Proliferation of human lens epithelial cells (HLE-B3) is inhibited by blocking of voltage-gated calcium channels

被引:21
作者
Meissner, Anja [1 ]
Noack, Thomas [1 ]
机构
[1] Univ Rostock, Inst Physiol, D-18055 Rostock, Germany
来源
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY | 2008年 / 457卷 / 01期
关键词
voltage-dependent calcium channel; Ca2+ influx; T-type calcium channel; protein phosphorylation; epithelial cell;
D O I
10.1007/s00424-008-0514-5
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Calcium, as an integral part of a large number of cellular regulatory pathways, is selective in the control of specific cell functions like the start of G1 phase in cell cycle. Cell proliferation has been suggested to depend on increasing intracellular calcium levels. A major regulatory pathway for intracellular calcium is the calcium influx into the cell via voltage-gated calcium channels. T-type and L-type calcium channels are substantially present in human lens epithelial cell (hLEC), and total calcium currents are inhibited by mibefradil. Here, the hypothesis was tested if calcium influx via Ca-v channels regulates proliferation in epithelial cells. Cell proliferation was determined by cell culture assays using the L- and T-type Ca-v channel blockers mibefradil and verapamil as modulators for calcium influx. Calcium influx was investigated using the Manganese quench technique. Western blot experiments were accomplished under standard conditions using antibodies against MAPK 3. Mibefradil as well as verapamil impaired cell proliferation, but in different concentration ranges. Furthermore, the activation of MAPK 3 was reduced by both antagonists. Calcium influx was also reduced in the presence of both blockers. We conclude that the transmembrane influx of Ca2+ through Ca-v channels contributes to the regulation of hLEC proliferation, identifying Ca-v channel blockers as potential therapeutic substances in ocular diseases.
引用
收藏
页码:47 / 59
页数:13
相关论文
共 43 条
[1]   ACTIONS OF VERAPAMIL, DILTIAZEM AND OTHER DIVALENT-CATIONS ON THE CALCIUM-CURRENT OF HELIX NEURONS [J].
AKAIKE, N ;
BROWN, AM ;
NISHI, K ;
TSUDA, Y .
BRITISH JOURNAL OF PHARMACOLOGY, 1981, 74 (01) :87-95
[2]   Posterior capsule opacification and anterior capsule opacification [J].
Bertelmann, Eckart ;
Kojetinsky, Corina .
CURRENT OPINION IN OPHTHALMOLOGY, 2001, 12 (01) :35-40
[3]   Regulation of α1G T-type calcium channel gene (CACNA1G) expression during neuronal differentiation [J].
Bertolesi, GE ;
Jollimore, CAB ;
Shi, CJ ;
Elbaum, L ;
Denovan-Wright, EM ;
Barnes, S ;
Kelly, MEM .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2003, 17 (09) :1802-1810
[4]  
BEZPROZVANNY L, 1995, MOL PHARMACOL, V48, P540
[5]   T-type α1H Ca2+ channels are involved in Ca2+ signaling during terminal differentiation (fusion) of human myoblasts [J].
Bijlenga, P ;
Liu, JH ;
Espinos, E ;
Haenggeli, CA ;
Fischer-Lougheed, J ;
Bader, CR ;
Bernheim, L .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (13) :7627-7632
[6]   STRUCTURE AND FUNCTION OF VOLTAGE-GATED ION CHANNELS [J].
CATTERALL, WA .
ANNUAL REVIEW OF BIOCHEMISTRY, 1995, 64 :493-531
[7]   Cav3.2 calcium channels control an autocrine mechanism that promotes neuroblastoma cell differentiation [J].
Chemin, J ;
Nargeot, J ;
Lory, P .
NEUROREPORT, 2004, 15 (04) :671-675
[8]  
Chemin Jean, 2003, Journal de la Societe de Biologie, V197, P235
[9]   Hepatocyte growth factor induces proliferation of lens epithelial cells through activation of ERK1/2 and JNK/SAPK [J].
Choi, J ;
Park, SY ;
Joo, CK .
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2004, 45 (08) :2696-2704
[10]  
Chouabe C, 1998, MOL PHARMACOL, V54, P695