Suppr超能文献

热带假丝酵母分泌的天冬氨酸蛋白酶-1对补体凝集素途径的灭活作用。

Inactivation of the Complement Lectin Pathway by Candida tropicalis Secreted Aspartyl Protease-1.

机构信息

Faculty of Health & Life Sciences, De Montfort University, UK.

Department of Respiratory Sciences, University of Leicester, UK.

出版信息

Immunobiology. 2022 Nov;227(6):152263. doi: 10.1016/j.imbio.2022.152263. Epub 2022 Aug 28.

Abstract

Candida tropicalisis an opportunistic fungal pathogen and is one of the most frequently isolated non-albicans species. It can cause localised as well as invasive systemic infections particularly in immunocompromised patients. Increased resistance to common anti-fungal drugs is an emerging problem. In order to establish disseminated infections, Candida has evolved several strategies to escape the host immune system. A detailed understanding of how C. tropicalis escapes the host immune attack is needed as it can help develop novel anti-fungal therapies. Secreted aspartyl proteinases (Saps) of C. albicans have been shown to be determinants of virulence and immune evasion. However, the immune evasion properties of C. tropicalis Saps have been poorly characterised. This study investigated the immune evasion properties of C. tropicalis secreted aspartic protease 1 (Sapt1).Sapt1 was recombinantly produced using a Kluyveromyces lactis yeast expression system. A range of complement proteins and immunogloublins were screened to test if Sapt1 had any proteolytic activity. Sapt1 efficiently cleaved human mannose-binding lectin (MBL) and collectin-11, which are the initiating molecules of the lectin pathway of the complement system, but not l-ficolin. In addition, Sapt1 cleaved DC-SIGN, the receptor on antigen presenting dendritic cells. Proteolysis was prominent in acidic condition (pH 5.2), a characteristic of aspartyl protease. No proteolytic activity was detected against complement proteins C1q, C3, C3b, IgG and IgA. In view of the ability of Sapt1 to cleave MBL and collectin-11, we found that Sapt1 could prevent activation of the complement lectin pathway. RT-qPCR analysis using three different C. tropicalis clinical isolates (oral, blood and peritoneal dialysis fluid) revealed relatively higher levels of mRNA expression of Sapt1 gene when compared to a reference strain; Sapt1 protein was found to be secreted by all the tested strains. Lectin pathway and its initiating components are crucial to provide front line defence against Candida infections. For the first time, we have shown that a Candida protease can proteolytically degrade the key initiating components of lectin pathway and inhibit complement activation. Findings from this study highlight the importance of exploring Sapt1 as a potential therapeutic target. We conclude that C. tropicalis secretes Sapt1 to target the complement lectin pathway, a key pattern recognition and clearance mechanism, for its survival and pathogenesis.

摘要

热带假丝酵母菌是一种机会性真菌病原体,是最常分离到的非白念珠菌物种之一。它可引起局部和侵袭性系统性感染,特别是在免疫功能低下的患者中。对常用抗真菌药物的耐药性增加是一个新出现的问题。为了建立播散性感染,假丝酵母菌已经进化出几种逃避宿主免疫系统的策略。详细了解热带假丝酵母菌如何逃避宿主免疫攻击,有助于开发新的抗真菌疗法。白念珠菌分泌的天冬氨酸蛋白酶(Saps)已被证明是毒力和免疫逃避的决定因素。然而,热带假丝酵母菌 Saps 的免疫逃避特性尚未得到充分描述。本研究调查了热带假丝酵母菌分泌的天冬氨酸蛋白酶 1(Sapt1)的免疫逃避特性。Sapt1 是使用克鲁维酵母酵母表达系统重组产生的。筛选了一系列补体蛋白和免疫球蛋白,以测试 Sapt1 是否具有任何蛋白水解活性。Sapt1 有效地切割人甘露聚糖结合凝集素(MBL)和补体 11,这是补体系统凝集素途径的起始分子,但不切割 l-ficolin。此外,Sapt1 还切割抗原呈递树突状细胞上的受体 DC-SIGN。在酸性条件(pH 5.2)下,天冬氨酸蛋白酶的特征是蛋白水解作用明显,没有检测到针对补体蛋白 C1q、C3、C3b、IgG 和 IgA 的蛋白水解活性。鉴于 Sapt1 切割 MBL 和补体 11 的能力,我们发现 Sapt1 可以阻止补体凝集素途径的激活。使用三种不同的热带假丝酵母菌临床分离株(口腔、血液和腹膜透析液)进行 RT-qPCR 分析,与参考株相比,Sapt1 基因的 mRNA 表达水平相对较高;发现所有测试菌株均分泌 Sapt1 蛋白。凝集素途径及其起始成分对于提供针对假丝酵母菌感染的一线防御至关重要。这是首次表明一种假丝酵母菌蛋白酶可以蛋白水解降解凝集素途径的关键起始成分,并抑制补体激活。本研究的结果强调了探索 Sapt1 作为潜在治疗靶点的重要性。我们得出结论,热带假丝酵母菌分泌 Sapt1 以针对补体凝集素途径,这是一种关键的模式识别和清除机制,以维持其生存和发病机制。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验