Garbers D L
J Biol Chem. 1976 Jul 10;251(13):4071-7.
The Lubrol-dispersed guanylate cyclase from sea urchin sperm was purified and isolated essentially free of detergent by GTP affinity chromatography, DEAE-Sephadex chromatography, and gel filtration. After removal of the detergent, the enzyme remained in solution in the presence of 20% glycerol. The specific activity of the purified enzyme was about 12 mumol of guanosine 3':5'-monophosphate (cyclic GMP) formed - min-1 - mg of protein-1 at 30 degrees, an activity about 4600 times that of a soluble guanylate cyclase purified recently from Escherichia coli (Macchia V., Varrone, S., Weissbach, H., Miller, D.L., and Pastan, I. (1975) J. Biol. Chem. 250, 6214-6217). The cyclic GMP phosphodiesterase activity was negligible and adenosine 3':5'-monophosphate (cyclic AMP) phosphodiesterase was not detectable in the purified preparation. Cyclic AMP formation from ATP occurred at a rate of 0.002% of that of guanylate cyclase. In the absence of phosphodiesterase or guanosine triphosphatase inhibitors, 100% of the added GTP was converted to cyclic GMP. The purified enzyme required Mn2+ for maximum activity, the relative rates in the presence of Mg2+ or Ca2+ being less than 0.6% of the rates with Mn2+. The purified enzyme displayed classical Michaelis-Menten kinetics with respect to MnGTP (apparent Km is approximately equal to 170 muM) in contrast to the positively cooperative kinetic behavior displayed by the unpurified, detergent-dispersed, or particulate guanylate cyclase. The molecular weight of the purified enzyme was approximately 182,000 as estimated on Bio-Gel A-0.5m columns equilibrated in the presence or absence of 0.1 M NaCl. The unpurified, detergent-dispersed enzyme also migrated with an apparent molecular weight of 182,000 on columns equilibrated with 0.5% Lubrol WX and 0.1 M NaCl, but it migrated as a large aggregate (molecular weight is greater than 5 X 10(5)) on columns equilibrated in the absence of either the detergent of NaCl. After gel filtration, the unpurified, dispersed enzyme still yielded positive cooperative kinetic patterns as a function of MnGTP. Na dodecyl-SO4 gel electrophoresis of the enzyme after the DEAE-Sephadex or the gel filtration steps resulted in two major protein bands with estimated molecular weights of 118,000 and 75,000. Whether or not these protein bands represent the subunit molecular weights of guanylate cyclase is unknown at present.
通过GTP亲和层析、DEAE-葡聚糖凝胶层析和凝胶过滤,对来自海胆精子的Lubrol分散型鸟苷酸环化酶进行了纯化和分离,所得酶基本不含去污剂。去除去污剂后,该酶在20%甘油存在下仍保持溶解状态。纯化酶的比活性在30℃时约为每分钟形成12微摩尔鸟苷3':5'-单磷酸(环鸟苷酸)-每毫克蛋白质,该活性约为最近从大肠杆菌中纯化得到的可溶性鸟苷酸环化酶活性的4600倍(Macchia V.、Varrone S.、Weissbach H.、Miller D.L.和Pastan I.(1975年)《生物化学杂志》250卷,6214 - 6217页)。纯化制剂中的环鸟苷酸磷酸二酯酶活性可忽略不计,腺苷3':5'-单磷酸(环腺苷酸)磷酸二酯酶无法检测到。由ATP形成环腺苷酸的速率为鸟苷酸环化酶速率的0.002%。在不存在磷酸二酯酶或鸟苷三磷酸酶抑制剂的情况下,添加的GTP有100%转化为环鸟苷酸。纯化酶需要Mn2+才能达到最大活性,在Mg2+或Ca2+存在下的相对速率不到Mn2+存在时速率的0.6%。与未纯化的、去污剂分散型或颗粒状鸟苷酸环化酶所表现出的正协同动力学行为相反,纯化酶对MnGTP表现出典型的米氏动力学(表观Km约等于170μM)。在存在或不存在0.1M NaCl的情况下平衡的Bio-Gel A - 0.5m柱上估计,纯化酶的分子量约为182,000。未纯化的、去污剂分散型酶在用0.5% Lubrol WX和0.1M NaCl平衡的柱上也以表观分子量182,000迁移,但在不存在去污剂或NaCl平衡的柱上它以大聚集体形式迁移(分子量大于5×10(5))。凝胶过滤后,未纯化的分散型酶作为MnGTP的函数仍产生正协同动力学模式。在DEAE-葡聚糖凝胶或凝胶过滤步骤后对该酶进行十二烷基硫酸钠凝胶电泳,产生两条主要蛋白带,估计分子量分别为118,000和75,000。目前尚不清楚这些蛋白带是否代表鸟苷酸环化酶的亚基分子量。