Julius-Bernstein-Institut für Physiologie, Martin-Luther-Universität Halle-Wittenberg, Halle, Germany.
J Mol Cell Cardiol. 2011 Aug;51(2):226-35. doi: 10.1016/j.yjmcc.2011.05.004. Epub 2011 May 14.
Recently it was shown that lipopolysaccharide (LPS) impairs the pacemaker current in human atrial myocytes. It was speculated that reduced heart rate variability (HRV), typical of patients with severe sepsis, may partially be explained by this impairment. We evaluated the effect of various types of LPS on the activity of human hyperpolarization-activated cyclic nucleotide-gated channel 2 (hHCN2) expressed in HEK293 cells, and on pacemaker channels in native murine sino-atrial node (SAN) cells, in order to determine the structure of LPS necessary to modulate pacemaker channel function. Application of LPS caused a robust inhibition of hHCN2-mediated current (I(hHCN2)) owing to a negative shift of the voltage dependence of current activation and to a reduced maximal conductance. In addition, kinetics of channel gating were modulated by LPS. Pro-inflammatory LPS-types lacking the O-chain did not reduce I(hHCN2), whereas pro-inflammatory LPS-types containing the O-chain reduced I(hHCN2). On the other hand, a detoxified LPS without inflammatory activity, but containing the O-chain reduced I(hHCN2). Similar observations were made in HEK293 cells expressing hHCN4 and in murine SAN cells. This mechanistic analysis showed the novel finding that the O-chain of LPS is required for reduction of HCN channel activity. In the clinical situation the observed modulation of HCN channels may slow down diastolic depolarization of pacemaker cells and, hence, influence heart rate variability and heart rate.
最近有研究表明,脂多糖(LPS)可损害人心房肌细胞的起搏电流。有人推测,严重脓毒症患者的心率变异性(HRV)降低,部分原因可能是这种损害。我们评估了各种类型 LPS 对表达于 HEK293 细胞中人超极化激活环核苷酸门控通道 2(hHCN2)以及对天然鼠窦房结(SAN)起搏通道活性的影响,以确定调节起搏通道功能所需的 LPS 结构。LPS 的应用导致 hHCN2 介导的电流(I(hHCN2))的强烈抑制,这是由于电流激活的电压依赖性的负偏移和最大电导的降低所致。此外,通道门控动力学也被 LPS 调制。缺乏 O-链的促炎性 LPS 类型不减少 I(hHCN2),而含有 O-链的促炎性 LPS 类型减少 I(hHCN2)。另一方面,一种无炎症活性但含有 O-链的解毒 LPS 也减少 I(hHCN2)。在表达 hHCN4 的 HEK293 细胞和鼠 SAN 细胞中也观察到了类似的观察结果。这种机制分析显示了一个新的发现,即 LPS 的 O-链是减少 HCN 通道活性所必需的。在临床情况下,观察到的 HCN 通道的调制可能会使起搏细胞的舒张去极化减慢,从而影响心率变异性和心率。