School of Life Science and Technology, Tongji University, Shanghai, China.
CAS Key Laboratory of Insect Developmental and Evolutionary Biology, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai, China.
Virulence. 2020 Dec;11(1):222-237. doi: 10.1080/21505594.2020.1731126.
A diverse family of metalloproteases (MPs) is distributed in eukaryotes. However, the functions of MPs are still understudied. We report that seven MPs belonging to the M35 family are encoded in the genome of the insect pathogenic fungus . By gene deletions and insect bioassays, we found that one of the M35-family MPs, i.e. MrM35-4, is required for fungal virulence against insect hosts. MrM35-4 is a secretable enzyme and shows a proteolytic activity implicated in facilitating fungal penetration of insect cuticles. After gene rescue and overexpression, insect bioassays indicated that MrM35-4 contributes to inhibiting insect cuticular and hemocyte melanization activities. Enzymatic cleavage assays revealed that the recombinant prophenoloxidases PPO1 and PPO2 of could be clipped by MrM35-4 in a manner differing from a serine protease that can activate PPO activities. In addition, it was found that MrM35-4 is involved in suppressing antifungal gene expression in insects. Consistent with the evident apoptogenic effect of MrM35-4 on host cells, we found that the PPO mutant flies differentially succumbed to the infections of the wild-type and mutant strains of . Thus, MrM35-4 plays a multifaceted role beyond targeting PPOs during fungus-insect interactions, which represents a previously unsuspected strategy employed by to outmaneuver insect immune defenses.
一个多样化的金属蛋白酶(MPs)家族分布在真核生物中。然而,MPs 的功能仍在研究之中。我们报告说,昆虫病原真菌 基因组中编码了七种属于 M35 家族的 MPs。通过基因缺失和昆虫生物测定,我们发现 M35 家族的 MPs 之一 MrM35-4 对于真菌对昆虫宿主的毒力是必需的。MrM35-4 是一种可分泌的酶,表现出一种与促进真菌穿透昆虫表皮有关的蛋白水解活性。在基因拯救和过表达后,昆虫生物测定表明 MrM35-4 有助于抑制昆虫表皮和血细胞黑化活性。酶切分析表明, 中重组的原酚氧化酶 PPO1 和 PPO2 可以被 MrM35-4 以不同于激活 PPO 活性的丝氨酸蛋白酶的方式切割。此外,还发现 MrM35-4 参与抑制昆虫中的抗真菌基因表达。与 MrM35-4 对宿主细胞明显的促凋亡作用一致,我们发现 PPO 突变果蝇对野生型和突变型 的感染有不同的易感性。因此,MrM35-4 在真菌-昆虫相互作用中除了靶向 PPOs 之外,还发挥了多方面的作用,这代表了 用来规避昆虫免疫防御的一种以前未被怀疑的策略。