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Suppression of the immune response against exogenous desmoglein 3 in desmoglein 3 knockout mice: an implication for gene therapy.

Gene therapies for recessive genetic diseases may provoke unwanted immune responses against the introduced gene product because patients, especially those with null mutation of a certain protein, have no tolerance for the protein of interest. This study used desmoglein 3 knockout (Dsg3-/-) mice as a disease model for a genetic defect in DSG3, to investigate whether nonviral gene therapy induces an immune response against Dsg3 and whether the reaction against Dsg3 can be prevented. When mouse Dsg3 cDNA was injected in the skin of Dsg3-/- mice, 50% of treated Dsg3-/- mice developed anti-Dsg3 IgG, which can bind native Dsg3 in vivo. To prevent this response, we used an anti-CD40L monoclonal antibody, MR1, which blocks the costimulatory interaction between CD40 and CD40L. To evaluate the effect of MR1, we grafted Dsg3+/+skin on Dsg3-/- mice, to mimic stable gene transfer of Dsg3. After skin grafting, all the recipient Dsg3-/- mice were treated with either MR1 (n=8) or control hamster IgG (n=8). All of the control IgG-treated mice developed circulating anti-Dsg3 IgG about 2 wk after grafting, and IgG deposition was observed on the surfaces of keratinocytes in the grafted Dsg3+/+skin. Such anti-Dsg3 IgG production was significantly prevented, however, when the recipient mice were treated with MR1. These findings suggested that gene therapies for recessive diseases may provoke an immune response against the transgene product, and that the CD40-CD40L interaction might be a reasonable target for effective prevention of such undesirable immune responses, leading, in turn, to a successful gene therapy.

Animals↗

Pathogenic monoclonal antibody against desmoglein 3 augments desmoglein 3 and p38 MAPK phosphorylation in human squamous carcinoma cell line.

Pemphigus vulgaris is an autoimmune blistering disease characterized by cell-cell detachment of epidermal cells. Autoantibody against desmoglein (Dsg) 3, a transmembrane glycoprotein that mediates the association of desmosomes, plays a major role in blistering in pemphigus vulgaris (PV). The mechanisms of autoantibody-induced acantholysis have not been clarified. We previously reported that PV-IgG induces phosphorylation of Dsg3, decreases Dsg3 on the cell surface and forms Dsg3-depleted desmosomes in cultured keratinocytes, and that cell treatment with a potent pathogenic monoclonal antibody against Dsg3 (AK23 mAb) decreases the amount of Dsg3 in cultured keratinocytes. Although the precise mechanisms remain unclear, we have proposed the involvement of intracellular signal transduction resulting from the binding of autoantibodies to Dsg3. In this study, we examined whether AK23 mAb augments phosphorylation of Dsg3 and p38 mitogen-activating protein kinase (MAPK) in a human squamous cell line, DJM-1 cells. AK23 mAb increased serine phosphorylation of Dsg3 and augmented activation levels of p38 MAPK. These results indicate that antibodies bind to Dsg3, but not other antigens, in the IgG fraction and can induce activation of signal transduction.

Adjuvants, Immunologic↗

Immunofluorescence and immunoblot studies on the reactivity of pemphigus vulgaris and pemphigus foliaceus sera with desmoglein 3 and desmoglein 1.

We have investigated expression of pemphigus vulgaris (PV) antigen, desmoglein 3 (Dsg3), and pemphigus foliaceus (PF) antigen, desmoglein 1 (Dsg1), in various tissues. Immunofluorescence studies suggested that Dsg1 and Dsg3 are preferentially expressed in the upper and lower epidermis, respectively. With immunoblotting of human epidermal extracts, all PV sera reacted with Dsg3 but not with Dsg1. By contrast, only half of PF sera reacted with Dsg1 but none reacted with Dsg3. These results confirm the distinct antibody specificity between PV and PF sera. They also suggest that PV sera contain antibodies against linear epitopes present even on the denatured antigen, while some PF sera contain antibodies only against conformational epitopes present on the native antigen. With immunoblotting of bovine desmosome preparations, certain PV sera and an anti-Dsg monoclonal antibody reacted with both Dsg1 and Dsg3. Affinity-purification of these PV antibodies suggested that the simultaneous reactivity with Dsg1 and Dsg3 was produced by two different subsets of antibodies and not by cross-reactivity of single antibodies. This study indicates that pemphigus serum is a useful probe with which we learn various aspects of keratinocyte biology.

