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Granter, Scott

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Granter

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Scott

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Granter, Scott

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Now showing 1 - 8 of 8
  • Publication

    Tetraspanin CD151 plays a key role in skin squamous cell carcinoma

    (2012) Li, Qinglin; Yang, Xiuwei H.; Xu, Fenghui; Sharma, Chandan; Wang, Hong-Xing; Knoblich, Konstantin; Rabinovitz, Isaac; Granter, Scott; Hemler, Martin

    Here we provide the first evidence that tetraspanin CD151 can support de novo carcinogenesis. During two-stage mouse skin chemical carcinogenesis, CD151 reduces tumor lag time and increases incidence, multiplicity, size, and progression to malignant squamous cell carcinoma (SCC), while supporting both cell survival during tumor initiation and cell proliferation during the promotion phase. In human skin SCC, CD151 expression is selectively elevated compared to other skin cancer types. CD151 support of keratinocyte survival and proliferation may depend on activation of transcription factor STAT3, a regulator of cell proliferation and apoptosis. CD151 also supports PKCα-α6β4 integrin association and PKC-dependent β4 S1424 phosphorylation, while regulating α6β4 distribution. CD151-PKCα effects on integrin β4 phosphorylation and subcellular localization are consistent with epithelial disruption to a less polarized, more invasive state. CD151 ablation, while minimally affecting normal cell and normal mouse functions, markedly sensitized mouse skin and epidermoid cells to chemicals/drugs including DMBA (mutagen) and camptothecin (topoisomerase inhibitor), as well as to agents targeting EGFR, PKC, Jak2/Tyk2, and STAT3. Hence, CD151 ‘co-targeting’ may be therapeutically beneficial. These findings not only support CD151 as a potential tumor target, but also should apply to other cancers utilizing CD151-laminin-binding integrin complexes.

  • Publication

    5-Hydroxymethylcytosine Expression in Metastatic Melanoma versus Nodal Nevus in Sentine Lymph Node Biopsies

    (2014) Lee, Jonathan J.; Granter, Scott; Laga, Alvaro; Saavedra, Arturo; Zhan, Qian; Guo, Weimin; Xu, Shuyun; Murphy, George; Lian, Christine

    Sentinel lymph node biopsies are conducted to stage patients with newly-diagnosed melanomas that have histopathologic attributes conferring defined levels of metastatic potential. Because benign nevic cells may also form ‘deposits’ in lymph nodes (nodal nevus), the pathologic evaluation for metastatic melanoma within sentinel lymph nodes can be challenging. 28 sentinel lymph node biopsy cases containing either metastatic melanoma (N=18) or nodal nevi (N=10) were retrieved from the archives of the Brigham and Women’s Hospital Department of Pathology (2011–2014). In addition, two sentinel lymph node cases that were favored to represent metastatic disease but whose histopathologic features were viewed as equivocal, with melanoma favored, were also included. Dual-labeling for the melanocyte lineage marker, MART-1, and the epigenetic marker 5-hydroxymethylcytosine, a functionally-significant indicator that has been shown to distinguish benign nevi from melanoma, was performed on all cases using immunohistochemistry and/or direct immunofluorescence. All (18 of 18) metastatic melanoma cases showed complete loss of 5-hydroxymethylcytosine nuclear staining in MART-1-positive cells and all (10 of 10) nodal nevus cases demonstrated 5-hydroxymethylcytosine nuclear staining in MART-1 positive cells. In addition, 5-hydroxymethylcytosine staining confirmed the favored diagnoses of metastatic melanoma in the two ‘equivocal’ cases. Thus, 5-hydroxymethylcytosine may be a useful adjunctive marker to distinguish between benign nodal nevi and metastatic melanoma during the evaluation of sentinel lymph node biopsies for metastatic melanoma.

