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首页> 外文期刊>Journal of Medicinal Chemistry >Discovery and evaluation of novel inhibitors of mycobacterium protein tyrosine phosphatase B from the 6-hydroxy-benzofuran-5-carboxylic acid scaffold
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Discovery and evaluation of novel inhibitors of mycobacterium protein tyrosine phosphatase B from the 6-hydroxy-benzofuran-5-carboxylic acid scaffold

机译:从6-羟基-苯并呋喃-5-羧酸支架中发现和评价分枝杆菌蛋白酪氨酸磷酸酶B的新型抑制剂

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Mycobacterium tuberculosis (Mtb) protein tyrosine phosphatase B (mPTPB) is a virulence factor secreted by the pathogen and mediates mycobacterial survival in macrophages by targeting host cell immune responses. Consequently, mPTPB represents an exciting new target to combat tuberculosis (TB) infection. We describe a medicinal chemistry oriented approach that transforms a benzofuran salicylic acid scaffold into a highly potent (IC_(50) = 38 nM) and selective mPTPB inhibitor (>50 fold against a large panel of PTPs). Importantly, the inhibitor is capable of reversing the altered host immune responses induced by the bacterial phosphatase and restoring the macrophage's full capacity to secrete IL-6 and undergo apoptosis in response to interferon-γ stimulation, validating the concept that chemical inhibition of mPTPB may be therapeutically useful for novel TB treatment. The study further demonstrates that bicyclic salicylic acid pharmacophores can be used to deliver PTP inhibitors with high potency, selectivity, and cellular efficacy.
机译:结核分枝杆菌(Mtb)蛋白酪氨酸磷酸酶B(mPTPB)是病原体分泌的毒力因子,可通过靶向宿主细胞免疫反应介导巨噬细胞中的分枝杆菌存活。因此,mPTPB代表了一个抗击结核(TB)感染的令人兴奋的新目标。我们描述了一种以药物化学为导向的方法,该方法将苯并呋喃水杨酸支架转变为高效的(IC_(50)= 38 nM)和选择性的mPTPB抑制剂(对一大批PTP而言> 50倍)。重要的是,该抑制剂能够逆转由细菌磷酸酶诱导的改变的宿主免疫反应,并恢复巨噬细胞响应干扰素-γ刺激而分泌IL-6和经历凋亡的全部能力,从而证实了mPTPB的化学抑制作用可能是对新型结核病的治疗有用。该研究进一步证明,双环水杨酸药效团可用于递送PTP抑制剂,具有高效力,选择性和细胞功效。

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