Physiologisches Institut, Universität Würzburg, Würzburg, Germany.
Physiologisches Institut, Universität Würzburg, Würzburg, Germany.
Nitric Oxide. 2018 Jul 1;77:12-18. doi: 10.1016/j.niox.2018.03.020. Epub 2018 Apr 4.
Nitric oxide-sensitive guanylyl cyclase (NO-GC) has been shown to regulate a plethora of different functions in the body. These include, among many others, the fine-tuning of vascular tone, platelet reactivity and gastrointestinal motility. Evidence for the participation of NO-GC in these functions has been obtained from various species including humans, rodents, as well as insects. Clearly, individual cell types that express NO-GC contribute differentially to organ-specific NO/cGMP signaling in the body. Hence, identification of NO-GC-expressing cells and their individual involvement in NO/cGMP signaling constituted the focus of many studies over the last 40 years. Probably most information has been obtained from vascular smooth muscle cells and platelets, in which NO-GC is known to induce relaxation and inhibition of aggregation, respectively. Many other cell types that express the enzyme have been linked to certain functions, e.g. cardiomyocyte/inotropy or gastrointestinal smooth muscle cells/motility. However, in some cell types, e.g. myofibroblasts or pericytes, NO-GC expression is evident but individual functions of NO/cGMP signaling have yet to be assigned, whereas in other cell types, e.g. in erythrocytes, expression and role of NO-GC is still a matter of debate. This review discusses the current knowledge on 'less popular' cell types that express NO-GC (pericytes, myofibroblasts, cardiomyocytes, adipocytes, interstitial cells of Cajal, fibroblast-like cells and blood cells) and outlines possible further functions in cell types that have not gained strong attention so far.
一氧化氮敏感的鸟苷酸环化酶 (NO-GC) 已被证明可调节体内多种不同的功能。这些功能包括调节血管张力、血小板反应性和胃肠道蠕动等。NO-GC 参与这些功能的证据来自包括人类、啮齿动物和昆虫在内的各种物种。显然,表达 NO-GC 的个别细胞类型对体内特定的 NO/cGMP 信号有不同的贡献。因此,鉴定表达 NO-GC 的细胞及其在 NO/cGMP 信号中的个体参与一直是过去 40 年来许多研究的重点。可能大多数信息来自血管平滑肌细胞和血小板,已知 NO-GC 分别诱导这些细胞的松弛和抑制聚集。许多其他表达该酶的细胞类型与某些功能有关,例如心肌细胞/变力性或胃肠道平滑肌细胞/运动性。然而,在某些细胞类型中,例如肌成纤维细胞或周细胞,NO-GC 的表达是明显的,但尚未确定 NO/cGMP 信号的个体功能,而在其他细胞类型中,例如红细胞中,NO-GC 的表达和作用仍存在争议。本综述讨论了表达 NO-GC 的“不太受欢迎”的细胞类型(周细胞、肌成纤维细胞、心肌细胞、脂肪细胞、Cajal 间质细胞、成纤维样细胞和血细胞)的最新知识,并概述了迄今为止尚未受到广泛关注的细胞类型中可能存在的进一步功能。