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Role of Partitioning-defective 1/Microtubule Affinity-regulating Kinases in the Morphogenetic Activity of Helicobacter pylori CagA*

机译:分区缺陷1 /微管亲和调节激酶在幽门螺杆菌CagA的形态发生活性中的作用*

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摘要

Helicobacter pylori CagA plays a key role in gastric carcinogenesis. Upon delivery into gastric epithelial cells, CagA binds and deregulates SHP-2 phosphatase, a bona fide oncoprotein, thereby causing sustained ERK activation and impaired focal adhesions. CagA also binds and inhibits PAR1b/MARK2, one of the four members of the PAR1 family of kinases, to elicit epithelial polarity defect. In nonpolarized gastric epithelial cells, CagA induces the hummingbird phenotype, an extremely elongated cell shape characterized by a rear retraction defect. This morphological change is dependent on CagA-deregulated SHP-2 and is thus thought to reflect the oncogenic potential of CagA. In this study, we investigated the role of the PAR1 family of kinases in the hummingbird phenotype. We found that CagA binds not only PAR1b but also other PAR1 isoforms, with order of strength as follows: PAR1b > PAR1d ≥ PAR1a > PAR1c. Binding of CagA with PAR1 isoforms inhibits the kinase activity. This abolishes the ability of PAR1 to destabilize microtubules and thereby promotes disassembly of focal adhesions, which contributes to the hummingbird phenotype. Consistently, PAR1 knockdown potentiates induction of the hummingbird phenotype by CagA. The morphogenetic activity of CagA was also found to be augmented through inhibition of non-muscle myosin II. Because myosin II is functionally associated with PAR1, perturbation of PAR1-regulated myosin II by CagA may underlie the defect of rear retraction in the hummingbird phenotype. Our findings reveal that CagA systemically inhibits PAR1 family kinases and indicate that malfunctioning of microtubules and myosin II by CagA-mediated PAR1 inhibition cooperates with deregulated SHP-2 in the morphogenetic activity of CagA.
机译:幽门螺杆菌CagA在胃癌发生中起关键作用。送入胃上皮细胞后,CagA结合并解除SHP-2磷酸酶(一种真正的癌蛋白)的表达,从而导致持续的ERK活化和粘着斑受损。 CagA还结合并抑制PAR1b家族的四个成员之一的PAR1b / MARK2,以引起上皮极性缺陷。在非极化的胃上皮细胞中,CagA诱导了蜂鸟表型,这是一种极为细长的细胞形状,其特征是后缩回缺陷。这种形态变化取决于CagA衍生的SHP-2,因此被认为反映了CagA的致癌潜力。在这项研究中,我们调查了PAR1激酶家族在蜂鸟表型中的作用。我们发现,CagA不仅结合PAR1b,而且还结合其他PAR1亚型,其强度顺序如下:PAR1b> PAR1d≥PAR1a> PAR1c。 CagA与PAR1亚型的结合会抑制激酶活性。这消除了PAR1使微管不稳定的能力,从而促进了粘着斑的分解,这有助于蜂鸟的表型。一致地,PAR1敲低增强了CagA对蜂鸟表型的诱导。还发现通过抑制非肌肉肌球蛋白II增强了CagA的形态发生活性。因为肌球蛋白II在功能上与PAR1相关,所以CagA对PAR1调节的肌球蛋白II的扰动可能是蜂鸟表型向后退缩的缺陷。我们的发现表明,CagA系统性地抑制PAR1家族激酶,并表明CagA介导的PAR1抑制引起的微管和肌球蛋白II的功能异常与SHP-2的失调在CagA的形态发生活性中协同作用。

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