Mead Andrew F, Wood Neil B, Nelson Shane R, Palmer Bradley M, Yang Lin, Previs Samantha Beck, Ploysangngam Angela, Kennedy Guy G, McAdow Jennifer F, Tremble Sarah M, Cipolla Marilyn J, Ebert Alicia M, Johnson Aaron N, Gurnett Christina A, Previs Michael J, Warshaw David M
Department of Molecular Physiology and Biophysics, Larner College of Medicine, University of Vermont, Burlington, VT 05405.
Cardiovascular Research Institute, University of Vermont, Burlington, VT 05405.
bioRxiv. 2024 May 13:2024.05.10.593199. doi: 10.1101/2024.05.10.593199.
Myosin-binding protein H (MyBP-H) is a component of the vertebrate skeletal muscle sarcomere with sequence and domain homology to myosin-binding protein C (MyBP-C). Whereas skeletal muscle isoforms of MyBP-C (fMyBP-C, sMyBP-C) modulate muscle contractility via interactions with actin thin filaments and myosin motors within the muscle sarcomere "C-zone," MyBP-H has no known function. This is in part due to MyBP-H having limited expression in adult fast-twitch muscle and no known involvement in muscle disease. Quantitative proteomics reported here reveal MyBP-H is highly expressed in prenatal rat fast-twitch muscles and larval zebrafish, suggesting a conserved role in muscle development, and promoting studies to define its function. We take advantage of the genetic control of the zebrafish model and a combination of structural, functional, and biophysical techniques to interrogate the role of MyBP-H. Transgenic, FLAG-tagged MyBP-H or fMyBP-C both localize to the C-zones in larval myofibers, whereas genetic depletion of endogenous MyBP-H or fMyBP-C leads to increased accumulation of the other, suggesting competition for C-zone binding sites. Does MyBP-H modulate contractility from the C-zone? Globular domains critical to MyBP-C's modulatory functions are absent from MyBP-H, suggesting MyBP-H may be functionally silent. However, our results suggest an active role. Small angle x-ray diffraction of intact larval tails revealed MyBP-H contributes to the compression of the myofilament lattice accompanying stretch or contraction, while motility experiments indicate MyBP-H shares MyBP-C's capacity as a molecular "brake". These results provide new insights and raise questions about the role of the C-zone during muscle development.
肌球蛋白结合蛋白H(MyBP-H)是脊椎动物骨骼肌肌节的一个组成部分,其序列和结构域与肌球蛋白结合蛋白C(MyBP-C)具有同源性。虽然MyBP-C的骨骼肌异构体(fMyBP-C、sMyBP-C)通过与肌节“C区”内的肌动蛋白细肌丝和肌球蛋白马达相互作用来调节肌肉收缩力,但MyBP-H的功能尚不清楚。部分原因是MyBP-H在成年快肌中的表达有限,且与肌肉疾病无关。本文报道的定量蛋白质组学研究表明,MyBP-H在产前大鼠快肌和斑马鱼幼体中高度表达,提示其在肌肉发育中具有保守作用,并推动了对其功能的研究。我们利用斑马鱼模型的遗传控制以及结构、功能和生物物理技术的组合来探究MyBP-H的作用。转基因的、带有FLAG标签的MyBP-H或fMyBP-C都定位于幼体肌纤维的C区,而内源性MyBP-H或fMyBP-C的基因缺失会导致另一种蛋白的积累增加,这表明它们在竞争C区结合位点。MyBP-H是否从C区调节收缩力?MyBP-H缺乏对MyBP-C调节功能至关重要的球状结构域这表明MyBP-H可能在功能上是沉默的。然而,我们的结果表明它具有积极作用。完整幼体尾巴的小角X射线衍射显示,MyBP-H有助于在拉伸或收缩时压缩肌丝晶格,而运动实验表明MyBP-H具有与MyBP-C相同的作为分子“制动器”的能力。这些结果为肌肉发育过程中C区的作用提供了新的见解,并提出了问题。