Regulatory role of kinases and phosphatases on the internalisation of caveolae in HepG2 cells

被引:11
作者
Botos, Erzsebet
Turi, Agnes
Mullner, Nandor
Kovalszky, Ilona
Tatrai, Peter
Kiss, Anna L.
机构
[1] Semmelweis Univ, Dept Human Morphol & Dev Biol, H-1094 Budapest, Hungary
[2] Semmelweis Univ, Dept Med Chem Mol Biol & Pathobiochem, H-1088 Budapest, Hungary
[3] Semmelweis Univ, Dept Pathol & Expt Canc Res, H-1085 Budapest, Hungary
关键词
caveolae; protein phosphatases; tyrosine phosphorylation; caveolin-1; caveolin-2;
D O I
10.1016/j.micron.2006.03.012
中图分类号
TH742 [显微镜];
学科分类号
摘要
The caveolar cycle is thought to be regulated by synchronised function of kinases and phosphatases. Using ocadaic acid - a serine/threonine protein phosphatase inhibitor - and an inhibitor of tyrosine phosphatase (sodium orthovanadate) we have followed the internalisation of caveolae. Since albumin binding to its receptor (gp60) can induce pinching off of caveolae from the plasma membrane, we also used this physiological ligand to induce the internalisation. Our confocal microscopic results show that both ocadaic acid and vanadate treatments have significantly decreased caveolin (caveolin-1 and -2) labelling on the cell surface, while the cytoplasmic labelling became much stronger. Quite often large, strongly labelled "granules" appear at the perinuclear region. Very strong caveolin labelling was detected along the actin-cytoskeleton suggesting that caveolae might move along these filaments. Our electron microscopic results also show an intensive caveolae pinching off from the plasma membrane. After ocadaic acid and vanadate treatments the number of surface connected vesicles (caveolae) decreases. At the same time, large multivesicular bodies (termed caveosomes) appear in the perinuclear area of the cytoplasm. By immunoprecipitation and Western blot analysis we detect an increased tyrosine phosphorylation of a similar to 29 kDa protein in ocadaic acid and vanadate treated samples. This protein was identified as caveolin-2. No significant change in the tyrosine phosphorylation of caveolin-1 was found. From these data we can conclude that caveolae internalisation is regulated by phosphorylation of caveolin-2. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:313 / 320
页数:8
相关论文
共 32 条
[1]   POTOCYTOSIS - SEQUESTRATION AND TRANSPORT OF SMALL MOLECULES BY CAVEOLAE [J].
ANDERSON, RGW ;
KAMEN, BA ;
ROTHBERG, KG ;
LACEY, SW .
SCIENCE, 1992, 255 (5043) :410-411
[2]   The caveolae membrane system [J].
Anderson, RGW .
ANNUAL REVIEW OF BIOCHEMISTRY, 1998, 67 :199-225
[3]   Structure of detergent-resistant membrane domains: Does phase separation occur in biological membranes? [J].
Brown, DA ;
London, E .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1997, 240 (01) :1-7
[4]   Interaction of a receptor tyrosine kinase, EGF-R, with caveolins - Caveolin binding negatively regulates tyrosine and serine/threonine kinase activities [J].
Couet, J ;
Sargiacomo, M ;
Lisanti, MP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (48) :30429-30438
[5]   THE FUNCTION OF DYNAMIN IN ENDOCYTOSIS [J].
DECAMILLI, P ;
TAKEI, K ;
MCPHERSON, PS .
CURRENT OPINION IN NEUROBIOLOGY, 1995, 5 (05) :559-565
[6]   Mechanism of caveolin filament assembly [J].
Fernandez, I ;
Ying, YS ;
Albanesi, J ;
Anderson, RGW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (17) :11193-11198
[7]   Dynamin and its role in membrane fission [J].
Hinshaw, JE .
ANNUAL REVIEW OF CELL AND DEVELOPMENTAL BIOLOGY, 2000, 16 :483-+
[8]   Ocadaic acid treatment causes tyrosine phosphorylation of caveolin-2 and induces internalization of caveolae in rat peritoneal macrophages [J].
Kiss, AL ;
Botos, E ;
Turi, A ;
Müllner, N .
MICRON, 2004, 35 (08) :707-715
[9]   G-protein-coupled receptors and signaling networks: emerging paradigms [J].
Marinissen, MJ ;
Gutkind, JS .
TRENDS IN PHARMACOLOGICAL SCIENCES, 2001, 22 (07) :368-376
[10]   Caveolin regulation of endothelial function [J].
Minshall, RD ;
Sessa, WC ;
Stan, RV ;
Anderson, RGW ;
Malik, AB .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2003, 285 (06) :L1179-L1183