Chen Yaodong, Lehrer Sherwin S
Muscle and Motility Group, 64 Grove Street, Boston Biomedical Research Institute, Watertown, Massachusetts 02472, USA.
Biochemistry. 2004 Sep 14;43(36):11491-9. doi: 10.1021/bi049186v.
To obtain information about the interaction of tropomyosin (Tm) with actin associated with the regulatory states of the muscle thin filament, we used luminescence resonance energy transfer (LRET) between Tb(3+) as a donor and rhodamine as an acceptor. A novel Tb(3+) chelator, S-(2-nitro-5-thiobenzoate)cysteaminyl-DTPA-Cs124, was synthesized, which specifically labels Cys groups in proteins. With the Tb chelate as the donor and tetramethylrhodamine-5-maleimide as the acceptor, both bound to specific Cys groups of Tm, we obtained 67 A as the distance between Tm's across the actin filament, a much shorter value than that obtained from structural studies (72-86 A). The difference appears to be due to submillisecond motion associated with Tm flexibility, which brings the probes closer during the millisecond lifetime of the donor. Ca(2+) did not change the energy transfer with the reconstituted thin filament, but myosin subfragment 1 decreased the transfer, consistent with either a 5-6 A increase in distance or, more likely, a decrease in flexibility.
为了获取有关原肌球蛋白(Tm)与肌动蛋白相互作用的信息,这种相互作用与肌肉细肌丝的调节状态相关,我们利用了作为供体的铽(Tb(3+))和作为受体的罗丹明之间的荧光共振能量转移(LRET)。合成了一种新型的Tb(3+)螯合剂,即S-(2-硝基-5-硫代苯甲酸)半胱氨酰-DTPA-Cs124,它能特异性标记蛋白质中的半胱氨酸基团。以结合到Tm特定半胱氨酸基团上的铽螯合物作为供体,四甲基罗丹明-5-马来酰亚胺作为受体,我们得到肌动蛋白丝上Tm之间的距离为67埃,这一数值比从结构研究中得到的(72 - 86埃)要短得多。这种差异似乎是由于与Tm灵活性相关的亚毫秒级运动,在供体的毫秒级寿命期间使探针靠得更近。钙离子不会改变重组细肌丝的能量转移,但肌球蛋白亚片段1会降低能量转移,这与距离增加5 - 6埃或者更有可能是灵活性降低相一致。