by enrichment for cDNA molecules that are up-regulated or are uniquely expressed by M. avium during growth in human macrophages (compared to growth in laboratory broth culture), allows recovery and identification of a greater diversity of cDNA molecules than does subtractive hybridization between cDNA mixtures from macrophage-grown and broth-grown M. avium. Data are presented demonstrating the reproducibility of recovery of a subset of cDNA molecules from cDNA mixtures purified by SCOTS on several different occasions. These results further demonstrate the beneficial utility of the SCOTS technique for identifying genes whose products are needed for successful survival and growth by an organism in a specific environment.
机译:转录序列(SCOTS)的选择性捕获已被用来识别代表人类巨噬细胞生长期间鸟分枝杆菌表达的46个基因的54个cDNA分子。一些cDNA分子对应于在巨噬细胞感染后48小时明显表达的基因,而其他cDNA分子对应于在感染后110 h表达的基因,还有一些对应于我们模型系统中整个感染过程中表达的基因。鸟分枝杆菌在巨噬细胞生长期间表达的基因包括编码几种生物合成途径(嘧啶,霉菌素和聚酮化合物)的酶的基因;编码参与中间代谢,能量代谢(三羧酸循环,乙二酸乙二醛分流)和氮代谢的酶的基因;以及编码调节蛋白的基因。还鉴定了许多功能未知的基因,包括编码类似于结核分枝杆菌PPE家族成员蛋白质的基因和类似于结核分枝杆菌mce基因编码的蛋白质,这些基因以前与分枝杆菌有关。毒力。 SCOTS技术,随后富集在人类巨噬细胞生长过程中被鸟分枝杆菌上调或由鸟分枝杆菌唯一表达的cDNA分子(与实验室肉汤培养中的生长相比),可以回收和鉴定比cDNA更大的多样性的cDNA分子。确实从巨噬细胞生长和肉汤生长的M. avium的cDNA混合物之间进行了减性杂交。所提供的数据证明了在几种不同情况下从SCOTS纯化的cDNA混合物中回收一部分cDNA分子的可重复性。这些结果进一步证明,SCOTS技术可用于识别基因,这些基因的产物对于特定环境中的生物体成功存活和生长是必需的。

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