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The Mycobacterium tuberculosis Complex-Restricted Gene cfp32 Encodes an Expressed Protein That Is Detectable in Tuberculosis Patients and Is Positively Correlated with Pulmonary Interleukin-10

机译:结核分枝杆菌复合体限制性基因cfp32编码一种表达蛋白,该蛋白在结核病患者中可检测到并且与肺白介素10正相关。

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摘要

Human tuberculosis (TB) is caused by the bacillus Mycobacterium tuberculosis, a subspecies of the M. tuberculosis complex (MTC) of mycobacteria. Postgenomic dissection of the M. tuberculosis proteome is ongoing and critical to furthering our understanding of factors mediating M. tuberculosis pathobiology. Towards this end, a 32-kDa putative glyoxalase in the culture filtrate (CF) of growing M. tuberculosis (originally annotated as Rv0577 and hereafter designated CFP32) was identified, cloned, and characterized. The cfp32 gene is MTC restricted, and the gene product is expressed ex vivo as determined by the respective Southern and Western blot testing of an assortment of mycobacteria. Moreover, the cfp32 gene sequence is conserved within the MTC, as no polymorphisms were found in the tested cfp32 PCR products upon sequence analysis. Western blotting of M. tuberculosis subcellular fractions localized CFP32 predominantly to the CF and cytosolic compartments. Data to support the in vivo expression of CFP32 were provided by the serum recognition of recombinant CFP32 in 32% of TB patients by enzyme-linked immunosorbent assay (ELISA) as well as the direct detection of CFP32 by ELISA in the induced sputum samples from 56% of pulmonary TB patients. Of greatest interest was the observation that, per sample, sputum CFP32 levels (a potential indicator of increasing bacterial burden) correlated with levels of expression in sputum of interleukin-10 (an immunosuppressive cytokine and a putative contributing factor to disease progression) but not levels of gamma interferon (a key cytokine in the protective immune response in TB), as measured by ELISA. Combined, these data suggest that CFP32 serves a necessary biological function(s) in tubercle bacilli and may contribute to the M. tuberculosis pathogenic mechanism. Overall, CFP32 is an attractive target for drug and vaccine design as well as new diagnostic strategies.
机译:人结核病(TB)是由结核分枝杆菌(一种分枝杆菌结核分枝杆菌复合体(MTC)的亚种)引起的。结核分枝杆菌蛋白质组的基因组后解剖学研究正在进行中,对于加深我们对介导结核分枝杆菌病理学因素的认识至关重要。为此,鉴定,克隆和鉴定了正在生长的结核分枝杆菌的培养物滤液(CF)中的32-kDa的乙醛酸酶(最初标注为Rv0577,以下称为CFP32)。 cfp32基因受MTC限制,并且该基因产物通过分枝杆菌的相应Southern和Western印迹测试确定离体表达。此外,cfp32基因序列在MTC中是保守的,因为在进行序列分析后,在测试的cfp32 PCR产物中未发现多态性。结核分枝杆菌亚细胞级分的蛋白质印迹主要将CFP32定位于CF和胞质区室。通过酶联免疫吸附测定(ELISA)在32%的TB患者中血清对重组CFP32的血清识别以及通过ELISA直接检测56个诱导痰样品中的CFP32提供了支持CFP32体内表达的数据肺结核患者百分比。最令人感兴趣的是,观察到每个样本的痰中CFP32水平(细菌负担增加的潜在指标)与白细胞介素10(免疫抑制细胞因子和疾病进展的可能因素)的痰中表达水平相关,但与水平无关ELISA检测的γ干扰素(TB保护性免疫应答中的关键细胞因子)的水平。综合起来,这些数据表明CFP32在结核杆菌中具有必要的生物学功能,并且可能有助于结核分枝杆菌的致病机制。总体而言,CFP32是药物和疫苗设计以及新诊断策略的诱人靶标。

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