A

Liu, Heckmann, Caignard, Vitour, Hirchaud, Boireau, Karadjian, Vallée
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Abstract

The parasitic nematode Trichinella has a special relationship with its host as it has a unique intracellular location within the feeder cell which is a structure derived from skeletal muscle fiber. It has been proposed that “parakines” secreted by Trichinella larvae serve as messengers to implement communication between the parasite and the muscle cells through a molecular cross-talk to ensure permanent coexistence within the host. The Ts-NBL1 protein is considered to be a potential key “parakine” involved in the early invasion of the muscle fiber and its transformation into a feeder cell during Trichinella spiralis infection. This study used for the first time yeast two-hybrid (Y2H) technology in Trichinella to identify Ts-NBL1 interacting proteins. GST co-affinity purification experiments confirmed vimentin as an important interactor. The discovery of the new host proteins interacting with Ts-NBL1 will help to suggest that Ts-NBL1 contributes to participate in the capsule formation of feeder cells and provide ideas for understanding the molecular and cellular mechanisms involved in the survival of Trichinella in the host.
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寄生线虫旋毛虫与寄主有着特殊的关系,因为它在喂食细胞内具有独特的细胞内位置,这是一种源自骨骼肌纤维的结构。有人提出,旋毛虫幼虫分泌的“parakines”作为信使,通过分子串音实现寄生虫与肌肉细胞之间的通信,以确保在宿主内永久共存。Ts-NBL1蛋白被认为是一个潜在的关键“parakine”,参与了旋毛虫感染期间肌纤维的早期侵袭及其向饲养细胞的转化。本研究首次在旋毛虫中使用酵母双杂交(Y2H)技术鉴定了Ts-NBL1相互作用蛋白。GST共亲和纯化实验证实了vimentin是一个重要的相互作用物。与Ts-NBL1相互作用的新宿主蛋白的发现将有助于提示Ts-NBL1参与饲养细胞的囊形成,并为理解旋毛虫在宿主体内存活的分子和细胞机制提供思路。
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