Immunohistological detection of gap junctions in human lymphoid tissue: connexin43 in follicular dendritic and lymphoendothelial cellsT Krenacs and M Rosendaal Department of Anatomy and Developmental Biology, University College London, United Kingdom. We investigated the expression of gap junction connexins26, -32, and - 43 in normal, reactive, and diseased human lymphoid tissue with single and double immunolabeling and confocal laser scanning microscopy. In all tissues, connexin43 positivity was detected in follicular dendritic cells positive for CD21 and CD35 antigens, around lymphoendothelial cells moderately positive for Factor VIII, CD31 and cathepsin-D antigens; and somewhat in vascular endothelia including high endothelial venules strongly positive for Factor VIII and CD31 antigens. The ultrastructural hallmark of gap junctions, pentalaminar structures with appropriate spacing, was found in follicular dendritic cell processes. Connexin43 was also detected between smooth muscle and stromal cells of the gut, in capsular fibroblasts, and in tonsil epithelium. Neither connexin32 nor -26 was revealed, except for connexin26 in the tonsil epithelium. In follicular dendritic cells, connexin43 co-localized closely with the desmosomal proteins desmoplakin and desmoglein, suggesting that cell adherence has a role in gap junction formation. Most connexin43 was observed in sinus lining cells of lymph nodes involved in malignancies and in follicular dendritic cells in the light zone of germinal centers where maturing but still proliferating lymphocytes are situated. In the light of their distribution, gap junctions may play a part in regulating the growth of germinal centers and in integrating activating or controlling signals in follicular dendritic and sinus lining cell networks. Because connexin43 is the connexin of stromal cells, finding it in follicular dendritic cells in consistent with the proposal that these cells originate from resident stromal cells.
Volume 43,
Issue 11,
pp. 1125-1137,
11/01/1995
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A. Bermudez-Fajardo, M. Yliharsila, W. H. Evans, A. C. Newby, and E. Oviedo-Orta CD4+ T lymphocyte subsets express connexin 43 and establish gap junction channel communication with macrophages in vitro J. Leukoc. Biol., September 1, 2007; 82(3): 608 - 612. [Abstract] [Full Text] [PDF] |
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J. C. SAEZ, V. M. BERTHOUD, M. C. BRANES, A. D. MARTINEZ, and E. C. BEYER Plasma Membrane Channels Formed by Connexins: Their Regulation and Functions Physiol Rev, October 1, 2003; 83(4): 1359 - 1400. [Abstract] [Full Text] [PDF] |
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M. Rosendaal and C. Jopling Hematopoietic capacity of connexin43 wild-type and knock-out fetal liver cells not different on wild-type stroma Blood, April 15, 2003; 101(8): 2996 - 2998. [Abstract] [Full Text] [PDF] |
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E. Oviedo-Orta and W. H. Evans Gap junctions and connexins: potential contributors to the immunological synapse J. Leukoc. Biol., October 1, 2002; 72(4): 636 - 642. [Abstract] [Full Text] [PDF] |
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T. Csont, C. Csonka, A. Onody, A. Gorbe, L. Dux, R. Schulz, G. F. Baxter, and P. Ferdinandy Nitrate tolerance does not increase production of peroxynitrite in the heart Am J Physiol Heart Circ Physiol, July 1, 2002; 283(1): H69 - H76. [Abstract] [Full Text] [PDF] |
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E. Montecino-Rodriguez and K. Dorshkind Regulation of hematopoiesis by gap junction-mediated intercellular communication J. Leukoc. Biol., September 1, 2001; 70(3): 341 - 347. [Abstract] [Full Text] [PDF] |
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E. OVIEDO-ORTA, P. GASQUE, and W. H. EVANS Immunoglobulin and cytokine expression in mixed lymphocyte cultures is reduced by disruption of gap junction intercellular communication FASEB J, March 1, 2001; 15(3): 768 - 774. [Abstract] [Full Text] [PDF] |
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E. Montecino-Rodriguez, H. Leathers, and K. Dorshkind Expression of connexin 43 (Cx43) is critical for normal hematopoiesis Blood, August 1, 2000; 96(3): 917 - 924. [Abstract] [Full Text] [PDF] |
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E. M. Cramer, I. Garcia, J.-M. Masse, J.-M. Zini, P. Lambin, E. Oksenhendler, F. Souni, M. Smith, G. Flandrin, J. Breton-Gorius, et al. Erythroblastic Synartesis: An Auto-immune Dyserythropoiesis Blood, December 1, 1999; 94(11): 3683 - 3693. [Abstract] [Full Text] [PDF] |
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G.Y. Huang, E.S. Cooper, K. Waldo, M.L. Kirby, N.B. Gilula, and C.W. Lo Gap Junction-mediated Cell-Cell Communication Modulates Mouse Neural Crest Migration J. Cell Biol., December 14, 1998; 143(6): 1725 - 1734. [Abstract] [Full Text] [PDF] |
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J. E. Gabriels and D. L. Paul Connexin43 Is Highly Localized to Sites of Disturbed Flow in Rat Aortic Endothelium but Connexin37 and Connexin40 Are More Uniformly Distributed Circ. Res., September 21, 1998; 83(6): 636 - 643. [Abstract] [Full Text] [PDF] |
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