Animals↗

Influence of intravenous immunoglobulin therapy on autoantibody titers to desmoglein 3 and desmoglein 1 in pemphigus vulgaris.

Pemphigus vulgaris (PV) is an autoimmune mucocutaneous blistering disease. Recently, patients with mucosal involvement have been described to have autoantibodies to desmoglein 3 (dsg), while patients with mucocutaneous disease have autoantibodies to dsg 1 and dsg 3. The objective of this study was to prospectively analyze, over a 24-month period, the influence of intravenous immunoglobulin (i.v.Ig) therapy on autoantibody titers to dsg 3 and dsg 1, in two groups of patients with severe PV. Group A consisted of 11 patients with mucocutaneous involvement and group B consisted of 10 patients with only mucosal involvement. Levels of autoantibodies to dsg 3 and 1 were measured by ELISA, at monthly intervals. Prior to therapy initiation, group A patients' sera showed a high ELISA index value of both dsg 3 and 1 antibodies, while group B patients had a high index value to only dsg 3. During i.v.Ig therapy, a progressive decline in the ELISA index values was observed in all patients. After the initiation of i.v.Ig therapy, in group A, a statistically significant reduction (p < 0.05) in ELISA index value to dsg 3 and 1 was detected after four and five months, respectively. In Group B, a significant decline in the mean autoantibody titer values to dsg 3 (p < 0.05) was observed after six months of i.v.Ig therapy. Group A patients had a negative ELISA index value to dsg 3 and 1 after a mean period of 21 and 20 months, respectively. Group B patients had a negative dsg 3 score after a mean period of 22 months. These results indicate that autoantibody titers to dsg 3 and 1, as measured by ELISA, can be used to monitor the serological response to treatment in PV patients. A sustained serological remission is observed in patients treated with i.v.Ig therapy. .

Adult↗

Differential effects of desmoglein 1 and desmoglein 3 on desmosome formation.

The desmoglein plays an important part in the formation of desmosomes. We constructed recombinant adenoviruses containing desmoglein 1 and desmoglein 3 derivatives partly lacking the extracellular domain (desmoglein 1DeltaEC and desmoglein 3DeltaEC, respectively), and full-length desmoglein 1 and desmoglein 3 and studied the involvement of desmoglein 1 and desmoglein 3 in desmosome formation. During low-level expression of desmoglein 3DeltaEC in transduced HaCaT cells, keratin insertion at cell-cell contact sites was only partially inhibited and desmoplakin was partially stained at cell-cell contact sites. Low-level expression of desmoglein 1DeltaEC, however, resulted in complete inhibition of keratin insertion at the cell-cell contact sites, and desmoplakin was stained in perinuclear dots. These results indicate the dominant-negative effect of desmoglein 1DeltaEC on desmosome formation was stronger than that of desmoglein 3DeltaEC. Desmoglein 1DeltaEC coprecipitated plakoglobin to approximately the same extent as desmoglein 3DeltaEC. Therefore, we conclude that the dominant-negative effect of desmoglein 1DeltaEC is not simply due to plakoglobin sequestration. On the other hand, during low-level expression of full-length desmoglein 3 and desmoglein 1, they both colocalized with desmoplakin. During high-level expression, however, keratin insertion at cell-cell contact sites was inhibited in desmoglein 1 but not in desmoglein 3, and desmoplakin was stained at cell-cell contact sites in desmoglein 3 but not in desmoglein 1. These data suggest desmoglein 1 and desmoglein 3 expressed at low level were incorporated into desmosome but at high-level expression, desmoglein 1 disrupted desmosomes but desmoglein 3 did not. Our findings provide biologic evidence that desmoglein 1 and desmoglein 3 play a different functional role in cell-cell adhesion of keratinocytes.

Cadherins↗

Desmoglein 3 as a prognostic factor in lung cancer.

