Grozdanovic Z, Gossrau R
Department of Anatomy, Free University of Berlin, Germany.
Acta Histochem. 1996 Apr;98(2):203-14. doi: 10.1016/S0065-1281(96)80040-7.
Microsomal heme oxygenase (HO) is a cytochrome P-450-assisted oxidoreductase, which catalyzes the NADPH-dependent decomposition of heme to carbon monoxide (CO), biliverdin, and iron. Recent evidence suggests that CO, similar to nitric oxide (NO), may serve as gaseous biological signalling molecule, which acts by stimulating soluble guanylate cyclase in target cells. In the present investigation, we report the HO-like immunoreactivity (LIR) pattern of the constitutive HO isozyme, HO-2, and compare the results with recently published data on constitutive NO-producing nitric oxide synthase (NOS) in rat tissues. HO-2-LIR was most consistently observed in connective tissue elements (fibrocytes/-blasts and fibroblast-like cells, such as interstitial cells in the bowel), blood vessel wall constituents (arterial and venous endothelial cells, vascular smooth muscle cells), visceral smooth muscle cells (airway musculature, myometrium, muscularis mucosae of the small intestine), mesothelial cells of serous membranes and in select epithelial cell populations. HO-2-LIR was absent from the striated (skeletal and cardiac) musculature. HO-2 had a more widespread distribution and its expression largely differs from that of NOS. HO-2-LIR and NOS appear to be co-expressed in vascular endothelial cells and in selected nerve cell populations of certain parasympathetic and probably sensory ganglia. Our data suggest potential CO and NO systems as interrelated regulatory pathways in the local paracrine and autocrine control of diverse functional systems.
微粒体血红素加氧酶(HO)是一种细胞色素P-450辅助氧化还原酶,它催化NADPH依赖性的血红素分解为一氧化碳(CO)、胆绿素和铁。最近的证据表明,CO与一氧化氮(NO)类似,可能作为气态生物信号分子,通过刺激靶细胞中的可溶性鸟苷酸环化酶发挥作用。在本研究中,我们报告了组成型HO同工酶HO-2的HO样免疫反应性(LIR)模式,并将结果与最近发表的关于大鼠组织中组成型一氧化氮合酶(NOS)产生NO的数据进行比较。在结缔组织成分(纤维细胞/成纤维细胞和成纤维样细胞,如肠中的间质细胞)、血管壁成分(动脉和静脉内皮细胞、血管平滑肌细胞)、内脏平滑肌细胞(气道肌肉组织、子宫肌层、小肠黏膜肌层)、浆膜间皮细胞和某些上皮细胞群体中最一致地观察到HO-2-LIR。横纹肌(骨骼肌和心肌)组织中不存在HO-2-LIR。HO-2分布更广泛,其表达与NOS有很大不同。HO-2-LIR和NOS似乎在血管内皮细胞以及某些副交感神经和可能的感觉神经节的特定神经细胞群体中共表达。我们的数据表明,潜在的CO和NO系统是不同功能系统局部旁分泌和自分泌控制中的相互关联的调节途径。