Hunzicker-Dunn M, Cutler R E, Maizels E T, DeManno D A, Lamm M L, Erlichman J, Sanwal B D, LaBarbera A R
Department of Cell, Molecular and Structural Biology, Northwestern University Medical School, Chicago, Illinois 60611.
J Biol Chem. 1991 Apr 15;266(11):7166-75.
Regulatory (R) subunits and their association with catalytic subunits to form cAMP-dependent protein kinase holoenzymes were investigated in corpora lutea of pregnant rats. Following separation by DEAE-cellulose chromatography, R subunits were identified by labeling with 8-N3[32P]cAMP and autophosphorylation on one and two-dimensional gel electrophoresis and by reactivity with antisera. DEAE-cellulose elution of R subunits with catalytic subunits as holoenzymes or without catalytic subunits was determined by sedimentation characteristics on sucrose density gradient centrifugation and by cAMP-stimulated kinase activation characteristics on Eadie-Scatchard analysis. We identified the presence of a type I holoenzyme containing RI alpha (Mr 47,000) subunits, a prominent type II holoenzyme containing RII beta (Mr 52,000) subunits, and a second more acidic type II holoenzyme peak containing both RII beta and RII alpha (Mr 54,000) subunits. However, the majority of total R subunit activity was associated with a catalytic subunit-free peak of RI alpha protein which on elution from DEAE-cellulose was associated with cAMP. This report establishes the more basic elution position from DEAE-cellulose of the prominent rat luteal RII beta holoenzyme in very close proximity to free RI alpha and presents one of the few reports of a normal tissue containing a large percentage of catalytic subunit-free RI alpha.
在妊娠大鼠的黄体中研究了调节(R)亚基及其与催化亚基结合形成环磷酸腺苷(cAMP)依赖性蛋白激酶全酶的情况。通过DEAE-纤维素色谱分离后,R亚基通过用8-N3[32P]cAMP标记、在一维和二维凝胶电泳上的自身磷酸化以及与抗血清的反应性来鉴定。通过蔗糖密度梯度离心的沉降特性以及Eadie-Scatchard分析中cAMP刺激的激酶激活特性,确定了R亚基与作为全酶的催化亚基或无催化亚基一起从DEAE-纤维素上洗脱的情况。我们鉴定出存在一种含有RIα(分子量47,000)亚基的I型全酶、一种含有RIIβ(分子量52,000)亚基的主要II型全酶以及另一个含有RIIβ和RIIα(分子量54,000)亚基的酸性更强的II型全酶峰。然而,总R亚基活性的大部分与RIα蛋白的无催化亚基峰相关,该峰从DEAE-纤维素上洗脱时与cAMP相关。本报告确定了大鼠黄体中主要的RIIβ全酶从DEAE-纤维素上洗脱的位置更偏碱性,与游离的RIα非常接近,并且是少数关于正常组织中含有大量无催化亚基的RIα的报告之一。