  • Publication

    DHODH modulates transcriptional elongation in the neural crest and melanoma

    (Nature Publishing Group, 2011) White, Richard Mark; Cech, Jennifer; Ratanasirintrawoot, Sutheera; Lin, Charles; Rahl, Peter B.; Burke, Christopher J.; Langdon, Erin; Tomlinson, Matthew L.; Mosher, Jack; Kaufman, Charles; Chen, Frank; Long, Hannah K.; Kramer, Martin; Datta, Sumon; Neuberg, Donna; Granter, Scott; Young, Richard; Morrison, Sean; Wheeler, Grant N.; Zon, Leonard
  • Publication

    Targeted next-generation sequencing reveals high frequency of mutations in epigenetic regulators across treatment-naïve patient melanomas

    (BioMed Central, 2015) Lee, Jonathan J.; Sholl, Lynette; Lindeman, Neal; Granter, Scott; Laga, Alvaro; Shivdasani, Priyanka; Chin, Gary; Luke, Jason J.; Ott, Patrick; Hodi, F. Stephen; Mihm, Martin; Lin, Jennifer; Werchniak, Andrew E.; Haynes, Harley; Bailey, Nancy; Liu, Robert; Murphy, George; Lian, Christine

    Background: Recent developments in genomic sequencing have advanced our understanding of the mutations underlying human malignancy. Melanoma is a prototype of an aggressive, genetically heterogeneous cancer notorious for its biologic plasticity and predilection towards developing resistance to targeted therapies. Evidence is rapidly accumulating that dysregulated epigenetic mechanisms (DNA methylation/demethylation, histone modification, non-coding RNAs) may play a central role in the pathogenesis of melanoma. Therefore, we sought to characterize the frequency and nature of mutations in epigenetic regulators in clinical, treatment-naïve, patient melanoma specimens obtained from one academic institution. Results: Targeted next-generation sequencing for 275 known and investigative cancer genes (of which 41 genes, or 14.9 %, encoded an epigenetic regulator) of 38 treatment-naïve patient melanoma samples revealed that 22.3 % (165 of 740) of all non-silent mutations affected an epigenetic regulator. The most frequently mutated genes were BRAF, MECOM, NRAS, TP53, MLL2, and CDKN2A. Of the 40 most commonly mutated genes, 12 (30.0 %) encoded epigenetic regulators, including genes encoding enzymes involved in histone modification (MECOM, MLL2, SETD2), chromatin remodeling (ARID1B, ARID2), and DNA methylation and demethylation (TET2, IDH1). Among the 38 patient melanoma samples, 35 (92.1 %) harbored at least one mutation in an epigenetic regulator. The genes with the highest number of total UVB-signature mutations encoded epigenetic regulators, including MLL2 (100 %, 16 of 16) and MECOM (82.6 %, 19 of 23). Moreover, on average, epigenetic genes harbored a significantly greater number of UVB-signature mutations per gene than non-epigenetic genes (3.7 versus 2.4, respectively; p = 0.01). Bioinformatics analysis of The Cancer Genome Atlas (TCGA) melanoma mutation dataset also revealed a frequency of mutations in the 41 epigenetic genes comparable to that found within our cohort of patient melanoma samples. Conclusions: Our study identified a high prevalence of somatic mutations in genes encoding epigenetic regulators, including those involved in DNA demethylation, histone modification, chromatin remodeling, and microRNA processing. Moreover, UVB-signature mutations were found more commonly among epigenetic genes than in non-epigenetic genes. Taken together, these findings further implicate epigenetic mechanisms, particularly those involving the chromatin-remodeling enzyme MECOM/EVI1 and histone-modifying enzyme MLL2, in the pathobiology of melanoma. Electronic supplementary material The online version of this article (doi:10.1186/s13148-015-0091-3) contains supplementary material, which is available to authorized users.

