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首页> 外文期刊>Toxins >A Conformational Shift in the Dissociated Cholera Toxin A1 Subunit Prevents Reassembly of the Cholera Holotoxin
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A Conformational Shift in the Dissociated Cholera Toxin A1 Subunit Prevents Reassembly of the Cholera Holotoxin

机译:解离的霍乱毒素A1亚基的构象转变防止霍乱全毒素的重组。

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Cholera toxin (CT) consists of a catalytic A1 subunit, an A2 linker, and a homopentameric cell-binding B subunit. The intact holotoxin moves by vesicle carriers from the cell surface to the endoplasmic reticulum (ER) where CTA1 is released from the rest of the toxin. The dissociated CTA1 subunit then shifts to an unfolded conformation, which triggers its export to the cytosol by a process involving the quality control system of ER-associated degradation (ERAD). We hypothesized that the unfolding of dissociated CTA1 would prevent its non-productive reassociation with CTA2/CTB5. To test this prediction, we monitored the real-time reassociation of CTA1 with CTA2/CTB5 by surface plasmon resonance. Folded but not disordered CTA1 could interact with CTA2/CTB5 to form a stable, functional holotoxin. Our data, thus, identified another role for the intrinsic instability of the isolated CTA1 polypeptide in host-toxin interactions: in addition to activating the ERAD translocation mechanism, the spontaneous unfolding of free CTA1 at 37 °C prevents the non-productive reassembly of a CT holotoxin in the ER.
机译:霍乱毒素(CT)由催化A1亚基,A2连接子和同五聚体细胞结合B亚基组成。完整的全毒素通过囊泡载体从细胞表面移动到内质网(ER),在此处从其余毒素中释放出CTA1。然后,解离的CTA1亚基转变为未折叠的构象,这通过涉及ER相关降解(ERAD)的质量控制系统的过程触发其向细胞质的输出。我们假设解离的CTA1的展开将阻止其与CTA2 / CTB 5 的非生产性重新结合。为了验证这一预测,我们通过表面等离振子共振监测了CTA1与CTA2 / CTB 5 的实时重新关联。折叠但无序的CTA1可以与CTA2 / CTB 5 相互作用形成稳定的功能性全毒素。因此,我们的数据确定了分离的CTA1多肽在宿主与毒素相互作用中固有的不稳定性的另一个作用:除了激活ERAD易位机制外,游离CTA1在37°C的自发解开还阻止了CTA1多肽的非生产性重组。急诊室中的CT毒素。

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