Rapid mechanotransduction in situ at the luminal cell surface of vascular endothelium and its caveolae

被引:130
作者
Rizzo, V [1 ]
Sung, A [1 ]
Oh, P [1 ]
Schnitzer, JE [1 ]
机构
[1] Harvard Univ, Sch Med, Beth Israel Deaconess Med Ctr, Dept Pathol, Boston, MA 02215 USA
关键词
D O I
10.1074/jbc.273.41.26323
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The vascular endothelium is uniquely positioned between the blood and tissue compartments to receive directly the fluid forces generated by the blood flowing through the vasculature. These forces invoke specific responses within endothelial cells and serve to modulate their intrinsic structure and function. The mechanisms by which hemodynamic forces are detected and converted by endothelia into a sequence of biological and even pathological responses are presently unknown. By purifying and subfractionating the luminal endothelial cell plasma membrane from tissue, we show, for the first time, that not only does mechanotransduction occur at the endothelial cell surface directly exposed to vascular flow in, vivo but also increased flow in situ induces rapid tyrosine phosphorylation of luminal endothelial cell surface proteins located primarily in the plasmalemmal invaginations called caveolae. Increased flow induces the translocation of signaling molecules primarily to caveolae, ultimately activating the Ras-Raf-mitogen-activated protein kinase pathway. This signaling appears to require intact caveolae. Filipin-induced disassembly of caveolae inhibits both proximal signaling events at the cell surface and downstream activation of the mitogen-activated protein kinase pathway. With the molecular machinery required for mediating rapid flow-induced responses as seen in endothelium, caveolae may be flow-sensing organelles converting mechanical stimuli into chemical signals transmitted into the cell.
引用
收藏
页码:26323 / 26329
页数:7
相关论文
共 56 条
[1]   CAVEOLAE - WHERE INCOMING AND OUTGOING MESSENGERS MEET [J].
ANDERSON, RGW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (23) :10909-10913
[2]   Intracellular pH and tyrosine phosphorylation but not calcium determine shear stress-induced nitric oxide production in native endothelial cells [J].
Ayajiki, K ;
Kindermann, M ;
Hecker, M ;
Fleming, I ;
Busse, R .
CIRCULATION RESEARCH, 1996, 78 (05) :750-758
[3]   Protein kinases as mediators of fluid shear stress stimulated signal transduction in endothelial cells: A hypothesis for calcium-dependent and calcium-independent events activated by flow [J].
Berk, BC ;
Corson, MA ;
Peterson, TE ;
Tseng, H .
JOURNAL OF BIOMECHANICS, 1995, 28 (12) :1439-1450
[4]   FLOW-INDUCED PROSTACYCLIN PRODUCTION IS MEDIATED BY A PERTUSSIS TOXIN-SENSITIVE G-PROTEIN [J].
BERTHIAUME, F ;
FRANGOS, JA .
FEBS LETTERS, 1992, 308 (03) :277-279
[5]   FLUID SHEAR-STRESS STIMULATES MEMBRANE PHOSPHOLIPID-METABOLISM IN CULTURED HUMAN ENDOTHELIAL-CELLS [J].
BHAGYALAKSHMI, A ;
BERTHIAUME, F ;
REICH, KM ;
FRANGOS, JA .
JOURNAL OF VASCULAR RESEARCH, 1992, 29 (06) :443-449
[6]  
COLLINS T, 1993, LAB INVEST, V68, P499
[7]   FLOW-MEDIATED ENDOTHELIAL MECHANOTRANSDUCTION [J].
DAVIES, PF .
PHYSIOLOGICAL REVIEWS, 1995, 75 (03) :519-560
[8]   Cyclic strain causes heterogeneous induction of transcription factors, AP-1, CRE binding protein and NF-kB in endothelial cells: Species and vascular bed diversity [J].
Du, W ;
Mills, I ;
Sumpio, BE .
JOURNAL OF BIOMECHANICS, 1995, 28 (12) :1485-1491
[9]   Activation of the Raf-1 kinase cascade by coumermycin-induced dimerization [J].
Farrar, MA ;
AlberolaIla, J ;
Perlmutter, RM .
NATURE, 1996, 383 (6596) :178-181
[10]   FLOW EFFECTS ON PROSTACYCLIN PRODUCTION BY CULTURED HUMAN-ENDOTHELIAL CELLS [J].
FRANGOS, JA ;
ESKIN, SG ;
MCINTIRE, LV ;
IVES, CL .
SCIENCE, 1985, 227 (4693) :1477-1479