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Reduced Expression of CD45 Protein-tyrosine Phosphatase Provides Protection against Anthrax Pathogenesis*S⃞

机译:CD45蛋白酪氨酸磷酸酶表达的减少提供 预防炭疽病 发病机制*S⃞

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摘要

The modulation of cellular processes by small molecule inhibitors, gene inactivation, or targeted knockdown strategies combined with phenotypic screens are powerful approaches to delineate complex cellular pathways and to identify key players involved in disease pathogenesis. Using chemical genetic screening, we tested a library of known phosphatase inhibitors and identified several compounds that protected Bacillus anthracis infected macrophages from cell death. The most potent compound was assayed against a panel of sixteen different phosphatases of which CD45 was found to be most sensitive to inhibition. Testing of a known CD45 inhibitor and antisense phosphorodiamidate morpholino oligomers targeting CD45 also protected B. anthracis-infected macrophages from cell death. However, reduced CD45 expression did not protect anthrax lethal toxin (LT) treated macrophages, suggesting that the pathogen and independently added LT may signal through distinct pathways. Subsequent, in vivo studies with both gene-targeted knockdown of CD45 and genetically engineered mice expressing reduced levels of CD45 resulted in protection of mice after infection with the virulent Ames B. anthracis. Intermediate levels of CD45 expression were critical for the protection, as mice expressing normal levels of CD45 or disrupted CD45 phosphatase activity or no CD45 all succumbed to this pathogen. Mechanism-based studies suggest that the protection provided by reduced CD45 levels results from regulated immune cell homeostasis that may diminish the impact of apoptosis during the infection. To date, this is the first report demonstrating that reduced levels of host phosphatase CD45 modulate anthrax pathogenesis.
机译:小分子抑制剂对细胞过程的调节,基因失活或靶向击倒策略与表型筛选相结合,是描绘复杂细胞途径并确定参与疾病发病机制的关键因素的有效方法。使用化学遗传筛选,我们测试了一个已知的磷酸酶抑制剂库,并鉴定了几种保护炭疽杆菌感染的巨噬细胞免于细胞死亡的化合物。针对一组十六种不同的磷酸酶测定了最有效的化合物,发现其中的CD45对抑制作用最敏感。靶向CD45的已知CD45抑制剂和反义二氨基磷酸二氨基吗啉代寡聚物的测试也可以保护炭疽芽孢杆菌感染的巨噬细胞免于细胞死亡。但是,降低的CD45表达不能保护炭疽致死毒素(LT)处理的巨噬细胞,这表明病原体和独立添加的LT可能通过不同的途径发出信号。随后,体内针对CD45的基因靶向敲除和表达水平降低的CD45的基因工程小鼠的体内研究在感染有毒的炭疽杆菌后对小鼠起到了保护作用。 CD45表达的中间水平对于保护至关重要,因为表达正常水平的CD45或CD45磷酸酶活性被破坏或没有CD45的小鼠都被该病原体所吸收。基于机理的研究表明,降低的CD45水平所提供的保护作用是受调节的免疫细胞稳态作用的结果,可减少感染过程中细胞凋亡的影响。迄今为止,这是第一份证明宿主磷酸酶CD45水平降低可调节炭疽发病机理的报告。

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