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绵羊尿路中一氧化氮合酶活性的特征:功能意义

Characterization of nitric oxide synthase activity in sheep urinary tract: functional implications.

作者信息

García-Pascual A, Costa G, Labadia A, Persson K, Triguero D

机构信息

Department of Physiology, Faculty of Veterinary Sciences, Complutense University, Madrid, Spain.

出版信息

Br J Pharmacol. 1996 Jun;118(4):905-14. doi: 10.1111/j.1476-5381.1996.tb15485.x.

Abstract
  1. To define further the role of nitric oxide (NO) in urinary tract function, we have measured the presence of nitric oxide synthase (NOS) activity, and its relationship with functional NO-mediated responses to electrical field stimulation (EFS) in the urethra, the detrusor and the ureter from sheep. NOS activity was assayed by the conversion of L-[14C]-arginine to L-[14C]-citrulline. Endogenous production of citrulline was confirmed by thin layer chromatography. 2. NOS enzymatic activity was detected in the cytosolic fraction from tissue homogenates with the following regional distribution (pmol citrulline mg-1 protein min-1): urethra (33 +/- 3.3), detrusor (13.1 +/- 1.1) and ureter (1.5 +/- 0.2). No activity was detected in the particulate fraction of any region. 3. NOS activity was dependent on Ca(2+)-calmodulin and required exogenously added NADPH and tetrahydrobyoptein (BH4) for maximal activity. Exclusion of calmodulin from the incubation mixture did not modify NOS activity, but it was significantly reduced in the presence of the calmodulin antagonist, calmidazolium, suggesting the presence of enough endogenous calmodulin to sustain the observed NOS activity. 4. NOS activity was inhibited to a greater extent by NG-nitro-L-arginine (L-NOARG) and its methyl ester (L-NAME) than by NG-monomethyl-L-arginine (L-NMMA), while 7-nitroindazole (7-NI) was a weak inhibitor and L-cannavine had no effect. 5. Citrulline formation could be inhibited by superoxide dismutase in an oxyhaemoglobin-sensitive manner, suggesting feedback inhibition of NOS by NO. 6. EFS induced prominent NO-mediated relaxations in the urethra while minor or no responses were observed in the detrusor and the ureter, respectively. Urethral relaxations to EFS were inhibited by NOS inhibitors with the rank order of potency: L-NOARG = L-NAME > 7-NI > L-NMMA. 7. In conclusion, we have demonstrated the presence of NO-synthesizing enzymatic activity in the sheep urinary tract which shows similar characteristics to the constitutive NOS isoform found in brain. We suggest that the enzymatic activity measured in the urethral muscle layer may account for the NO-mediated urethral relaxation during micturition whereas regulation of detrusor and ureteral motor function by NOS containing nerves is less likely.
摘要
  1. 为进一步明确一氧化氮(NO)在尿路功能中的作用,我们测定了一氧化氮合酶(NOS)活性的存在情况,及其与绵羊尿道、逼尿肌和输尿管中电场刺激(EFS)引起的功能性NO介导反应之间的关系。通过将L-[14C]-精氨酸转化为L-[14C]-瓜氨酸来测定NOS活性。瓜氨酸的内源性生成通过薄层色谱法得到证实。2. 在组织匀浆的胞质部分检测到NOS酶活性,其区域分布如下(pmol瓜氨酸mg-1蛋白min-1):尿道(33±3.3)、逼尿肌(13.1±1.1)和输尿管(1.5±0.2)。在任何区域的微粒部分均未检测到活性。3. NOS活性依赖于Ca(2+)-钙调蛋白,且需要外源添加NADPH和四氢生物蝶呤(BH4)以达到最大活性。从孵育混合物中排除钙调蛋白不会改变NOS活性,但在钙调蛋白拮抗剂氯咪唑的存在下其活性显著降低,这表明存在足够的内源性钙调蛋白来维持观察到的NOS活性。4. 与NG-单甲基-L-精氨酸(L-NMMA)相比,NG-硝基-L-精氨酸(L-NOARG)及其甲酯(L-NAME)对NOS活性的抑制作用更强,而7-硝基吲唑(7-NI)是一种弱抑制剂,L-刀豆氨酸无作用。5. 超氧化物歧化酶可通过对氧合血红蛋白敏感的方式抑制瓜氨酸的形成,提示NO对NOS存在反馈抑制。6. EFS在尿道中诱导出显著的NO介导的舒张,而在逼尿肌和输尿管中分别观察到轻微或无反应。尿道对EFS的舒张作用被NOS抑制剂抑制,其效力顺序为:L-NOARG = L-NAME > 7-NI > L-NMMA。7. 总之,我们已证实在绵羊尿路中存在NO合成酶活性,其表现出与在脑中发现的组成型NOS同工型相似的特征。我们认为,在尿道肌层中测得的酶活性可能解释了排尿期间NO介导的尿道舒张,而含NOS的神经对逼尿肌和输尿管运动功能的调节可能性较小。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea61/1909510/36991de9eb56/brjpharm00083-0088-a.jpg

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