Desmoglein 3 is a desmosomal protein of the cadherin family. Our cDNA expression profile demonstrated that desmoglein 3 was highly expressed in squamous cell carcinoma of the lung but not detected in pulmonary adenocarcinoma or normal lung. To investigate the clinical significance of desmoglein 3 in lung cancer, we surveyed its expression in primary non-small-cell lung cancers and neuroendocrine tumors. We used immunohistochemical analysis to examine the expression of desmoglein 3 by using tissue microarrays containing samples from 300 surgical non-small-cell lung cancer and 183 lung neuroendocrine tumor. Staining status was determined based on the sum of the distribution score (0, 1, or 2) and the intensity score (0, 1, 2, or 3) of the staining signal. Follow-up was available for 346 cases (median follow-up of 2.8 years). We determined the survival statistical significance of desmoglein 3 by using the log-rank test, and we plotted Kaplan-Meier curves. Negative immunohistochemical staining with desmoglein 3 was associated with shorter survival for all lung cancer patients regardless of the histologic subtype (5-year survival of 20.9% versus 49.5%, P < .001) in our series. In patients with atypical carcinoid tumors, lacking desmoglein 3 expression showed a 5-year survival of 0% compared with 36.8% for desmoglein 3-positive cases (P < .001). Desmoglein 3 status indicated a poor prognosis in lung cancers and portends a more aggressive behavior for atypical carcinoid tumors.

Adenocarcinoma↗

Use of domain-swapped molecules for conformational epitope mapping of desmoglein 3 in pemphigus vulgaris.

Pemphigus vulgaris is an autoimmune blistering disease caused by autoantibodies against desmoglein 3, a member of the desmosomal cadherin family. These autoantibodies recognize conformation-dependent epitopes on desmoglein 3. In this study we attempted to map the conformational epitopes of desmoglein 3 in pemphigus vulgaris using recombinant desmoglein 3 produced by the baculovirus expression system. We developed a series of domain-swapped molecules between desmoglein 3 and desmoglein 1, which have similar structures but distinct epitopes. These were developed by substituting deleted segmental regions of desmoglein 3 by the corresponding desmoglein 1. Thus domain-swapped molecules containing desmoglein 3 residues 1-403, 1-161, 163-566, and 405-566 were constructed and used as competitors for competition enzyme-linked immunosorbent assay against the entire extracellular domain of desmoglein 3 with 25 pemphigus vulgaris sera. Considering more than 50% absorption as significant, residues 1-403 and 1-161 showed significant absorption in 24 out of 25 (96%) and 18 out of 25 (72%) pemphigus vulgaris sera, respectively, whereas only one serum and no sera showed significant absorption by residues 163-566 and 405-566, respectively. Furthermore, no apparent change in their major epitopes was seen during the time course in four pemphigus vulgaris cases tested. These findings indicate that the domain-swapping approach is useful for conformational epitope mapping in pemphigus and that amino-terminal residues 1-161, which are considered to include a region essential for cell-cell adhesion in cadherins, contain the critical residues of the conformational epitope of desmoglein 3 recognized by the autoantibodies in pemphigus vulgaris sera.

Autoantigens↗

Cloning of the mouse desmoglein 3 gene (Dsg3): interspecies conservation within the cadherin superfamily.

Desmoglein 3 is a cadherin-like calcium-dependent cell adhesion molecule expressed primarily in suprabasal keratinocytes of the epidermis. In this study, we have cloned the full-length cDNA and characterized the entire gene structure for the mouse desmoglein 3 gene (Dsg3). Isolation of overlapping cDNA clones, together with 5' and 3' rapid amplification of cDNA ends (RACE), allowed delineation of the entire coding sequence. The transcriptional initiation site was confirmed by primer extension and reverse transcription polymerase chain reaction analysis. The entire cDNA consisted of 6407 bp with an open reading frame of 2979 bp, and the deduced polypeptide contained 993 amino acids. Comparison of mouse and human desmoglein 3 amino acid sequences demonstrated 85.6% homology. Computer analysis suggested the presence of a transmembrane segment, 5 potential calcium binding sites, and a RAL motif which corresponds to the HAV motif, the potential site for homophilic interaction of typical cadherins. The mouse desmoglein 3 gene consisted of 15 exons in chromosome 18. Comparison of the intron-exon organization of Dsg3 with various cadherins from different species revealed remarkable conservation. This relatively high level of conservation both at the protein and genomic level suggests that desmoglein 3 plays an important role in keratinocyte cell-cell adhesion.

Amino Acid Sequence↗

Loss of cell adhesion in Dsg3bal-Pas mice with homozygous deletion mutation (2079del14) in the desmoglein 3 gene.

