Drew J S, White M P, Moos C, Stein L A
Department of Medicine, SUNY, Stony Brook 11794-8661.
Cell Motil Cytoskeleton. 1992;23(3):213-21. doi: 10.1002/cm.970230305.
Previous reports have shown that papain-digested gizzard subfragment-1 (PAP-S1) has a cleaved regulatory light chain (LC20), and Vmax similar to phosphorylated heavy meromyosin (HMM) (Greene et al., Biochemistry 22:530-535, 1983; Sellers et al., J. Biol. Chem. 257:13880-13883, 1982; Umemoto et al., J. Biol. Chem. 264:1431-1436, 1989], while S. aureus protease-digested S-1 (SAP-S1) has intact LC20, but Vmax closer to that of unphosphorylated HMM [Ikebe and Hartshorne, 1985]. To determine whether intact LC20 inhibits ATPase activity for subfragment-1 (S1), we compared the kinetic properties and structures of unphosphorylated PAP-S1 and SAP-S1. SDS-PAGE showed that SAP-S1 had 68 and 24 KDa heavy chain and 20 and 17 KDa light chain components. PAP-S1 (15 minutes digestion at 20 degrees C) also had 68 and 17 KDa bands, but the single 24 KDa band (24HC) was replaced by a group of 22-24 KDa fragments and LC20 was cleaved to a 16 KDa fragment. At 13 mM ionic strength, both PAP-S1 and SAP-S1 had Vmax similar to phosphorylated HMM (1.1-1.5 s-1). SAP-S1 had the same KATPase as phosphorylated HMM (38 microM actin), but KATPase for PAP-S1 was 3-fold stronger (11 microM actin). Subsequent digestion of SAP-S1 with papain did not significantly change Vmax, but as LC20 and 24HC were cleaved, both KATPase and Kbinding strengthened 3- to 5-fold. Thus, intact LC20 did not inhibit, and cleavage of LC20 did not increase Vmax for S1. Rather, papain cleavage of LC20 and 24HC was associated with strengthened actin binding.
先前的报道表明,木瓜蛋白酶消化的肌胃亚片段-1(PAP-S1)具有切割后的调节轻链(LC20),其最大反应速度(Vmax)与磷酸化重酶解肌球蛋白(HMM)相似(格林等人,《生物化学》22:530 - 535,1983;塞勒斯等人,《生物化学杂志》257:13880 - 13883,1982;梅本等人,《生物化学杂志》264:1431 - 1436,1989),而金黄色葡萄球菌蛋白酶消化的S-1(SAP-S1)具有完整的LC20,但其Vmax更接近未磷酸化的HMM(池部和哈茨霍恩,1985)。为了确定完整的LC20是否会抑制亚片段-1(S1)的ATP酶活性,我们比较了未磷酸化的PAP-S1和SAP-S1的动力学性质和结构。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)显示,SAP-S1具有68 kDa和24 kDa的重链以及20 kDa和17 kDa的轻链成分。PAP-S1(20℃消化15分钟)也有68 kDa和17 kDa的条带,但单一的24 kDa条带(24HC)被一组22 - 24 kDa的片段取代,并且LC20被切割成一个16 kDa的片段。在13 mM的离子强度下,PAP-S1和SAP-S1的Vmax都与磷酸化的HMM相似(1.1 - 1.5 s-1)。SAP-S1与磷酸化的HMM具有相同的ATP酶底物亲和力常数(KATPase)(38 μM肌动蛋白),但PAP-S1的KATPase强3倍(11 μM肌动蛋白)。随后用木瓜蛋白酶对SAP-S1进行消化并没有显著改变Vmax,但随着LC20和24HC被切割,KATPase和肌动蛋白结合常数(Kbinding)都增强了3至5倍。因此,完整的LC20不会抑制,并且LC20的切割也不会增加S1的Vmax。相反,木瓜蛋白酶对LC20和24HC的切割与增强的肌动蛋白结合有关。