Park Yoon Ho, Song Gang San, Jung Hyun Suk
Department of Biochemistry, College of Natural Sciences, Kangwon National University, Chuncheon, 24341, Republic of Korea.
Appl Microsc. 2024 Aug 28;54(1):6. doi: 10.1186/s42649-024-00099-8.
The sliding filament theory and the cross-bridge model have been fundamental in understanding muscle contraction. While the cross-bridge model explains the interaction between a single myosin head and actin filament, the native myosin molecule consists of two heads. This review explores the possibility and mechanism of two-headed binding in myosin II to the actin. Recent studies using electron tomography and resonance energy transfer have provided evidence in support of the occurrence of two-headed binding. The flexibility of the regulatory light chain (RLC) appears to play a significant role in enabling this binding mode. However, high-resolution structures of the RLCs in the two-headed bound state have not yet been reported. Resolving these structures, possibly through sub-tomogram averaging or single-particle analysis, would provide definitive proof of the conformational flexibility of RLCs and their role in facilitating two-headed binding. Further investigations are also required to address questions such as the predominance of two-headed versus single-headed binding and the influence of the state of each of the heads on the other. An understanding of the mechanism of two-headed binding is crucial for developing a comprehensive model of the cross-bridge cycle of the native myosin molecule.
滑动丝理论和横桥模型对于理解肌肉收缩至关重要。虽然横桥模型解释了单个肌球蛋白头部与肌动蛋白丝之间的相互作用,但天然的肌球蛋白分子由两个头部组成。本综述探讨了肌球蛋白II中两个头部与肌动蛋白结合的可能性和机制。最近使用电子断层扫描和共振能量转移的研究提供了支持双头结合发生的证据。调节轻链(RLC)的灵活性似乎在促成这种结合模式中起着重要作用。然而,尚未报道双头结合状态下RLC的高分辨率结构。通过亚断层平均或单颗粒分析等方法解析这些结构,将为RLC的构象灵活性及其在促进双头结合中的作用提供确凿证据。还需要进一步研究来解决诸如双头结合与单头结合的优势以及每个头部的状态对另一个头部的影响等问题。理解双头结合的机制对于建立天然肌球蛋白分子横桥循环的综合模型至关重要。