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Autophagy and LAP in the Fight against Fungal Infections: Regulation and Therapeutics

机译:自噬和LAP在对抗真菌感染中的作用:调节和治疗。

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摘要

Phagocytes fight fungi using canonical and noncanonical, also called LC3-associated phagocytosis (LAP), autophagy pathways. However, the outcomes of autophagy/LAP in shaping host immune responses appear to greatly vary depending on fungal species and cell types. By allowing efficient pathogen clearance and/or degradation of inflammatory mediators, autophagy proteins play a broad role in cellular and immune homeostasis during fungal infections. Indeed, defects in autophagic machinery have been linked with aberrant host defense and inflammatory states. Thus, understanding the molecular mechanisms underlying the relationship between the different forms of autophagy may offer a way to identify drugable molecular signatures discriminating between selective recognition of cargo and host protection. In this regard, IFN-γ and anakinra are teaching examples of successful antifungal agents that target the autophagy machinery. This article provides an overview of the role of autophagy/LAP in response to fungi and in their infections, regulation, and therapeutic exploitation.
机译:吞噬细胞使用规范的和非规范的(也称为LC3相关吞噬作用(LAP))自噬途径来对抗真菌。然而,自噬/ LAP塑造宿主免疫反应的结果似乎根据真菌种类和细胞类型而有很大差异。通过有效清除病原体和/或降解炎症介质,自噬蛋白在真菌感染过程中在细胞和免疫稳态中发挥着广泛的作用。确实,自噬机制的缺陷与宿主防御和炎症状态异常有关。因此,了解潜在的自噬形式之间的关系的分子机制可能提供一种方法,以识别可区分药物的选择性识别和宿主保护之间的可药物分子标记。在这方面,IFN-γ和anakinra是针对自噬机器的成功抗真菌剂的教学实例。本文概述了自噬/ LAP在响应真菌及其感染,调控和治疗开发中的作用。

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