  • Publication

    Integrative Genome Comparison of Primary and Metastatic Melanomas

    (Public Library of Science, 2010) Kabbarah, Omar; Nogueira, Cristina; Feng, Bin; Bosenberg, Marcus; Scott, Kenneth L.; Xiao, Yonghong; Cordon-Cardo, Carlos; Wagner, Stephan N.; Brennan, Cameron; Nazarian, Rosalynn; Wu, Min; Kwong, Lawrence Noc-Woon; Granter, Scott; Ramaswamy, Sridhar; Golub, Todd; Duncan, Lyn; Chin, Lynda

    A cardinal feature of malignant melanoma is its metastatic propensity. An incomplete view of the genetic events driving metastatic progression has been a major barrier to rational development of effective therapeutics and prognostic diagnostics for melanoma patients. In this study, we conducted global genomic characterization of primary and metastatic melanomas to examine the genomic landscape associated with metastatic progression. In addition to uncovering three genomic subclasses of metastastic melanomas, we delineated 39 focal and recurrent regions of amplification and deletions, many of which encompassed resident genes that have not been implicated in cancer or metastasis. To identify progression-associated metastasis gene candidates, we applied a statistical approach, Integrative Genome Comparison (IGC), to define 32 genomic regions of interest that were significantly altered in metastatic relative to primary melanomas, encompassing 30 resident genes with statistically significant expression deregulation. Functional assays on a subset of these candidates, including MET, ASPM, AKAP9, IMP3, PRKCA, RPA3, and SCAP2, validated their pro-invasion activities in human melanoma cells. Validity of the IGC approach was further reinforced by tissue microarray analysis of Survivin showing significant increased protein expression in thick versus thin primary cutaneous melanomas, and a progression correlation with lymph node metastases. Together, these functional validation results and correlative analysis of human tissues support the thesis that integrated genomic and pathological analyses of staged melanomas provide a productive entry point for discovery of melanoma metastases genes.

  • Publication

    Analysis of a Mouse Skin Model of Tuberous Sclerosis Complex

    (Public Library of Science, 2016) Guo, Yanan; Dreier, John R.; Cao, Juxiang; Du, Heng; Granter, Scott; Kwiatkowski, David

    Tuberous Sclerosis Complex (TSC) is an autosomal dominant tumor suppressor gene syndrome in which patients develop several types of tumors, including facial angiofibroma, subungual fibroma, Shagreen patch, angiomyolipomas, and lymphangioleiomyomatosis. It is due to inactivating mutations in TSC1 or TSC2. We sought to generate a mouse model of one or more of these tumor types by targeting deletion of the Tsc1 gene to fibroblasts using the Fsp-Cre allele. Mutant, Tsc1ccFsp-Cre+ mice survived a median of nearly a year, and developed tumors in multiple sites but did not develop angiomyolipoma or lymphangioleiomyomatosis. They did develop a prominent skin phenotype with marked thickening of the dermis with accumulation of mast cells, that was minimally responsive to systemic rapamycin therapy, and was quite different from the pathology seen in human TSC skin lesions. Recombination and loss of Tsc1 was demonstrated in skin fibroblasts in vivo and in cultured skin fibroblasts. Loss of Tsc1 in fibroblasts in mice does not lead to a model of angiomyolipoma or lymphangioleiomyomatosis.

  • Publication

    Unilateral, localized bullous pemphigoid in a patient with chronic venous stasis

    (Elsevier, 2017) Shi, Connie; Charrow, Alexandra; Granter, Scott; Christakis, Alexander; Wei, Erin
  • Publication

    A 48-Year-Old Male with Cutaneous Metastases of NUT Midline Carcinoma Misdiagnosed as Herpes Zoster

    (S. Karger AG, 2017) Ko, Lauren; Weng, Qing Y.; Song, Johanna S.; Asel, Mackenzie; Granter, Scott; Mostaghimi, Arash

    NUT (nuclear protein of the testis) midline carcinoma (NMC) is a rare, poorly differentiated neoplasm with dismal prognosis. Though NMC are often metastatic by the time of presentation, cutaneous metastases have not been well described in the literature. We report a case of NMC in a patient who presented with grouped well-demarcated tender non-ulcerated erythematous nodules on the right mid-back. The lesions were initially diagnosed and treated as herpes zoster. Following failure to improve with antiviral therapy, imaging and skin biopsy revealed that the lesions were in fact cutaneous NUT carcinoma. Although NMC is an uncommon diagnosis, clinicians should be aware that affected patients can develop skin involvement to avoid unnecessary and harmful treatments.