Gap Junction Turnover Is Achieved by the Internalization of Small Endocytic Double-Membrane Vesicles

被引:71
作者
Falk, Matthias M. [1 ]
Baker, Susan M. [1 ]
Gumpert, Anna M. [1 ]
Segretain, Dominique [2 ]
Buckheit, Robert W., III [1 ]
机构
[1] Lehigh Univ, Dept Biol Sci, Bethlehem, PA 18015 USA
[2] Univ Paris 05, INSERM, U895, F-75006 Paris, France
基金
美国国家卫生研究院;
关键词
LIVING CELLS; INTERCELLULAR-JUNCTIONS; STRUCTURAL ORGANIZATION; MOUSE-LIVER; PROTEIN; CLATHRIN; TRAFFICKING; CONNEXINS; RAT; DEGRADATION;
D O I
10.1091/mbc.E09-04-0288
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Double-membrane-spanning gap junction (GJ) channels cluster into two-dimensional arrays, termed plaques, to provide direct cell-to-cell communication. GJ plaques often contain circular, channel-free domains (similar to 0.05-0.5 mu m in diameter) identified >30 y ago and termed nonjunctional membrane (NM) domains. We show, by expressing the GJ protein connexin43 (Cx43) tagged with green fluorescent protein, or the novel photoconvertible fluorescent protein Dendra2, that NM domains appear to be remnants generated by the internalization of small GJ channel clusters that bud over time from central plaque areas. Channel clusters internalized within seconds forming endocytic double-membrane GJ vesicles (similar to 0.18-0.27 mu m in diameter) that were degraded by lysosomal pathways. Surprisingly, NM domains were not repopulated by surrounding channels and instead remained mobile, fused with each other, and were expelled at plaque edges. Quantification of internalized, photoconverted Cx43-Dendra2 vesicles indicated a GJ half-life of 2.6 h that falls within the estimated half-life of 1-5 h reported for GJs. Together with previous publications that revealed continuous accrual of newly synthesized channels along plaque edges and simultaneous removal of channels from plaque centers, our data suggest how the known dynamic channel replenishment of functional GJ plaques can be achieved. Our observations may have implications for the process of endocytic vesicle budding in general.
引用
收藏
页码:3342 / 3352
页数:11
相关论文
共 34 条
[1]   Acute internalization of gap junctions in vascular endothelial cells in response to inflammatory mediator-induced G-protein coupled receptor activation [J].
Baker, Susan M. ;
Kim, Namho ;
Gumpert, Anna M. ;
Segretain, Dominique ;
Falk, Matthias M. .
FEBS LETTERS, 2008, 582 (29) :4039-4046
[2]   Rapid turnover of connexin43 in the adult rat heart [J].
Beardslee, MA ;
Laing, JG ;
Beyer, EC ;
Saffitz, JE .
CIRCULATION RESEARCH, 1998, 83 (06) :629-635
[3]   Pathways for degradation of connexins and gap junctions [J].
Berthoud, VA ;
Minogue, PJ ;
Laing, JG ;
Beyer, EC .
CARDIOVASCULAR RESEARCH, 2004, 62 (02) :256-267
[4]   Connections with connexins: The molecular basis of direct intercellular signaling [J].
Bruzzone, R ;
White, TW ;
Paul, DL .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 238 (01) :1-27
[5]   Clustering of connexin 43-enhanced green fluorescent protein gap junction channels and functional coupling in living cells [J].
Bukauskas, FF ;
Jordan, K ;
Bukauskiene, A ;
Bennett, MVL ;
Lampe, PD ;
Laird, DW ;
Verselis, VK .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (06) :2556-2561
[6]   Tracking intracellular protein movements using photoswitchable fluorescent proteins PS-CFP2 and Dendra2 [J].
Chudakov, Dmitriy M. ;
Lukyanov, Sergey ;
Lukyanov, Konstantin A. .
NATURE PROTOCOLS, 2007, 2 (08) :2024-2032
[7]  
Falk MM, 2000, J CELL SCI, V113, P4109
[8]   5-HOUR HALF-LIFE OF MOUSE-LIVER GAP-JUNCTION PROTEIN [J].
FALLON, RF ;
GOODENOUGH, DA .
JOURNAL OF CELL BIOLOGY, 1981, 90 (02) :521-526
[9]   Multicolor and electron microscopic imaging of connexin trafficking [J].
Gaietta, G ;
Deerinck, TJ ;
Adams, SR ;
Bouwer, J ;
Tour, O ;
Laird, DW ;
Sosinsky, GE ;
Tsien, RY ;
Ellisman, MH .
SCIENCE, 2002, 296 (5567) :503-507
[10]   MODULATION OF CELL JUNCTIONS DURING DIFFERENTIATION OF THE CHICKEN OTOCYST SENSORY EPITHELIUM [J].
GINZBERG, RD ;
GILULA, NB .
DEVELOPMENTAL BIOLOGY, 1979, 68 (01) :110-129