University of California-Davis, Davis, California, USA.
Biophys J. 2011 Oct 19;101(8):1968-77. doi: 10.1016/j.bpj.2011.08.030.
Cardiac myosin-binding protein-C (cMyBP-C) is a thick-filament-associated protein that performs regulatory and structural roles within cardiac sarcomeres. It is a member of the immunoglobulin (Ig) superfamily of proteins consisting of eight Ig- and three fibronectin (FNIII)-like domains, along with a unique regulatory sequence referred to as the M-domain, whose structure is unknown. Domains near the C-terminus of cMyBP-C bind tightly to myosin and mediate the association of cMyBP-C with thick (myosin-containing) filaments, whereas N-terminal domains, including the regulatory M-domain, bind reversibly to myosin S2 and/or actin. The ability of MyBP-C to bind to both myosin and actin raises the possibility that cMyBP-C cross-links myosin molecules within the thick filament and/or cross-links myosin and thin (actin-containing) filaments together. In either scenario, cMyBP-C could be under mechanical strain. However, the physical properties of cMyBP-C and its behavior under load are completely unknown. Here, we investigated the mechanical properties of recombinant baculovirus-expressed cMyBP-C using atomic force microscopy to assess the stability of individual cMyBP-C molecules in response to stretch. Force-extension curves showed the presence of long extensible segment(s) that became stretched before the unfolding of individual Ig and FNIII domains, which were evident as sawtooth peaks in force spectra. The forces required to unfold the Ig/FNIII domains at a stretch rate of 500 nm/s increased monotonically from ∼30 to ∼150 pN, suggesting a mechanical hierarchy among the different Ig/FNIII domains. Additional experiments using smaller recombinant proteins showed that the regulatory M-domain lacks significant secondary or tertiary structure and is likely an intrinsically disordered region of cMyBP-C. Together, these data indicate that cMyBP-C exhibits complex mechanical behavior under load and contains multiple domains with distinct mechanical properties.
心肌球蛋白结合蛋白 C(cMyBP-C)是一种与厚肌丝相关的蛋白,在心肌肌节中发挥调节和结构作用。它是免疫球蛋白(Ig)超家族的成员,由八个 Ig 和三个纤维连接蛋白(FNIII)样结构域以及一个独特的调节序列组成,称为 M 结构域,其结构尚不清楚。cMyBP-C 的 C 端附近结构域与肌球蛋白紧密结合,并介导 cMyBP-C 与厚(肌球蛋白包含)丝的结合,而 N 端结构域,包括调节 M 结构域,可逆地与肌球蛋白 S2 和/或肌动蛋白结合。MyBP-C 结合肌球蛋白和肌动蛋白的能力表明,cMyBP-C 可能在厚丝内交联肌球蛋白分子,或者将肌球蛋白和薄(肌动蛋白包含)丝交联在一起。在这两种情况下,cMyBP-C 都可能受到机械应变的影响。然而,cMyBP-C 的物理性质及其在负载下的行为完全未知。在这里,我们使用原子力显微镜研究了重组杆状病毒表达的 cMyBP-C 的机械性质,以评估单个 cMyBP-C 分子在拉伸下的稳定性。力-延伸曲线显示存在长的可伸展段,这些段在单个 Ig 和 FNIII 结构域展开之前就被拉伸,这在力谱中表现为锯齿形峰。以 500nm/s 的拉伸速率展开 Ig/FNIII 结构域所需的力单调增加,从约 30 到约 150pN,这表明不同 Ig/FNIII 结构域之间存在机械层次结构。使用较小的重组蛋白进行的额外实验表明,调节 M 结构域缺乏明显的二级或三级结构,并且可能是 cMyBP-C 的无规卷曲区域。总之,这些数据表明,cMyBP-C 在负载下表现出复杂的力学行为,并且包含具有不同力学性质的多个结构域。