Studies on the myosin molecule from smooth muscle
โ Scribed by Akira Kotera; Masao Yokoyama; Masahiro Yamaguchi; Yuji Miyazawa
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 1969
- Tongue
- English
- Weight
- 448 KB
- Volume
- 7
- Category
- Article
- ISSN
- 0006-3525
No coin nor oath required. For personal study only.
โฆ Synopsis
Otsuka, J a p a n YAMAGUCHI,* and YUJI MIYAZAWA,t Department of Chemistry,
Synopsis
The myosin molecule was extracted from the smooth muscle parts of horse esophagus and purified by ammonium sulfate fractionation. The schlieren pattern of the sedimentation velocity run showed a very sharp single peak of 5.9 S ( ~2 0 , ~) . Molecular weight of the protein was measured by means of the Archibald and sedimentation equilibrium methods, both in 0.5M KCl buffered by 1/150M phosphate at pH 7.5 and a t 5ยฐC. The values obtained were 6.25 X 105 and 5.81 X lo5, respectively, for the two methods. The second virial coefficients were 1.1 X lo4 and 1.2 X ml/g. Denatured smooth muscle myosin was prepared in a solution of 5M guanidine HC1 containing 0.4M KCI and 0.2M @-mercaptoethanol buffered at pH 8.0. The weight-average molecular weight of the denatured smooth muscle myosin was 2.24 X lo5 and the second virial coefficient was 7.6 X lo-' ml/g. The values described above are in good agreement with those reported for rabbit skeletal myosin with ammonium sulfate fractionation. The molecular dimension of the molecule is estimated as the value for an axial ratio of 100, assuming a rigid rod molecular model for this molecule, both the thermodynamical and hydrodynamical treatment being in a good agreement with this estimation.
๐ SIMILAR VOLUMES
## Abstract From comparative studies of the association with polymeric actin of the bifunctional species heavy meromyosin and its monofunctional constituents, information about the relative freedom of these paired elements can be derived. An isotherm for the former binding process is presented whic
Mechanical properties and isoform composition of myosin heavy and light chains were studied in hypertrophying rat urinary bladders. Growth of the bladder was induced by partial ligation of the urethra. Preparations were obtained after 10 days. In maximally activated skinned preparations from the hyp