Pemphigus encompasses a group of autoimmune blistering diseases with circulating pathogenic autoantibodies recognizing several proteins, including the desmosomal cadherin, desmoglein 3. Targeted disruption of the Dsg3 gene by homologous recombination (Dsg3tm1stan) in mouse results in fragility of the skin and oral mucous membranes, analogous to the human disease. In addition, the Dsg3tm1stan mice develop phenotypic runting and hair loss, identical to that of the mouse mutant, Dsg3bal-2J. The Dsg3bal-2J mice are homozygous for a 1 bp insertion (2275insT) in the Dsg3 gene resulting in a nonfunctional Dsg3 mRNA. In this study, we characterized an allelic mutation, Dsg3bal-Pas, with clinical features similar to those in Dsg3bal-2J. We have identified a 14 bp deletion in exon 13 of the Dsg3 gene resulting in a frameshift and premature termination codon 7 bp downstream from the site of the deletion and causing a truncation of the desmoglein 3 polypeptide by 199 amino acids, eliminating virtually all of the intracellular domain. We demonstrate that, although a Dsg3 mRNA transcript was detectable in Dsg3bal-Pas skin, the corresponding protein for desmoglein 3 was completely absent in the oral mucosal epithelium of homozygous Dsg3bal-Pas compared with that of +/Dsg3bal-Pas mice. No significant changes in the expression of desmogleins 1 and 2 were detected. To elucidate a potential mechanism causing loss of cell adhesion in the Dsg3bal-Pas mice, we generated a myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein and expressed it in keratinocytes. The myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein was found predominantly in the cytoplasm possibly due to increased proteolytic degradation. Cell surface staining was also detected but was jagged, not linear along the cell-cell border like that observed for the full-length desmoglein 3. The expression of the myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein resulted in a reduction in staining of other desmosomal proteins, including desmoglein 1 and 2, plakophilin 2, and plakoglobin. In addition, the cells expressing myc-tagged truncated Dsg3bal-Pas desmoglein 3 protein underwent dramatic changes in cell morphology and exhibited striking extensive filopodia. Collectively, these data showed that the perturbation of desmoglein 3 found in the Dsg3bal-Pas mice resulted in disadhesion of keratinocytes manifested with blistering phenotype.

Alopecia↗

Central role of the plakoglobin-binding domain for desmoglein 3 incorporation into desmosomes.

The carboxy-termini of classical cadherins and desmocollins have been shown to play an important role in initiating desmosome assembly. In this study we wanted to determine whether the carboxy- terminal cytoplasmic domains of desmoglein 3 are important for targeting it to the desmosome. By generating stably transfected A431 cell lines with chimeric constructs encoding for the extracellular domain of E-cadherin and the transmembrane and intracellular region of human desmoglein 3, we could show that the cytoplasmic tail is sufficient to target the protein to the desmosome. By generating truncations of the carboxy-terminus we investigated the importance of the various intracellular subdomains. Whereas the construct encoding the intracellular cadherin-type segment domain still allowed its incorporation into the desmosome, further truncation, leaving only the intracellular anchor domain, did not. Deletion of the 87 amino acid long plakoglobin-binding site within the intracellular cadherin-type segment domain demonstrated that this region is essential for targeting desmoglein 3 to the desmosome. Absent the plakoglobin-binding site the chimeric molecule colocalizes with beta-catenin rather than desmoplakin. We conclude that binding of plakoglobin to desmoglein 3 is an important step in desmosome assembly and leads to the incorporation of desmoglein 3 into the desmosome.

Adherens Junctions↗

Desmoglein 3 anchors telogen hair in the follicle.

