Yadavalli Vamsi K, Forbes Jeffrey G, Wang Kuan
Muscle Proteomics and Nanotechnology Section, Laboratory of Muscle Biology, National Institute of Arthritis and Musculoskeletal and Skin Diseases, National Institutes of Health, Bethesda, Maryland 20892, USA.
Langmuir. 2009 Jul 7;25(13):7496-505. doi: 10.1021/la9009898.
Nebulin, a family of giant modular proteins (MW 700-800 kDa), acts as a F-actin thin filament ruler and calcium-linked regulator of actomyosin interaction. The nanomechanics of full length, native rabbit nebulin was investigated with an atomic force microscope by tethering, bracketing, and stretching full-length molecules via pairs of site-specific antibodies that were attached covalently, one to a protein resistant self-assembled monolayer of oligoethylene glycol and the other to the cantilever. Using this new nanomechanics platform that enables the identification of single molecule events via an unbiased analysis of detachment force and distance of all force curves, we showed that nebulin is elastic and extends to approximately 1 microm by external force up to an antibody detachment force of approximately 300-400 pN. Upon stretching, nebulin unravels and yields force spectra with craggy mountain range profiles with variable numbers and heights of force peaks. The peak spacings, analyzed by the model-independent, empirical Hilbert-Huang transform method, displayed underlying periodicities at approximately 15 and approximately 22 nm that may result from the unfolding of one or more nebulin modules between force peaks. Nebulin may act as an elastic strain gauge that interacts optimally with actin only under appropriate strain and stress. This stretch to match protein ruler may also exert a compressive force that stabilizes thin filaments against stress during contraction. We propose that the elasticity of nebulin is integral and essential in the muscle sarcomere.
伴肌动蛋白是一类巨大的模块化蛋白质家族(分子量700 - 800 kDa),作为F - 肌动蛋白细肌丝的标尺以及肌动球蛋白相互作用的钙连接调节剂发挥作用。通过原子力显微镜,利用共价连接在寡聚乙二醇的抗蛋白质自组装单层膜上的一对位点特异性抗体,以及连接在悬臂上的另一对抗体,将全长天然兔伴肌动蛋白进行系留、括位和拉伸,从而对其纳米力学特性进行了研究。使用这个新的纳米力学平台,通过对所有力曲线的分离力和距离进行无偏差分析来识别单分子事件,我们发现伴肌动蛋白具有弹性,在外力作用下可延伸至约1微米,直至抗体分离力达到约300 - 400皮牛。拉伸时,伴肌动蛋白会解开,并产生具有崎岖山脉轮廓、力峰数量和高度各异的力谱。通过与模型无关的经验希尔伯特 - 黄变换方法分析,峰间距显示出约15纳米和约22纳米的潜在周期性,这可能是由于力峰之间一个或多个伴肌动蛋白模块展开所致。伴肌动蛋白可能作为一种弹性应变仪,仅在适当的应变和应力条件下与肌动蛋白实现最佳相互作用。这种拉伸匹配蛋白质标尺还可能施加压缩力,在收缩过程中稳定细肌丝以抵抗应力。我们提出,伴肌动蛋白的弹性在肌肉肌节中是不可或缺且至关重要的。