Pandey Shashank, Jarkovska Dagmar, Tuma Zdenek, Smrhova Tereza, Chottova Dvorakova Magdalena
Biomedical Center, Faculty of Medicine in Pilsen, Charles University, 32300 Pilsen, Czech Republic.
Department of Pharmacology and Toxicology, Faculty of Medicine in Pilsen, Charles University, 32300 Pilsen, Czech Republic.
Int J Mol Sci. 2022 Dec 2;23(23):15219. doi: 10.3390/ijms232315219.
Neuropeptide B (NPB) and neuropeptide W (NPW) are neuropeptides, which constitute NPB/W signaling systems together with G-protein coupled receptors NPBWR1. The location and function of NPB/W signaling systems have been predominantly detected and mapped within the CNS, including their role in the modulation of inflammatory pain, neuroendocrine functions, and autonomic nervous systems. The aim of the study is to investigate the impact of diabetes on the neuropeptide B/W signaling system in different heart compartments and neurons which innervates it. In the RT-qPCR analysis, we observed the upregulation of mRNA for preproNPB in RV, for preproNPW in LA, and for NPBWR1 in DRG in diabetic rats. On the contrary, the expression of mRNA for NPBWR1 was downregulated in LV in diabetic rats. In the WB analysis, significant downregulation of NPBWR1 in LV (0.54-fold, = 0.046) in diabetic rats was observed at the proteomic level. The presence of NPBWR1 was also confirmed in a dissected LCM section of cardiomyocytes and coronary arteries. The positive inotropic effect of NPW described on the diabetic cardiomyocytes in vitro could point to a possible therapeutic target for compensation of the contractile dysfunction in the diabetic heart. In conclusion, the NPB/W signaling system is involved in the regulation of heart functions and long-term diabetes leads to changes in the expression of individual members of this signaling system differently in each cardiac compartment, which is related to the different morphology and function of these cardiac chambers.
神经肽B(NPB)和神经肽W(NPW)是神经肽,它们与G蛋白偶联受体NPBWR1共同构成NPB/W信号系统。NPB/W信号系统的定位和功能主要在中枢神经系统中被检测和定位,包括它们在调节炎性疼痛、神经内分泌功能和自主神经系统中的作用。本研究的目的是探讨糖尿病对不同心脏腔室及其支配神经元中神经肽B/W信号系统的影响。在RT-qPCR分析中,我们观察到糖尿病大鼠右心室中前体NPB的mRNA上调,左心房中前体NPW的mRNA上调,背根神经节中NPBWR1的mRNA上调。相反,糖尿病大鼠左心室中NPBWR1的mRNA表达下调。在蛋白质免疫印迹分析中,在蛋白质组学水平上观察到糖尿病大鼠左心室中NPBWR1显著下调(0.54倍,P = 0.046)。在心肌细胞和冠状动脉的解剖激光捕获显微切割(LCM)切片中也证实了NPBWR1的存在。体外对糖尿病心肌细胞描述的NPW的正性肌力作用可能指向补偿糖尿病心脏收缩功能障碍的一个可能治疗靶点。总之,NPB/W信号系统参与心脏功能的调节,长期糖尿病导致该信号系统各成员在每个心脏腔室中的表达发生不同变化,这与这些心腔不同的形态和功能有关。