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Induction of autoimmune response to the extracellular loop of the HERG channel pore induces QTc prolongation in guinea-pigs

机译:诱导HER​​G通道孔细胞外环的自身免疫反应诱导豚鼠QTc延长

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摘要

Key points: Channelopathies of autoimmune origin are novel and are associated with corrected QT (QTc) prolongation and complex ventricular arrhythmias. We have recently demonstrated that anti-SSA/Ro antibodies from patients with autoimmune diseases and with QTc prolongation on the ECG target the human ether-à-go-go-related gene (HERG) K+ channel by inhibiting the corresponding current, IKr, at the pore region. Immunization of guinea-pigs with a peptide (E-pore peptide) corresponding to the extracellular loop region connecting the S5 and S6 segments of the HERG channel induces high titres of antibodies that inhibit IKr, lengthen the action potential and cause QTc prolongation on the surface ECG. In addition, anti-SSA/Ro-positive sera from patients with connective tissue diseases showed high reactivity to the E-pore peptide. The translational impact is the development of a peptide-based approach for the diagnosis and treatment of autoimmune-associated long QT syndrome. Abstract: We recently demonstrated that anti-SSA/52 kDa Ro antibodies (Abs) from patients with autoimmune diseases and corrected QT (QTc) prolongation directly target and inhibit the human ether-à-go-go-related gene (HERG) K+ channel at the extracellular pore (E-pore) region, where homology with SSA/52 kDa Ro antigen was demonstrated. We tested the hypothesis that immunization of guinea-pigs with a peptide corresponding to the E-pore region (E-pore peptide) will generate pathogenic inhibitory Abs and cause QTc prolongation. Guinea-pigs were immunized with a 31-amino-acid peptide corresponding to the E-pore region of HERG. On days 10–62 after immunization, ECGs were recorded and blood was sampled for the detection of E-pore peptide Abs. Serum samples from patients with autoimmune diseases were evaluated for reactivity to E-pore peptide by enzyme-linked immunosorbent assay (ELISA), and histology was performed on hearts using Masson's Trichrome. Inhibition of the HERG channel was assessed by electrophysiology and by computational modelling of the human ventricular action potential. The ELISA results revealed the presence of high titres of E-pore peptide Abs and significant QTc prolongation after immunization. High reactivity to E-pore peptide was found using anti-SSA/Ro Ab-positive sera from patients with QTc prolongation. Histological data showed no evidence of fibrosis in immunized hearts. Simulations of simultaneous inhibition of repolarizing currents by anti-SSA/Ro Ab-positive sera showed the predominance of the HERG channel in controlling action potential duration and the QT interval. These results are the first to demonstrate that inhibitory Abs to the HERG E-pore region induce QTc prolongation in immunized guinea-pigs by targeting the HERG channel independently from fibrosis. The reactivity of anti-SSA/Ro Ab-positive sera from patients with connective tissue diseases with the E-pore peptide opens novel pharmacotherapeutic avenues in the diagnosis and management of autoimmune-associated QTc prolongation.
机译:要点:自身免疫起源的通道病变是新颖的,并与校正的QT(QTc)延长和复杂的室性心律不齐有关。我们最近证明,自身免疫性疾病患者的抗SSA / Ro抗体在ECG上QTc延长,可以通过抑制相应的电流IKr靶向人以太-go-go-相关基因(HERG)K +通道。孔区域。用对应于连接HERG通道S5和S6区段的细胞外环区的肽(E-pore肽)免疫豚鼠会诱导高滴度的抗体抑制IKr,延长动作电位并导致表面QTc延长心电图。此外,结缔组织病患者的抗SSA / Ro阳性血清对E-孔肽显示出高反应性。翻译的影响是用于诊断和治疗自身免疫相关的长QT综合征的基于肽的方法的发展。摘要:我们最近证明,患有自身免疫性疾病和校正的QT(QTc)延长的患者的抗SSA / 52 kDa Ro抗体(Abs)直接靶向并抑制人与人走狗相关基因(HERG)K +通道在细胞外孔(E孔)区域,与SSA / 52 kDa Ro抗原具有同源性。我们测试了以下假设:用对应于E孔区域的肽(E孔肽)免疫豚鼠会产生致病性抑制性Abs,并导致QTc延长。用对应于HERG E孔区域的31个氨基酸的肽免疫豚鼠。免疫后第10-62天,记录心电图并取样血液以检测E孔肽抗体。通过酶联免疫吸附测定(ELISA)评估了患有自身免疫性疾病患者的血清样品对E孔肽的反应性,并使用Masson's Trichrome对心脏进行了组织学检查。通过电生理学和人心室动作电位的计算模型来评估HERG通道的抑制。 ELISA结果表明,免疫后存在高滴度的E-孔肽Abs和明显的QTc延长。 QTc延长患者使用抗SSA / Ro Ab阳性血清对E孔肽具有高反应活性。组织学数据显示免疫心脏中没有纤维化的证据。通过抗SSA / Ro Ab阳性血清同时抑制复极化电流的模拟显示,HERG通道在控制动作电位持续时间和QT间隔方面具有优势。这些结果首次证明,HERG E孔区域的抑制性抗体通过独立于纤维化靶向HERG通道,在免疫的豚鼠中诱导QTc延长。结缔组织病患者的抗SSA / Ro Ab阳性血清与E孔肽的反应性为自身免疫相关QTc延长的诊断和治疗开辟了新的药物治疗途径。

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