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Scabies mite inactive serine proteases are potent inhibitors of the human complement lectin pathway

机译:疮无活性丝氨酸蛋白酶是人补体凝集素途径的有效抑制剂

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摘要

Scabies is an infectious skin disease caused by the mite Sarcoptes scabiei and has been classified as one of the six most prevalent epidermal parasitic skin diseases infecting populations living in poverty by the World Health Organisation. The role of the complement system, a pivotal component of human innate immunity, as an important defence against invading pathogens has been well documented and many parasites have an arsenal of anti-complement defences. We previously reported on a family of scabies mite proteolytically inactive serine protease paralogues (SMIPP-Ss) thought to be implicated in host defence evasion. We have since shown that two family members, SMIPP-S D1 and I1 have the ability to bind the human complement components C1q, mannose binding lectin (MBL) and properdin and are capable of inhibiting all three human complement pathways. This investigation focused on inhibition of the lectin pathway of complement activation as it is likely to be the primary pathway affecting scabies mites. Activation of the lectin pathway relies on the activation of MBL, and as SMIPP-S D1 and I1 have previously been shown to bind MBL, the nature of this interaction was examined using binding and mutagenesis studies. SMIPP-S D1 bound MBL in complex with MBL-associated serine proteases (MASPs) and released the MASP-2 enzyme from the complex. SMIPP-S I1 was also able to bind MBL in complex with MASPs, but MASP-1 and MASP-2 remained in the complex. Despite these differences in mechanism, both molecules inhibited activation of complement components downstream of MBL. Mutagenesis studies revealed that both SMIPP-Ss used an alternative site of the molecule from the residual active site region to inhibit the lectin pathway. We propose that SMIPP-Ss are potent lectin pathway inhibitors and that this mechanism represents an important tool in the immune evasion repertoire of the parasitic mite and a potential target for therapeutics.
机译:疮是一种由螨螨Sarcoptes scabiei引起的传染性皮肤病,被世界卫生组织列为六种最普遍的表皮寄生性皮肤病之一,感染了生活贫困的人群。作为人类先天免疫的关键组成部分,补体系统作为抵御入侵病原体的重要防御作用已得到充分证明,许多寄生虫均具有抗补体防御系统。我们先前曾报道on虫家族蛋白水解失活的丝氨酸蛋白酶旁系同源物(SMIPP-Ss),认为与宿主防御规避有关。从那以后,我们证明了SMIPP-S D1和I1这两个家族成员具有结合人类补体成分C1q,甘露糖结合凝集素(MBL)和备解素的能力,并且能够抑制所有三种人类补体途径。这项研究集中于抑制补体激活的凝集素途径,因为它可能是影响sc疮的主要途径。凝集素途径的激活依赖于MBL的激活,并且由于先前已证明SMIPP-S D1和I1结合MBL,因此使用结合和诱变研究检查了这种相互作用的性质。 SMIPP-S D1将MBL与MBL相关的丝氨酸蛋白酶(MASP)结合,并从复合物中释放MASP-2酶。 SMIPP-S I1也能够将MBL与MASPs结合,但MASP-1和MASP-2仍保留在复合物中。尽管机制上存在这些差异,但两种分子均抑制MBL下游补体成分的活化。诱变研究表明,两个SMIPP-S都使用了分子在残留活性位点区域的替代位点来抑制凝集素途径。我们提出,SMIPP-Ss是有效的凝集素途径抑制剂,并且该机制代表了寄生螨的免疫逃避库中的重要工具,也是治疗的潜在靶标。

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