MultiBac System-based Purification and Biophysical Characterization of Human Myosin-7a.

IF 1.2 4区 综合性期刊 Q3 MULTIDISCIPLINARY SCIENCES Jove-Journal of Visualized Experiments Pub Date : 2024-08-23 DOI:10.3791/67135
Marvin Wright, Shayna Redford, Jacob Vehar, Kevin C Courtney, Neil Billington, Rong Liu
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Abstract

Myosin-7a is an actin-based motor protein vital for auditory and visual processes. Mutations in myosin-7a lead to Usher syndrome type 1, the most common and severe form of deaf-blindness in humans. It is hypothesized that myosin-7a forms a transmembrane adhesion complex with other Usher proteins, essential for the structural-functional integrity of photoreceptor and cochlear hair cells. However, due to the challenges in obtaining pure, intact protein, the exact functional mechanisms of human myosin-7a remain elusive, with limited structural and biomechanical studies available. Recent studies have shown that mammalian myosin-7a is a multimeric motor complex consisting of a heavy chain and three types of light chains: regulatory light chain (RLC), calmodulin, and calmodulin-like protein 4 (CALML4). Unlike calmodulin, CALML4 does not bind to calcium ions. Both the calcium-sensitive, and insensitive calmodulins are critical for mammalian myosin-7a for proper fine-tuning of its mechanical properties. Here, we describe a detailed method to produce recombinant human myosin-7a holoenzyme using the MultiBac Baculovirus protein expression system. This yields milligram quantities of high-purity full-length protein, allowing for its biochemical and biophysical characterization. We further present a protocol for assessing its mechanical and motile properties using tailored in vitro motility assays and fluorescence microscopy. The availability of the intact human myosin-7a protein, along with the detailed functional characterization protocol described here, paves the way for further investigations into the molecular aspects of myosin-7a in vision and hearing.

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基于 MultiBac 系统的人类肌球蛋白-7a 的纯化和生物物理特性分析。
肌球蛋白-7a是一种基于肌动蛋白的运动蛋白,对听觉和视觉过程至关重要。肌球蛋白-7a发生突变会导致1型乌谢尔综合征,这是人类最常见和最严重的聋盲。据推测,肌球蛋白-7a 与其他乌谢尔蛋白形成跨膜粘附复合物,对感光细胞和耳蜗毛细胞的结构和功能完整性至关重要。然而,由于难以获得纯净、完整的蛋白质,人类肌球蛋白-7a 的确切功能机制仍然难以捉摸,现有的结构和生物力学研究也很有限。最近的研究表明,哺乳动物肌球蛋白-7a 是一种多聚体马达复合体,由一条重链和三种轻链组成:调节轻链(RLC)、钙调素和钙调素样蛋白 4(CALML4)。与钙调素不同,CALML4 不与钙离子结合。对钙离子敏感的钙调素和不敏感的钙调素对哺乳动物肌球蛋白-7a 的机械特性进行适当的微调至关重要。在这里,我们描述了一种利用 MultiBac Baculovirus 蛋白表达系统生产重组人肌球蛋白-7a 全酶的详细方法。这种方法可获得毫克量的高纯度全长蛋白,从而可对其进行生物化学和生物物理表征。我们进一步介绍了一种利用定制的体外运动试验和荧光显微镜评估其机械和运动特性的方案。完整的人类肌球蛋白-7a 蛋白的出现以及本文所描述的详细功能表征方案,为进一步研究肌球蛋白-7a 在视觉和听觉中的分子作用铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Jove-Journal of Visualized Experiments
Jove-Journal of Visualized Experiments MULTIDISCIPLINARY SCIENCES-
CiteScore
2.10
自引率
0.00%
发文量
992
期刊介绍: JoVE, the Journal of Visualized Experiments, is the world''s first peer reviewed scientific video journal. Established in 2006, JoVE is devoted to publishing scientific research in a visual format to help researchers overcome two of the biggest challenges facing the scientific research community today; poor reproducibility and the time and labor intensive nature of learning new experimental techniques.
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