Little is known about the function of desmosomes in the normal structure and function of hair. Therefore, it was surprising that mice without desmoglein 3 (the autoantigen in pemphigus vulgaris) not only developed mucous membrane and skin lesions like pemphigus patients, but also developed hair loss. Analysis of this phenotype indicated that hair was normal through the first growth phase ('follicular neogenesis'). Around day 20, however, when the hair follicles entered the resting phase of the hair growth cycle (telogen), mice with a targeted disruption of the desmoglein 3 gene (DSG3-/-) lost hair in a wave-like pattern from the head to the tail. Hair then regrew and was lost again in the same pattern with the next synchronous hair cycle. In adults, hair was lost in patches. Gentle hair pulls with adhesive tape showed that anagen (growing) hairs were firmly anchored in DSG3-/- mice, but telogen hairs came out in clumps compared to that of DSG3+/- and +/+ littermates in which telogen hairs were firmly anchored. Histology of bald skin areas in DSG3-/- mice showed cystic telogen hair follicles without hair shafts. Histology of hair follicles in early telogen, just before clinical hair loss occurred, showed loss of cell adhesion (acantholysis) between the cells surrounding the telogen club and the basal layer of the outer root sheath epithelium. Electron microscopy revealed 'half-desmosomes' at the plasma membranes of acantholytic cells. Similar acantholytic histology and ultrastructural findings have been previously reported in skin and mucous membrane lesions of DSG3-/- mice and pemphigus vulgaris patients. Immunoperoxidase staining with an antibody raised against mouse desmoglein 3 showed intense staining on the cell surface of keratinocytes surrounding the telogen hair club in normal mice. Similar staining was seen in human telogen hair with an anti-human desmoglein 3 antibody. Finally, a scalp biopsy from a pemphigus vulgaris patient showed empty telogen hair follicles. These data demonstrate that desmoglein 3 is not only critical for cell adhesion in the deep stratified squamous epithelium, but also for anchoring the telogen hair to the outer root sheath of the follicle and underscore the importance of desmosomes in maintaining the normal structure and function of hair.

Acantholysis↗

Nonsecretory IgA1 autoantibodies targeting desmosomal component desmoglein 3 in intraepidermal neutrophilic IgA dermatosis.

Intraepidermal neutrophilic IgA dermatosis, a rare skin disease entity manifested with blisters and pustules clinically and lower epidermal blister, acantholysis, and neutrophilic infiltration pathologically, was first reported in 1985. Although the disease is characterized by IgA autoantibodies targeting the epithelial cell surface component, the target antigen has not been determined. We investigated a patient with this disease by histopathology, direct and indirect immunofluorescence, immunoblotting, and immunoadsorption studies. The pustular lesion was characterized by blister at the lower epidermis, acantholysis, and neutrophilic infiltration. Nonsecretory IgA1 subclass autoantibodies targeting the lower epithelial cell surfaces were detected in the patient's skin and serum. The patient's IgA autoantibodies labeled a recombinant desmosomal protein desmoglein 3 on immunoblotting and the immunolabeling of epithelial cell surfaces was eliminated by preadsorption with desmoglein 3. Thus, desmoglein 3 is identified as a target antigen in intraepidermal neutrophilic IgA dermatosis. The ability of IgA1 autoantibodies to bind neutrophils may be responsible for the prominent neutrophilic infiltration observed histopathologically and for the pustular lesions observed clinically.

Aged↗

Production of non-pathogenic human monoclonal antibodies to desmoglein 3 from pemphigus vulgaris patient.

Pemphigus vulgaris is a potentially fatal autoimmune mucocutaneous disease associated with production of IgG autoantibodies to desmoglein 3, a 130 kDa epidermal protein. To further characterize the epitope(s) of pemphigus vulgaris antigen we established two human-human hybridoma by fusion of the peripheral blood mononuclear cells with a human and mouse heterohybridoma. These hybridomas designated as MAb Dsg-3: 06 and MAb Dsg-3: 10 and stable in culture and demonstrated yield of monoclonal antibodies specific for pemphigus vulgaris. Immunofluorescence, immunoblot, ELISA assays demonstrated that both the monoclonal antibodies bind to the intercellular cement substance and to 130 kDa protein present in the skin and specifically binds to recombinant desmoglein 3 protein, but not to desmoglein 1 protein. The IgG subclass distribution study demonstrated that both the antibodies are of IgG1 subclass in nature. Both the antibodies were non-pathogenic as demonstrated in vitro by their inability to produce acantholysis in normal human skin in organ culture or in vivo by the induction of disease in neonatal BALB/c mice. The relevance and value of these monoclonal antibodies in the pathogenesis of pemphigus vulgaris is discussed.

Animals↗

Induction of blister-causing antibodies by a recombinant full-length, but not the extracellular, domain of the pemphigus vulgaris antigen (desmoglein 3).

