| Literature DB >> 31995740 |
Cai Yuan1, Xiaolei Zhao2, Zhonghai Wang1, Thomas K Borg3, Tong Ye1, Zain I Khalpey4, Raymond B Runyan5, Yonghong Shao6, Bruce Z Gao7.
Abstract
Detection of the transition between the two myosin isoforms α- and β-myosin in living cardiomyocytes is essential for understanding cardiac physiology and pathology. In this study, the differences in symmetry of polarization spectra obtained from α- and β-myosin in various mammalian ventricles and propylthiouracil-treated rats are explored through polarization-dependent second harmonic generation microscopy. Here, we report for the, to our knowledge, first time that α- and β-myosin, as protein crystals, possess different symmetries: the former has C6 symmetry, and the latter has C3v. A single-sarcomere line scan further demonstrated that the differences in polarization-spectrum symmetry between α- and β-myosin came from their head regions: the head and neck domains of α- and β-myosin account for the differences in symmetry. In addition, the dynamic transition of the polarization spectrum from C6 to C3v line profile was observed in a cell culture in which norepinephrine induced an α- to β-myosin transition.Entities:
Year: 2020 PMID: 31995740 PMCID: PMC7063480 DOI: 10.1016/j.bpj.2019.12.030
Source DB: PubMed Journal: Biophys J ISSN: 0006-3495 Impact factor: 4.033