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hERG channel trafficking

机译:HERG渠道贩运

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摘要

Mutations in the cardiac potassium channel hERG/I_(Kr) cause inherited long QT syndrome with increased susceptibility to ventricular arrhythmias. Several mutations in hERG produce trafficking-deficient channels that are retained in the endoplasmic reticulum (ER). Surface expression of certain mutations (i.e. hERG G601S) can be restored by specific channel blockers. Although hERG currents have been studied extensively, little is known about proteins in the processing pathway. Using biochemical and electrophysiological assays we show that the cytosolic chaperones Hsp70 and Hsp90 interact transiently with wild-type hERG. Inhibition of Hsp90 prevents maturation and reduces hERG/I_(Kr) currents. Trafficking-deficient mutants remain tightly associated with chaperones in the ER until trafficking is restored, e.g. by channel blockers. hERG/chaperone complexes represent novel targets for therapeutic compounds with cardiac liability such as arsenic, which is used in the treatment of leukaemias. Arsenic interferes with the formation of hERG/chaperone complexes and inhibits hERG maturation causing ECG abnormalities. We conclude that Hsp90 and Hsp70 are crucial for productive folding of wild-type hERG. Therapeutic compounds that inhibit chaperone function produce a novel form of acquired long QT syndrome not by direct channel block but by reduced surface expression due to an acquired trafficking defect of hERG.
机译:心脏钾通道HERG / I_(KR)突变归因于血管间心律失常的易感性增加了QT综合征。 HERG中的几种突变产生缺乏缺陷的通道,其保留在内质网(ER)中。可以通过特定通道阻挡剂恢复某些突变的表面表达(即HERG G601S)。虽然已经广泛研究了HERG电流,但是关于加工途径中的蛋白质知之甚少。使用生化和电生理学测定,我们表明细胞溶质伴侣HSP70和HSP90近遍布野生型疱疹。 HSP90的抑制可防止成熟并减少HERG / I_(KR)电流。直到贩运恢复,贩运缺乏突变体仍然与ER中的伴侣紧密相关联,例如,贩运通过频道阻滞剂。 Herg / Chererone络合物代表具有心脏责任等治疗化合物的新型靶标,例如砷,用于治疗菌血症。砷干扰了HERG /伴侣络合物的形成,并抑制了HERG成熟,导致ECG异常。我们得出结论,HSP90和HSP70对于野生型疱疹的生产性折叠至关重要。抑制伴侣函数的治疗化合物产生一种新颖的获得的长QT综合征,而不是通过直接通道块,而是由于由于预测的贩运仇指鼻缺陷而导致的表面表达减少。

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