Cercek B, Wilson S R, Houslay M D
Biochem J. 1983 Jul 1;213(1):89-97. doi: 10.1042/bj2130089.
A microsomal fraction from rat liver was subfractionated into three rough endoplasmic reticulum fractions RIII, RII and RI, together with a smooth endoplasmic reticulum plus Golgi fraction. Cyclic nucleotide phosphodiesterase activity was found in all fractions. Subsequently it was shown that Golgi fractions were essentially devoid of cyclic AMP phosphodiesterase activity and the activity resided in the smooth endoplasmic reticulum fraction. The activity of the endoplasmic reticulum constituted some 20% of the homogenate activity, with the major fraction of this being associated with the RII fraction and the least with the RI fraction. With the exception of the activity of the RI fraction, which was a peripheral enzyme, all of the other enzyme activities were integral, requiring detergent or repeated freeze-thawing to effect solubilization. All of the activities appeared to be exposed at the external surface of the endoplasmic reticulum, as they were inactivated by trypsin under conditions where glucose 6-phosphatase was not. All of these activities displayed distinct sensitivities to both thermal and trypsin inactivation, yielding activity decays consistent with a single enzyme species being present in each case. The freeze-thaw-solubilized enzymes yielded single symmetrical peaks on sucrose-density-gradient centrifugation and polyacrylamide-gel electrophoresis. The sedimentation coefficients for the enzymes in the smooth-endoplasmic-reticulum-plus-Golgi, RIII, RII and RI fractions were 3.2S, 4.2S, 4.5S and 4.5S respectively. Whereas the activity in the smooth-endoplasmic-reticulum-plus-Golgi fraction exhibited normal Michaelis kinetics, those in the other fractions yielded kinetics indicative of apparent negative co-operativity. All of the enzymes exhibited low Km values towards cyclic AMP. The enzymes did not appear to be regulated by Ca2+ or calmodulin. ZnCl2 was found to be a potent non-competitive inhibitor of the enzyme in all fractions. NaF was a weak non-competitive inhibitor. The bilayer fluidizing agent benzyl alcohol exerted dissimilar effects on the enzyme activities. It is concluded that the endoplasmic reticulum displays lateral heterogeneity, with single, rather distinct, cyclic AMP phosphodiesterases being found in the different fractions.
大鼠肝脏的微粒体部分被亚分级为三个粗面内质网部分RIII、RII和RI,以及一个滑面内质网加高尔基体部分。在所有部分中都发现了环核苷酸磷酸二酯酶活性。随后发现高尔基体部分基本没有环磷酸腺苷磷酸二酯酶活性,该活性存在于滑面内质网部分。内质网的活性约占匀浆活性的20%,其中大部分与RII部分相关,与RI部分相关的最少。除了RI部分的活性是一种外周酶外,所有其他酶活性都是整合性的,需要去污剂或反复冻融才能实现溶解。所有活性似乎都暴露在内质网的外表面,因为在葡萄糖6 -磷酸酶未被胰蛋白酶灭活的条件下,它们会被胰蛋白酶灭活。所有这些活性对热和胰蛋白酶灭活都表现出明显的敏感性,在每种情况下活性衰减都与存在单一酶种类一致。冻融溶解的酶在蔗糖密度梯度离心和聚丙烯酰胺凝胶电泳上产生单一的对称峰。滑面内质网加高尔基体、RIII、RII和RI部分中酶的沉降系数分别为3.2S、4.2S、4.5S和4.5S。虽然滑面内质网加高尔基体部分的活性表现出正常的米氏动力学,但其他部分的活性产生的动力学表明存在明显负协同性。所有酶对环磷酸腺苷都表现出低Km值。这些酶似乎不受Ca2+或钙调蛋白调节。发现ZnCl2是所有部分中该酶的有效非竞争性抑制剂。NaF是一种弱非竞争性抑制剂。双层流化剂苄醇对酶活性产生不同的影响。结论是内质网表现出横向异质性,在不同部分发现了单一且相当不同的环磷酸腺苷磷酸二酯酶。