Identification of the protease inhibitory domain of Trichinella spiralis novel cystatin (TsCstN).

0 PARASITOLOGY Parasites, hosts and diseases Pub Date : 2024-08-01 Epub Date: 2024-08-26 DOI:10.3347/PHD.24026
Thassanee Yuthithum, Orawan Phuphisut, Onrapak Reamtong, Nathamon Kosoltanapiwat, Salisa Chaimon, Porntida Kobpornchai, Charin Thawornkuno, Preeyarat Malaithong, Orathai Sawatdichaikul, Poom Adisakwattana
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Abstract

The Trichinella spiralis novel cystatin (TsCstN) inhibits cathepsin L (CatL) activity and inflammation of macrophages during lipopolysaccharide (LPS) induction. To identify the protease inhibitory region, this study applied an in silico modeling approach to simulate truncation sites of TsCstN (Ts01), which created four truncated forms, including TsCstN∆1-39 (Ts02), TsCstN∆1-71 (Ts03), TsCstN∆1-20, ∆73-117 (Ts04), and TsCstN∆1-20, ∆42-117 (Ts05). The superimposition of these truncates modeled with AlphaFold Colab indicated that their structures were more akin to Ts01 than those modeled with I-TASSER. Moreover, Ts04 exhibited the closest resemblance to the structure of Ts01. The recombinant Ts01 (rTs01) and truncated proteins (rTs02, rTs03, and rTs04) were successfully expressed in a prokaryotic expression system while Ts05 was synthesized, with sizes of approximately 14, 12, 8, 10, and 2.5 kDa, respectively. When determining the inhibition of CatL activity, both rTs01 and rTs04 effectively reduced CatL activity in vitro. Thus, the combination of the α1 and L1 regions may be sufficient to inhibit CatL. This study provides comprehensive insights into TsCstN, particularly regarding its protein function and inhibitory domains against CatL.

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螺旋旋毛虫新型胱抑素(TsCstN)蛋白酶抑制结构域的鉴定。
旋毛虫新型胱抑素(TsCstN)可抑制脂多糖(LPS)诱导过程中巨噬细胞内猫蛋白酶L(CatL)的活性和炎症反应。为了确定蛋白酶抑制区,本研究采用了一种硅学建模方法来模拟 TsCstN(Ts01)的截断位点,从而产生了四种截断形式,包括 TsCstN∆1-39 (Ts02)、TsCstN∆1-71 (Ts03)、TsCstN∆1-20, ∆73-117 (Ts04) 和 TsCstN∆1-20, ∆42-117 (Ts05)。用 AlphaFold Colab 建模的这些截体的叠加结果表明,它们的结构比用 I-TASSER 建模的结构更接近 Ts01。此外,Ts04 与 Ts01 的结构最为相似。重组的 Ts01(rTs01)和截短蛋白(rTs02、rTs03 和 rTs04)在原核表达系统中成功表达,而 Ts05 则被合成,其大小分别约为 14、12、8、10 和 2.5 kDa。在测定对 CatL 活性的抑制作用时,rTs01 和 rTs04 都能有效降低体外 CatL 活性。因此,α1 和 L1 区域的组合可能足以抑制 CatL。这项研究提供了对 TsCstN 的全面了解,尤其是其蛋白质功能和对 CatL 的抑制结构域。
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