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来自心肌、骨骼肌、大脑皮层和肝脏的颗粒性、膜相关及可溶性鸟苷酸环化酶的特性

Properties of particulate, membrane-associated and soluble guanylate cyclase from cardiac muscle, skeletal muscle, cerebral cortex and liver.

作者信息

Sulakhe S J, Leung N L, Sulakhe P V

出版信息

Biochem J. 1976 Sep 1;157(3):713-9. doi: 10.1042/bj1570713.

Abstract
  1. Guanylate cyclase of washed particles and plasma membranes showed S-shaped progress curves when titrated with either GTP or Mn2+ ions; similar results were obtained with Triton X-100-solubilized enzyme preparation from washed particles. Hill plots of these data revealed multiple metal-nucleotide and free-metal binding sites. 2. Guanylate cyclase of supernatant fractions displayed typical Michaelis-Menten properties when enzyme required excess of (free) Mn2+ (over GTP) for maximal activities; Ka (free Mn2+) was about 0.15-0.25 mM at subsaturating concentrations of GTP. 4 MnATP, MnADP, and MnGDP were found to increase the activities of both particulate and superantant enzyme, when MnGTP concentration was below saturation and free Mn2+ ion concentration was low (less than 100 muM); MnATP (50muM-1 mM) inhibited both these activities at high free Mn2+ concentration (1.5 mM) and inhibition of the particulate enzyme was greater than that of supernatant enzyme. 5. Ca2+ ions stimulated supernatant-enzyme activity; the stimulatory concentration of Ca2+ ions depended on the concentration of Mn2+ and GTP. 6. A modest stimulation of particulate guanylate cyclase by pyrophosphate (0.02-1 mM) was observed; the pyrophosphate effect appeared to be competitive with respect to GTP. At a higher concentration (2 mM), pyrophosphate produced a marked inhibition of particulate enzyme; the nature of inhibitory effect appeared complex. 7. Inorganic salts (e.g. NaCl, KCl, LiBr, NaF) produced inhibition of particulate enzyme; the degree of inhibition of Triton X-100-stimulated activity was less than that of unstimulated activity. 9. Treatment of sarcolemmal or microsomal membranes with either phospholipase C or trypsin decreased, whereas phospholipase A increased, the activity of guanylate cyclase.
摘要
  1. 用GTP或Mn²⁺离子滴定洗涤颗粒和质膜的鸟苷酸环化酶时,呈现S形进程曲线;用从洗涤颗粒中用Triton X - 100增溶的酶制剂也得到了类似结果。这些数据的希尔图揭示了多个金属 - 核苷酸和游离金属结合位点。2. 当酶需要过量(游离)Mn²⁺(相对于GTP)以达到最大活性时,上清液组分的鸟苷酸环化酶表现出典型的米氏动力学特性;在GTP亚饱和浓度下,Ka(游离Mn²⁺)约为0.15 - 0.25 mM。4. 当MnGTP浓度低于饱和且游离Mn²⁺离子浓度较低(小于100 μM)时,发现4种MnATP、MnADP和MnGDP会增加颗粒酶和上清液酶的活性;在高游离Mn²⁺浓度(1.5 mM)时,MnATP(50 μM - 1 mM)会抑制这两种活性,并且对颗粒酶的抑制作用大于上清液酶。5. Ca²⁺离子刺激上清液酶活性;Ca²⁺离子的刺激浓度取决于Mn²⁺和GTP的浓度。6. 观察到焦磷酸(0.02 - 1 mM)对颗粒鸟苷酸环化酶有适度刺激;焦磷酸的作用似乎对GTP具有竞争性。在较高浓度(2 mM)时,焦磷酸对颗粒酶产生明显抑制;抑制作用的性质似乎很复杂。7. 无机盐(如NaCl、KCl、LiBr、NaF)对颗粒酶产生抑制作用;对Triton X - 100刺激活性 的抑制程度小于对未刺激活性的抑制程度。9. 用磷脂酶C或胰蛋白酶处理肌膜或微粒体膜会降低鸟苷酸环化酶的活性,而磷脂酶A则会增加其活性。

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Adenylate cyclase of heart sarcotubular membranes.心脏肌管膜的腺苷酸环化酶
Biochim Biophys Acta. 1973 Feb 15;293(2):379-96. doi: 10.1016/0005-2744(73)90346-x.

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