Endothelial cilia are fluid shear sensors that regulate calcium signaling and nitric oxide production through polycystin-1

被引:349
作者
Nauli, Surya M. [1 ]
Kawanabe, Yoshifumi [2 ]
Kaminski, John J. [3 ]
Pearce, William J. [4 ]
Ingber, Donald E. [5 ]
Zhou, Jing [6 ]
机构
[1] Univ Toledo, Coll Pharm & Med, Dept Pharmacol & Med, Toledo, OH USA
[2] Tatsuki Red Cross Hosp, Dept Neurosurg, Osaka, Japan
[3] Boston Univ, Dept Biol, Boston, MA 02215 USA
[4] Loma Linda Univ, Sch Med, Dept Pharmacol, Loma Linda, CA USA
[5] Harvard Univ, Sch Med, Childrens Hosp, Vasc Biol Program, Boston, MA USA
[6] Harvard Univ, Sch Med, Brigham & Womens Hosp, Div Renal, Boston, MA USA
关键词
blood flow; blood pressure; endothelium; endothelium-derived factors; physiology; polycystic kidney diseases;
D O I
10.1161/CIRCULATIONAHA.107.710111
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background-When challenged with extracellular fluid shear stress, vascular endothelial cells are known to release nitric oxide, an important vasodilator. Here, we show that the ability of cultured endothelial cells to sense a low range of fluid shear depends on apical membrane organelles, called cilia, and that cilia are compartments required for proper localization and function of the mechanosensitive polycystin-1 molecule. Methods and Results-Cells with the PkdI(null/null) or Tg737(orpk/orpk) mutation encoded for polycystin-1 or polaris, respectively, are unable to transmit extracellular shear stress into intracellular calcium signaling and biochemical nitric oxide synthesis. Cytosolic calcium and nitric oxide recordings further show that fluid shear sensing is a cilia-specific mechanism because other mechanical or pharmacological stimulation does not abolish calcium and nitric oxide signaling in polycystin-1 and polaris mutant endothelial cells. Polycystin-1 localized in the basal body of Tg737(orpk/orpk) endothelial cells is insufficient for a fluid shear stress response. Furthermore, the optimal shear stress to which the cells respond best does not alter the apical cilia structure but modifies the responsiveness of cells to higher shear stresses through proteolytic modification of polycystin-1. Conclusions-We demonstrate for the first time that polycystin-1 (required for cilia function) and polaris (required for cilia structure) are crucial mechanosensitive molecules in endothelial cells. We propose that a distinctive communication with the extracellular microenvironment depends on the proper localization and function of polycystin-1 in cilia.
引用
收藏
页码:1161 / 1171
页数:11
相关论文
共 34 条
[1]   Flow-dependent regulation of endothelial nitric oxide synthase: role of protein kinases [J].
Boo, YC ;
Jo, H .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2003, 285 (03) :C499-C508
[2]   Mechanical stimuli induce cleavage and nuclear translocation of the polycystin-1 C terminus [J].
Chauvet, V ;
Tian, X ;
Husson, H ;
Grimm, DH ;
Wang, T ;
Hieseberger, T ;
Igarashi, P ;
Bennett, AM ;
Ibraghimov-Beskrovnaya, O ;
Somlo, S ;
Caplan, MJ .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 114 (10) :1433-1443
[3]   Calcium-dependent release of NO from intracellular S-nitrosothiols [J].
Chvanov, Michael ;
Gerasimenko, Oleg V. ;
Petersen, Ole H. ;
Tepikin, Alexei V. .
EMBO JOURNAL, 2006, 25 (13) :3024-3032
[4]   The regulation and pharmacology of endothelial nitric oxide synthase [J].
Dudzinski, DM ;
Igarashi, J ;
Greif, D ;
Michel, T .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 2006, 46 :235-276
[5]  
Ecder T, 2001, J AM SOC NEPHROL, V12, P194, DOI 10.1681/ASN.V121194
[6]  
FODER BK, 2002, AM J PHYSIOL-RENAL, V282, pF541
[7]   The remarkable mechanical strength of polycystin-1 supports a direct role in mechanotransduction [J].
Forman, JR ;
Qamar, S ;
Paci, E ;
Sandford, RN ;
Clarke, J .
JOURNAL OF MOLECULAR BIOLOGY, 2005, 349 (04) :861-871
[8]  
GLUCKSMANNKUIS MA, 1995, CELL, V81, P289
[9]   Gli2 and Gli3 localize to cilia and require the intra-flagellar transport protein polaris for processing and function [J].
Haycraft, CJ ;
Banizs, B ;
Aydin-Son, Y ;
Zhang, QH ;
Michaud, EJ ;
Yoder, BK .
PLOS GENETICS, 2005, 1 (04) :480-488
[10]   Endothelial intercellular adhesion molecule (ICAM)-2 regulates angiogenesis [J].
Huang, MT ;
Mason, JC ;
Birdsey, GM ;
Amsellem, V ;
Gerwin, N ;
Haskard, DO ;
Ridley, AJ ;
Randi, AM .
BLOOD, 2005, 106 (05) :1636-1643