Department of Cell and Developmental Biology, State University of New York Upstate Medical University, Syracuse, NY 13210.
Department of Chemical Engineering, Texas Tech University, Lubbock, TX 79409.
Mol Biol Cell. 2024 Nov 1;35(11):ar137. doi: 10.1091/mbc.E24-04-0145. Epub 2024 Sep 11.
Formin HOmology Domain 2-containing (FHOD) proteins are a subfamily of actin-organizing formins important for striated muscle development in many animals. We showed previously that absence of the sole FHOD protein, FHOD-1, from results in thin body wall muscles with misshapen dense bodies that serve as sarcomere Z-lines. We demonstrate here that mutations predicted to specifically disrupt actin polymerization by FHOD-1 similarly disrupt muscle development, and that FHOD-1 cooperates with profilin PFN-3 for dense body morphogenesis, and with profilins PFN-2 and PFN-3 to promote body wall muscle growth. We further demonstrate that dense bodies in worms lacking FHOD-1 or PFN-2/PFN-3 are less stable than in wild-type animals, having a higher proportion of dynamic protein, and becoming distorted by prolonged muscle contraction. We also observe accumulation of actin and actin depolymerization factor/cofilin homologue UNC-60B in body wall muscle of these mutants. Such accumulations may indicate targeted disassembly of thin filaments dislodged from unstable dense bodies, possibly accounting for the abnormally slow growth and reduced body wall muscle strength in mutants. Overall, these results implicate FHOD protein-mediated actin assembly in forming stable sarcomere Z-lines, and identify profilin as a new contributor to FHOD activity in striated muscle development.
肌球蛋白同源结构域 2 包含蛋白(FHOD)是肌动蛋白组织形式的一个亚家族,对于许多动物的横纹肌发育很重要。我们之前曾表明,唯一的 FHOD 蛋白 FHOD-1 的缺失会导致体壁肌肉变薄,致密体畸形,作为肌节 Z 线。我们在这里证明,FHOD-1 特异性破坏肌动蛋白聚合的突变同样会破坏肌肉发育,FHOD-1 与细丝蛋白 PFN-3 合作形成致密体形态发生,与细丝蛋白 PFN-2 和 PFN-3 合作促进体壁肌肉生长。我们进一步证明,缺乏 FHOD-1 或 PFN-2/PFN-3 的线虫中的致密体不如野生型动物稳定,具有更高比例的动态蛋白,并在长时间的肌肉收缩下发生变形。我们还观察到这些突变体的体壁肌肉中肌动蛋白和肌动蛋白解聚因子/原肌球蛋白同源物 UNC-60B 的积累。这种积累可能表明从不稳定的致密体上脱落的细纤维被靶向拆卸,这可能是 突变体中异常缓慢的生长和减少的体壁肌肉力量的原因。总的来说,这些结果表明 FHOD 蛋白介导的肌动蛋白组装形成稳定的肌节 Z 线,并确定细丝蛋白是 FHOD 在横纹肌发育中的新活性贡献者。