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The Baculovirus Uses a Captured Host Phosphatase to Induce Enhanced Locomotory Activity in Host Caterpillars

机译:杆状病毒使用捕获的宿主磷酸酶诱导宿主毛虫中增强的机体活性。

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摘要

The baculovirus is a classic example of a parasite that alters the behavior or physiology of its host so that progeny transmission is maximized. Baculoviruses do this by inducing enhanced locomotory activity (ELA) that causes the host caterpillars to climb to the upper foliage of plants. We previously reported that this behavior is not induced in silkworms that are infected with a mutant baculovirus lacking its protein tyrosine phosphatase (ptp) gene, a gene likely captured from an ancestral host. Here we show that the product of the ptp gene, PTP, associates with baculovirus ORF1629 as a virion structural protein, but surprisingly phosphatase activity associated with PTP was not required for the induction of ELA. Interestingly, the ptp knockout baculovirus showed significantly reduced infectivity of larval brain tissues. Collectively, we show that the modern baculovirus uses the host-derived phosphatase to establish adequate infection for ELA as a virion-associated structural protein rather than as an enzyme.
机译:杆状病毒是改变其宿主的行为或生理从而使子代传播最大化的寄生虫的经典例子。杆状病毒通过诱导增强的运动活性(ELA)来做到这一点,该运动引起宿主毛毛虫爬到植物的上部叶片。我们以前曾报道过,这种行为在感染了缺少其蛋白酪氨酸磷酸酶(ptp)基因的突变杆状病毒的家蚕中没有被诱导,该基因可能是从祖先宿主中捕获的。在这里,我们显示了ptp基因PTP的产物与杆状病毒ORF1629作为病毒体结构蛋白缔合,但是令人惊讶的是,诱导ELA不需要与PTP相关的磷酸酶活性。有趣的是,ptp敲除杆状病毒显示出幼虫脑组织的感染性大大降低。总的来说,我们表明现代杆状病毒使用宿主来源的磷酸酶为ELA建立足够的感染,作为病毒体相关的结构蛋白而不是酶。

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