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Intracellular Theileria annulata Promote Invasive Cell Motility through Kinase Regulation of the Host Actin Cytoskeleton

机译:胞内Theileria annulata通过宿主肌动蛋白细胞骨架的激酶调节促进侵袭性细胞运动。

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摘要

The intracellular, protozoan Theileria species parasites are the only eukaryotes known to transform another eukaryotic cell. One consequence of this parasite-dependent transformation is the acquisition of motile and invasive properties of parasitized cells in vitro and their metastatic dissemination in the animal, which causes East Coast Fever (T. parva) or Tropical Theileriosis (T. annulata). These motile and invasive properties of infected host cells are enabled by parasite-dependent, poorly understood F-actin dynamics that control host cell membrane protrusions. Herein, we dissected functional and structural alterations that cause acquired motility and invasiveness of T. annulata-infected cells, to understand the molecular basis driving cell dissemination in Tropical Theileriosis. We found that chronic induction of TNFα by the parasite contributes to motility and invasiveness of parasitized host cells. We show that TNFα does so by specifically targeting expression and function of the host proto-oncogenic ser/thr kinase MAP4K4. Blocking either TNFα secretion or MAP4K4 expression dampens the formation of polar, F-actin-rich invasion structures and impairs cell motility in 3D. We identified the F-actin binding ERM family proteins as MAP4K4 downstream effectors in this process because TNFα-induced ERM activation and cell invasiveness are sensitive to MAP4K4 depletion. MAP4K4 expression in infected cells is induced by TNFα-JNK signalling and maintained by the inhibition of translational repression, whereby both effects are parasite dependent. Thus, parasite-induced TNFα promotes invasive motility of infected cells through the activation of MAP4K4, an evolutionary conserved kinase that controls cytoskeleton dynamics and cell motility. Hence, MAP4K4 couples inflammatory signaling to morphodynamic processes and cell motility, a process exploited by the intracellular Theileria parasite to increase its host cell's dissemination capabilities.
机译:细胞内的原生动物泰勒虫种寄生虫是已知能转化另一种真核细胞的唯一真核生物。这种寄生虫依赖性转化的结果之一是在体外获得了被寄生虫细胞的运动和侵袭特性,以及它们在动物体内的转移性传播,这导致了东海岸热(T. parva)或热带Theileriosis(T. annulata)。感染的宿主细胞的这些运动和侵袭特性通过控制宿主细胞膜突起的寄生虫依赖性,了解不足的F-肌动蛋白动力学实现。在本文中,我们剖析了引起环线虫感染的细胞获得活动性和侵袭性的功能和结构变化,以了解驱动热带泰勒虫病中细胞传播的分子基础。我们发现该寄生虫对TNFα的慢性诱导有助于寄生虫宿主细胞的运动和侵袭性。我们显示,TNFα可以通过特异性靶向宿主原癌基因ser / thr激酶MAP4K4的表达和功能来实现。阻断TNFα分泌或MAP4K4表达可抑制极性的,富含F-肌动蛋白的侵袭结构的形成,并损害3D细胞的运动性。我们将F-肌动蛋白结合ERM家族蛋白确定为MAP4K4下游效应子,因为TNFα诱导的ERM激活和细胞侵袭性对MAP4K4耗竭敏感。 TNFα-JNK信号传导可诱导感染细胞中MAP4K4的表达,并通过抑制翻译抑制来维持MAP4K4的表达,因此这两种作用均取决于寄生虫。因此,寄生虫诱导的TNFα通过激活MAP4K4(一种控制细胞骨架动力学和细胞运动性的进化保守激酶)的激活来促进感染细胞的侵袭性运动。因此,MAP4K4将炎性信号传导与形态动力学过程和细胞运动耦合,细胞内泰勒虫寄生虫利用该过程来增加其宿主细胞的传播能力。

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