Pemphigus vulgaris (PV) is mediated by autoantibodies to desmoglein 3, the pemphigus vulgaris antigen (PVA). PVA and an extracellular domain of PVA-Ig fusion protein (PV-Ig) can completely adsorb the blister-causing Abs from PV patient sera, suggesting that the extracellular segment of PVA might be sufficient to induce pathogenic Abs. To test this, we immunized rabbits with either PVA or its extracellular domain (EPVA) expressed in insect cells in our laboratory. When Igs were passively transferred from these rabbits into neonatal mice, anti-PVA, but not the anti-EPVA, induced blisters. To understand the basis for their differential pathogenic effects, we examined the properties of these sera. Both sera showed comparable ELISA titers and indirect immunofluorescence reactivity against monkey esophagus, a source of native PVA. Moreover, EPVA, like PVA adsorbed blister-causing Abs from sera of PV patients and rabbits immunized with PVA. In contrast, when IgG preparations were incubated with fura-2-AM (acetyloxymethyl ester)-loaded human keratinocytes in culture, only IgG from anti-PVA serum induced intracellular calcium mobilization. These data showed that PVA but not EPVA can elicit Abs that induced blisters in neonatal mice and mediate intracellular signaling through calcium mobilization.

Amino Acid Sequence↗

Neonatal pemphigus vulgaris: IgG4 autoantibodies to desmoglein 3 induce skin blisters in newborns.

We report a case of neonatal pemphigus vulgaris presenting with skin lesions on the head, genital area, and right foot. Pemphigus vulgaris was diagnosed by the presence of circulating autoantibodies predominantly of the IgG4 subtype by indirect immunofluorescence microscopy and by enzyme-linked immunosorbent assay using recombinant desmoglein 3. This case demonstrates the pathogenic relevance of IgG4 autoantibodies to desmoglein 3 in the skin of neonates.

Autoantibodies↗

The N-terminal fraction of desmoglein 3 encompassing its immunodominant domain is present in human serum: implications for pemphigus vulgaris autoimmunity.

Pemphigus vulgaris (PV) is considered as an autoimmune disease against a tissue-restricted antigen, desmoglein 3, a 130 kDa glycoprotein expressed by keratinocytes of skin and mucous membranes. Therefore, a breakdown of peripheral tolerance is generally invoked to explain this horror autotoxicus. The availability of a self-antigen and the strength of antigenic stimulation represent critical points in the regulation of immune system homeostasis. Our study shows for the first time that the immunodominant fraction of the PV self-antigen is present in sera of healthy individuals and patients as a circulating 30 kDa fragment (sDsg3). These findings provide a good explanation for the N-terminal specificity of antibody production and peptide recognition in PV patients by B and T cell, respectively. Moreover, the presence of the sDsg3 in human sera could allow to reconsider pemphigus as a disease against a circulating antigen; once produced, PV-autoantibodies also recognize the 130 kDa epidermal antigen desmoglein 3 on keratinocyte surface (kDsg3), thus triggering the acantholysis and the clinical manifestations of pemphigus.

Autoimmune Diseases↗

Conformational epitope mapping of antibodies against desmoglein 3 in experimental murine pemphigus vulgaris.

BACKGROUND: Pemphigus vulgaris (PV) is a blistering skin disease caused by IgG autoantibodies against desmoglein 3 (Dsg3). We have recently developed an active disease mouse model for PV by adoptive transfer of splenocytes from immunized or naive Dsg3-/- mice into Rag2-/- recipient mice. OBJECTIVE: In this study, we characterized the conformational epitopes of anti-Dsg3 IgG antibodies and their pathogenic activities in the PV model mice. METHODS: The binding regions of anti-Dsg3 IgG antibodies were assessed by competition ELISAs with domain-swapped mouse Dsg1/Dsg3 molecules in PV model mice receiving immunized (n = 53) or naive (n = 56) splenocytes. To compare the pathogenic activity of antibodies against N-terminal versus C-terminal extracellular domains, Dsg3-/- mice were immunized with the residues 1-162 or the residues 403-565 of mouse Dsg3, and the splenocytes were adoptively transferred into Rag2-/- mice. RESULTS: The middle to C-terminal extracellular domains of Dsg3 (residues 195-565) showed >50% competition in 51/53 (96.2%) and 45/56 (80.4%) while the N-terminal domain (residues 1-162) showed >50% competition only in 3/53 (5.7%) and 8/56 (14.3%) in mice receiving immunized and naive splenocytes, respectively. The mice receiving Dsg3-/- splenocytes immunized with the residues 403-565 developed the PV phenotype as early as and as severely as the mice receiving splenocytes immunized with the residues 1-162. CONCLUSIONS: In PV model mice the antibodies were dominantly raised against the middle to C-terminal extracellular domains of mouse Dsg3 where amino acid sequences are less conserved among desmoglein isoforms and that those antibodies may also be involved in the blister formation.

Adoptive Transfer↗