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  • × Wang, Jun
  • × JOURNAL OF INVESTIGATIVE DERMATOLOGY
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JOURNAL OF INVESTIGATIVE DERMATOLOGY,,1332013年

Zhang, Caie, Li, Duanzhuo, Zhang, Jianguo, Chen, Xingping, Huang, Mi, Archacki, Stephen, Tian, Yuke, Ren, Weiping, Mei, Aihua, Zhang, Qingyan, Fang, Mingyan, Su, Zheng, Yin, Ye, Liu, Dongxian, Chen, Yingling, Cui, Xiukun, Li, Chang, Yang, Huanming, Wang, Qing, Wang, Jun, Liu, Mugen, Deng, Yunhua

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Dyschromatosis universalis hereditaria (DUH) is a pigmentary genodermatosis characterized by a mixture of hyperpigmented and hypopigmented macules distributed randomly over the body. No causative genes have been reported to date. In this study, we investigated a large five-generation Chinese family with DUH. After excluding the two known DUH loci, we performed genome-wide linkage analysis and identified a DUH locus on chromosome 2q33.3-q36.1 with a maximum LOD score of 3.49 with marker D2S2382. Exome sequencing identified a c.1067T>C (p.Leu356Pro) mutation in exon 3 of ABCB6 (ATP-binding cassette subfamily B, member 6) in the DUH family. Two additional missense mutations, c.508A>G (p.Ser170Gly) in exon 1 and c.1736G>A (p.Gly579Glu) in exon 12 of ABCB6, were found in two out of six patients by mutational screening using sporadic DUH patients. Immunohistologic examination in biopsy specimens showed that ABCB6 is expressed in the epidermis and had a diffuse cytoplasmic distribution. Examination of subcellular localization of wild-type ABCB6 in a B16 mouse melanoma cell line revealed that it is localized to the endosome-like compartment and dendrite tips, whereas disease-causing mutations of ABCB6 resulted in its retention in the Golgi apparatus. Our studies identified ABCB6 as the first pathogenic gene associated with DUH. These findings suggest that ABCB6 may be a physiological factor for skin pigmentation.

    JOURNAL OF INVESTIGATIVE DERMATOLOGY,,1392019年

    Robinson, Deborah J., Patel, Ankit, Purdie, Karin J., Wang, Jun, Rizvi, Hasan, Hufbauer, Martin, Ostano, Paola, Akguel, Baki, Chiorino, Giovanna, Harwood, Catherine A., Bergamaschi, Daniele

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    Keratinocyte skin cancer, comprising cutaneous squamous (cSCC) and basal cell carcinoma, is the most common malignancy in the United Kingdom. P53 is frequently mutated in cSCC. iASPP is a key inhibitor of p53 and NF-kappa B signaling pathways and has been documented as highly expressed in several types of human cancer. We have previously identified an autoregulatory feedback loop between iASPP and p63, which is critical in epidermal homeostasis. We hypothesized a potential role for dysregulation of this axis in the pathogenesis of keratinocyte malignancies. Immunostaining of 116 cSCC clinical samples revealed increased iASPP and Delta Np63 expression, but also highlighted a significant alteration of iASPP cellular localization, with consequent deregulation of its function. Expression patterns, functionality, and gene and microRNA expression analysis were further investigated in 10 cSCC cell lines. Our data suggest that while direct effects of iASPP and p63 upon each other's expression are maintained in cSCC, epigenetic dysregulation of the feedback loop occurs at the microRNA level by a previously unreported mechanism controlling p63 expression. We demonstrate that this autoregulatory feedback loop controls cell migration in cSCC by blocking epithelial-mesenchymal transition and promoting proliferation, and provides future directions for clinical biomarker and therapeutic target discovery in cutaneous SCC.

