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电压门控钾通道蛋白与立体选择性 S-亚硝基-L-半胱氨酸信号转导。

Voltage-gated potassium channel proteins and stereoselective S-nitroso-l-cysteine signaling.

机构信息

Riley Hospital for Children, Indianapolis, Indiana, USA.

Department of Pediatric Pulmonology.

出版信息

JCI Insight. 2020 Sep 17;5(18):134174. doi: 10.1172/jci.insight.134174.

Abstract

S-nitroso-l-cysteine (L-CSNO) behaves as a ligand. Its soluble guanylate cyclase-independent (sGC-independent) effects are stereoselective - that is, not recapitulated by S-nitroso-d-cysteine (D-CSNO) - and are inhibited by chemical congeners. However, candidate L-CSNO receptors have not been identified. Here, we have used 2 complementary affinity chromatography assays - followed by unbiased proteomic analysis - to identify voltage-gated K+ channel (Kv) proteins as binding partners for L-CSNO. Stereoselective L-CSNO-Kv interaction was confirmed structurally and functionally using surface plasmon resonance spectroscopy; hydrogen deuterium exchange; and, in Kv1.1/Kv1.2/Kvβ2-overexpressing cells, patch clamp assays. Remarkably, these sGC-independent L-CSNO effects did not involve S-nitrosylation of Kv proteins. In isolated rat and mouse respiratory control (petrosyl) ganglia, L-CSNO stereoselectively inhibited Kv channel function. Genetic ablation of Kv1.1 prevented this effect. In intact animals, L-CSNO injection at the level of the carotid body dramatically and stereoselectively increased minute ventilation while having no effect on blood pressure; this effect was inhibited by the L-CSNO congener S-methyl-l-cysteine. Kv proteins are physiologically relevant targets of endogenous L-CSNO. This may be a signaling pathway of broad relevance.

摘要

S-亚硝基-L-半胱氨酸(L-CSNO)作为配体发挥作用。其可溶性鸟苷酸环化酶非依赖性(sGC 非依赖性)作用具有立体选择性——即不能被 S-亚硝基-D-半胱氨酸(D-CSNO)再现——并且受化学同系物抑制。然而,尚未鉴定出候选 L-CSNO 受体。在这里,我们使用了 2 种互补的亲和层析测定法——随后进行了无偏蛋白质组学分析——鉴定出电压门控 K+通道(Kv)蛋白是 L-CSNO 的结合伴侣。立体选择性 L-CSNO-Kv 相互作用通过表面等离子体共振光谱学、氢氘交换和在过表达 Kv1.1/Kv1.2/Kvβ2 的细胞中的膜片钳测定得到结构和功能上的证实。值得注意的是,这些 sGC 非依赖性 L-CSNO 作用不涉及 Kv 蛋白的 S-亚硝化。在分离的大鼠和小鼠呼吸控制(petrosyl)神经节中,L-CSNO 立体选择性地抑制 Kv 通道功能。Kv1.1 的基因缺失可防止这种作用。在完整动物中,颈总动脉体水平注射 L-CSNO 可显著和立体选择性地增加分钟通气量,而对血压没有影响;这种作用被 L-CSNO 同系物 S-甲基-L-半胱氨酸抑制。Kv 蛋白是内源性 L-CSNO 的生理相关靶标。这可能是一种具有广泛相关性的信号通路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2623/7526540/5820efb67e6e/jciinsight-5-134174-g253.jpg

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