Kim E, Motoki M, Seguro K, Muhlrad A, Reisler E
Department of Chemistry and Biochemistry, UCLA 90095, USA.
Biophys J. 1995 Nov;69(5):2024-32. doi: 10.1016/S0006-3495(95)80072-X.
Gln-41 on G-actin was specifically labeled with a fluorescent probe, dansyl ethylenediamine (DED), via transglutaminase reaction to explore the conformational changes in subdomain 2 of actin. Replacement of Ca2+ with Mg2+ and ATP with ADP on G-actin produced large changes in the emission properties of DED. These substitutions resulted in blue shifts in the wavelength of maximum emission and increases in DED fluorescence. Excitation of labeled actin at 295 nm revealed energy transfer from tryptophans to DED. Structure considerations and Cu2+ quenching experiments suggested that Trp-79 and/or Trp-86 serves as energy donors to DED. Energy transfer from these residues to DED on Gln-41 increased with the replacement of Ca2+ with Mg2+ and ATP with ADP. Polymerization of Mg-G-actin with MgCl2 resulted in much smaller changes in DED fluorescence than divalent cation substitution. This suggests that the conformation of loop 38-52 on actin is primed for the polymerization reaction by the substitution of Ca2+ with Mg2+ on G-actin.
通过转谷氨酰胺酶反应,用荧光探针丹磺酰乙二胺(DED)对G-肌动蛋白上的Gln-41进行特异性标记,以探究肌动蛋白亚结构域2中的构象变化。用Mg2+替代G-肌动蛋白上的Ca2+,用ADP替代ATP,会使DED的发射特性发生很大变化。这些替代导致最大发射波长发生蓝移,并使DED荧光增强。在295nm处激发标记的肌动蛋白,显示出从色氨酸到DED的能量转移。结构考量和Cu2+猝灭实验表明,Trp-79和/或Trp-86作为向DED的能量供体。随着用Mg2+替代Ca2+以及用ADP替代ATP,这些残基向Gln-41上的DED的能量转移增加。用MgCl2使Mg-G-肌动蛋白聚合,导致DED荧光的变化比二价阳离子替代时小得多。这表明,通过用Mg2+替代G-肌动蛋白上的Ca2+,肌动蛋白上38-52环的构象为聚合反应做好了准备。