      JOURNAL OF INVESTIGATIVE DERMATOLOGY,,1362016年

      Neel, Victor A., Todorova, Kristina, Wang, Jun, Kwon, Eunjeong, Kang, Minjeong, Liu, Qingsong, Gray, Nathanael, Lee, Sam W., Mandinova, Anna

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      Seborrheic keratoses (SKs) are common benign skin tumors that share many morphological features with their malignant counterpart, squamous cell carcinoma. SKs frequently have acquired oncogenic mutations in the receptor tyrosine kinase/phosphatidylinositol 3-kinase/Akt signaling cascade. We developed a reliable culture system to study SKs in vitro and screened these cells using a library of selective kinase inhibitors to evaluate effects on cell survival. These benign tumors are sensitive to inhibition by ATP-competitive Akt inhibitors, including A-443654 and GSK690693. RNA interference-mediated Akt suppression mimicked the effects of enzyme inhibition in cultured cells. Akt inhibition suppressed phosphorylation of downstream targets of Akt kinase that are critical for cell survival, including MDM2 and FOXO3a, and induced apoptosis. Cell death was also dependent on p53, mutations in which, although common in cutaneous squamous cell carcinoma, have not been identified in SKs. Intact explants of SKs were also sensitive to Akt inhibition. In addition to the obvious therapeutic implications of these findings, identifying the signaling characteristics that differentiate benign and malignant tumors may inform our understanding of the malignant state.

        JOURNAL OF INVESTIGATIVE DERMATOLOGY,,1412021年

        Thomson, Jason, Bewicke-Copley, Findlay, Anene, Chinedu Anthony, Gulati, Abha, Nagano, Ai, Purdie, Karin, Inman, Gareth J., Proby, Charlotte M., Leigh, Irene M., Harwood, Catherine A., Wang, Jun

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        Actinic keratoses (AKs) are lesions of epidermal keratinocyte dysplasia and are precursors for invasive cutaneous squamous cell carcinoma (cSCC). Identifying the specific genomic alterations driving the progression from normal skin to skin with AK to skin with invasive cSCC is challenging because of the massive UVR-induced mutational burden characteristic at all stages of this progression. In this study, we report the largest AK wholeexome sequencing study to date and perform a mutational signature and candidate driver gene analysis on these lesions. We demonstrate in 37 AKs from both immunosuppressed and immunocompetent patients that there are significant similarities between AKs and cSCC in terms of mutational burden, copy number alterations, mutational signatures, and patterns of driver gene mutations. We identify 44 significantly mutated AK driver genes and confirm that these genes are similarly altered in cSCC. We identify azathioprine mutational signature in all AKs from patients exposed to the drug, providing further evidence for its role in keratinocyte carcinogenesis. cSCCs differ from AKs in having higher levels of intrasample heterogeneity. Alterations in signaling pathways also differ, with immune-related signaling and TGFf3 signaling significantly more mutated in cSCC. Integrating our findings with independent gene expression datasets confirms that dysregulated TGFf3 signaling may represent an important event in AK-cSCC progression.

          JOURNAL OF INVESTIGATIVE DERMATOLOGY,,1312011年

          Liu, Yuan, Gao, Min, Lv, Yong-mei, Yang, Xu, Ren, Yun-qing, Jiang, Tao, Zhang, Xin, Guo, Bi-rong, Li, Min, Zhang, Qing, Zhang, Peng, Zhou, Fu-sheng, Chen, Gang, Yin, Xian-yong, Zuo, Xian-bo, Sun, Liang-dan, Zheng, Xiao-dong, Zhang, Shu-mei, Liu, Jian-jun, Zhou, Youwen, Li, Ying-rui, Wang, Jun, Wang, Jian, Yang, Huan-ming, Yang, Sen, Li, Rui-qiang, Zhang, Xue-jun

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          JOURNAL OF INVESTIGATIVE DERMATOLOGY,,133,112013年

          Cui, Hongzhou, Gao, Min, Wang, Wenjun, Xiao, Ruo, Chen, Gang, Zhang, Qing, Fu, Hongyang, Zhou, Yi, Guo, Birong, Dong, Ying, Shen, Jie, Zhang, Min, Yue, Zhen, Liu, Fengxia, Lin, Da, Gao, Tianwen, Zhang, Anping, Zhou, Wenming, Sun, Liangdan, Yang, Sen, Wang, Jun, Cui, Yong, Zhang, Xuejun

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