TY - JOUR
T1 - Effects of stress fiber contractility on uniaxial stretch guiding mitosis orientation and stress fiber alignment
AU - Zhao, Lei
AU - Sang, Chen
AU - Yang, Chun
AU - Zhuang, Fengyuan
PY - 2011/9/2
Y1 - 2011/9/2
N2 - It has been documented that mitosis orientation (MO) is guided by stress fibers (SFs), which are perpendicular to exogenous cyclic uniaxial stretch. However, the effect of mechanical forces on MO and the mechanism of stretch-induced SFs reorientation are not well elucidated to date. In the present study, we used murine 3T3 fibroblasts as a model, to investigate the effects of uniaxial stretch on SFO and MO utilizing custom-made stretch device. We found that cyclic uniaxial stretch induced both SFs and mitosis directions orienting perpendicularly to the stretch direction. The F-actin and myosin II blockages, which resulted in disoriented SFs and mitosis directions under uniaxial stretch, suggested a high correlation between SFO and MO. Y27632 (10. γM), ML7 (50. γM, or 75. γM), and blebbistatin (50. γM, or 75. γM) treatments resulted in SFO parallel to the principle stretch direction. Upon stimulating and inhibiting the phosphorylation of myosin light chain (p-MLC), we observed a monotonic proportion of SFO to the level of p-MLC. These results suggested that the level of cell contraction is crucial to the response of SFs, either perpendicular or parallel, to the external stretch. Showing the possible role of cell contractility in tuning SFO under external stretch, our experimental data are valuable to understand the predominant factor controlling SFO response to exogenous uniaxial stretch, and thus helpful for improving mechanical models.
AB - It has been documented that mitosis orientation (MO) is guided by stress fibers (SFs), which are perpendicular to exogenous cyclic uniaxial stretch. However, the effect of mechanical forces on MO and the mechanism of stretch-induced SFs reorientation are not well elucidated to date. In the present study, we used murine 3T3 fibroblasts as a model, to investigate the effects of uniaxial stretch on SFO and MO utilizing custom-made stretch device. We found that cyclic uniaxial stretch induced both SFs and mitosis directions orienting perpendicularly to the stretch direction. The F-actin and myosin II blockages, which resulted in disoriented SFs and mitosis directions under uniaxial stretch, suggested a high correlation between SFO and MO. Y27632 (10. γM), ML7 (50. γM, or 75. γM), and blebbistatin (50. γM, or 75. γM) treatments resulted in SFO parallel to the principle stretch direction. Upon stimulating and inhibiting the phosphorylation of myosin light chain (p-MLC), we observed a monotonic proportion of SFO to the level of p-MLC. These results suggested that the level of cell contraction is crucial to the response of SFs, either perpendicular or parallel, to the external stretch. Showing the possible role of cell contractility in tuning SFO under external stretch, our experimental data are valuable to understand the predominant factor controlling SFO response to exogenous uniaxial stretch, and thus helpful for improving mechanical models.
KW - Actin-myosin contraction
KW - Mitosis orientation
KW - Myosin light chain phosphorylation
KW - Stress fiber
KW - Uniaxial stretch
UR - https://www.scopus.com/pages/publications/80051570469
U2 - 10.1016/j.jbiomech.2011.06.033
DO - 10.1016/j.jbiomech.2011.06.033
M3 - 文章
C2 - 21767844
AN - SCOPUS:80051570469
SN - 0021-9290
VL - 44
SP - 2388
EP - 2394
JO - Journal of Biomechanics
JF - Journal of Biomechanics
IS - 13
ER -