Multiple Epidermal Connexins are Expressed in Different Keratinocyte Subpopulations Including Connexin 31  Wei-Li Di, Elizabeth L. Rugg, Irene M. Leigh,

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Multiple Epidermal Connexins are Expressed in Different Keratinocyte Subpopulations Including Connexin 31  Wei-Li Di, Elizabeth L. Rugg, Irene M. Leigh, David P. Kelsell  Journal of Investigative Dermatology  Volume 117, Issue 4, Pages 958-964 (October 2001) DOI: 10.1046/j.0022-202x.2001.01468.x Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions

Figure 1 SDS-PAGE analysis for Cx31 antibody. Cx31 protein was translated in vitro (TNT system) or in vivo (HeLa cells) as described in Materials and Methods and subjected to SDS-PAGE: lane 1, 14C-labeled molecular weight marker; lane 2, 35S-methionine-labeled Cx31 protein (the image of lanes 1 and 2 was taken by autoradiography); lane 3, unlabeled Cx31 protein translated using the TNT system; lane 4, HeLa cell lysate transfected with pcDNA3/Cx31; lane 5, the lysate of untransfected Hela cells. Lanes 3, 4, and 5 were transferred to nitrocellulose membrane after electrophoresis and blotted with the Cx31 antibody. Journal of Investigative Dermatology 2001 117, 958-964DOI: (10.1046/j.0022-202x.2001.01468.x) Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions

Figure 2 Connexin 31 portein in the human epidermis. The expression pattern of Cx31 protein in (a) normal human interfollicular epidermis (scale bar: 20 µm), (b) normal palm epidermis (scale bar: 20 µm), (c) the outer root sheath of the hair follicle (scale bar: 20 µm) (taken from the boxed area in (e), scale bar: 10 µm), and (d) sebaceous gland (scale bar: 20 µm) (taken from the boxed area in (f), scale bar: 10 µm). Journal of Investigative Dermatology 2001 117, 958-964DOI: (10.1046/j.0022-202x.2001.01468.x) Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions

Figure 3 The expression pattern of connexin proteins in normal human interfollicular epidermis. Immunofluorescence staining using connexin antibodies: (a) Cx26; (b) Cx30; (c) Cx32; (d) Cx40; (e) Cx43; (f) Cx45. Scale bar: 20 µm. Journal of Investigative Dermatology 2001 117, 958-964DOI: (10.1046/j.0022-202x.2001.01468.x) Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions

Figure 4 The expression pattern of connexin proteins in normal palm epidermis. Immunofluorescence staining using connexin antibodies: (a) Cx26; (b) Cx30; (c) Cx32; (d) Cx40; (e) Cx43; (f) Cx45. Scale bar: 20 µm. Journal of Investigative Dermatology 2001 117, 958-964DOI: (10.1046/j.0022-202x.2001.01468.x) Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions

Figure 5 Connexin mRNA expressed in human interfollicular and palm skin. mRNA transcripts were amplified from human skin (upper image) and palm (low image) by RT-PCR. (–) indicates that the amplifications in the absence of reverse transcriptase were used as controls. Journal of Investigative Dermatology 2001 117, 958-964DOI: (10.1046/j.0022-202x.2001.01468.x) Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions

Figure 6 Distribution of Cx31 mRNA in palm. The Cx31 mRNA was detected by in situ hybridization: (a) sense; (b) antisense. Scale bar: 10 µm. Journal of Investigative Dermatology 2001 117, 958-964DOI: (10.1046/j.0022-202x.2001.01468.x) Copyright © 2001 The Society for Investigative Dermatology, Inc Terms and Conditions