Immunofluorescent Analysis of Connexin-43 Using Monoclonal Antibodies to Its Extracellular Domain

被引:18
作者
Baklaushev, V. P. [1 ,3 ]
Gurina, O. I. [1 ]
Yusubalieva, G. M. [1 ]
Grinenko, N. F. [1 ]
Cytrin, E. B. [2 ]
Victorov, I. V. [1 ]
Chekhonin, V. P. [1 ,3 ]
机构
[1] VP Serbskii Ctr Social & Forens Psychiat, Dept Basic & Appl Neurobiol, Moscow, Russia
[2] Russian Acad Sci, NK Koltsov Dev Biol Inst, Moscow, Russia
[3] NI Pirogov Russian State Med Univ, Dept Med Nanobiotechnol, Moscow, Russia
关键词
connexin-43; monoclonal antibodies; glioma; immunofluorescence; GAP JUNCTIONAL COMMUNICATION; GLIOMA-CELLS; EXPRESSION; INVASION; MECHANISM; GROWTH;
D O I
10.1007/s10517-010-0802-x
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
100103 [病原生物学]; 100218 [急诊医学];
摘要
Immunofluorescent analysis of connexin-43 was carried out on preparations of fixed and living cultures of rat and human glioma cells, HEK293 cells, and frozen sections of the rat brain with experimental glioma using monoclonal antibodies to recombinant extracellular fragment of connexin-43 (E2 second extracellular loop). These monoclonal antibodies visualized membrane and cytoplasmic pools of connexin-43 in preparations fixed with paraformaldehyde. Incubation of monoclonal antibodies to E2 extracellular loop with living cells led to visualization of only connexin hemichannels on cell membranes. No immuno fluorescence characteristic of dimer connexons, organizing the gap junction, was detected. This fact indicates that antibodies to connexin-43 extracellular loop E2, obtained in our study, specifically react with target antigen solely at the stage of connexon presentation on the membrane in the form of hemichannels. These monoclonal antibodies can be used for immunophenotyping and sorting of connexin-43-positive cells in vitro and as the guide molecules in addressed delivery of diagnostic preparations and drugs to glioma cells in vivo.
引用
收藏
页码:725 / 730
页数:6
相关论文
共 22 条
[1]
BAKLAUSHEV VP, 2009, B EKSP BIOL MED, V148, P277
[2]
Connexin43 enhances glioma invasion by a mechanism involving the carboxy terminus [J].
Bates, Dave C. ;
Sin, W. C. ;
Aftab, Q. ;
Naus, C. C. .
GLIA, 2007, 55 (15) :1554-1564
[3]
Modeling and immunohistochemical analysis of C6 glioma In Vivo [J].
Chekhonin, V. P. ;
Baklaushev, V. P. ;
Yusubalieva, G. M. ;
Pavlov, K. A. ;
Ukhova, O. V. ;
Gurina, O. I. .
BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE, 2007, 143 (04) :501-509
[4]
Targeted Transport of 125I-Labeled Antibody to GFAP and AMVB1 in an Experimental Rat Model of C6 Glioma [J].
Chekhonin, Vladimir P. ;
Baklaushev, Vladimir P. ;
Yusubalieva, Gaukhar M. ;
Gurina, Olga I. .
JOURNAL OF NEUROIMMUNE PHARMACOLOGY, 2009, 4 (01) :28-34
[5]
CHEKHONIN VP, 2007, MONOCLONAL ANTIBODIE
[6]
Extracellular-loop peptide antibodies reveal a predominant hemichannel organization of connexins in polarized intestinal cells [J].
Clair, Caroline ;
Combettes, Laurent ;
Pierre, Fabienne ;
Sansonetti, Philippe ;
Van Nlieu, Guy Tran .
EXPERIMENTAL CELL RESEARCH, 2008, 314 (06) :1250-1265
[7]
Connexin 43 hemichannels contribute to the propagation of apoptotic cell death in a rat C6 glioma cell model [J].
Decrock, E. ;
De Vuyst, E. ;
Vinken, M. ;
Van Moorhem, M. ;
Vranckx, K. ;
Wang, N. ;
Van Laeken, L. ;
De Bock, M. ;
D'Herde, K. ;
Lai, C. P. ;
Rogiers, V. ;
Evans, W. H. ;
Naus, C. C. ;
Leybaert, L. .
CELL DEATH AND DIFFERENTIATION, 2009, 16 (01) :151-163
[8]
Characterization of hampin/MSL1 as a node in the nuclear interactome [J].
Dmitriev, Ruslan I. ;
Korneenko, Tatyana V. ;
Bessonov, Alexander A. ;
Shakhparonov, Mikhail I. ;
Modyanov, Nikolai N. ;
Pestov, Nikolay B. .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 355 (04) :1051-1057
[9]
Differential expression of connexin43 in foetal, adult and tumour-associated human brain endothelial cells [J].
Errede, M ;
Benagiano, V ;
Girolamo, F ;
Flace, P ;
Bertossi, M ;
Roncali, L ;
Virgintino, D .
HISTOCHEMICAL JOURNAL, 2002, 34 (6-7) :265-271
[10]
CCN3 (NOV) interacts with connexin43 in C6 glioma cells - Possible mechanism of connexin-mediated growth suppression [J].
Fu, CT ;
Bechberger, JF ;
Ozog, MA ;
Perbal, B ;
Naus, CC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (35) :36943-36950