کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | ترجمه فارسی | نسخه تمام متن |
---|---|---|---|---|---|
8715804 | 1587872 | 2018 | 30 صفحه PDF | سفارش دهید | دانلود رایگان |
عنوان انگلیسی مقاله ISI
SOX9 Transcriptionally Regulates mTOR-Induced Proliferation of Basal Cell Carcinomas
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کلمات کلیدی
4E binding proteinglioma-associated oncogene homologS6KBCNSCCND1PTCH1Gli4E-BPSCCBCCmTORCyclin D1HEKTSSS6 kinase - S6 کینازSOx - SOXv-akt murine thymoma viral oncogene homolog - v-active ویروس آنفلوانزای ویروسی ویروسی tymomaAkt - آکتItraconazole - ایتراکونازولtranscription start site - رونویسی شروع سایتbasal cell nevus syndrome - سندرم سلولهای عصبی پایهmammalian target of rapamycin - هدف پستانداران رپامایسینPatched 1 - پچ 1Basal cell carcinoma - کارسینوم سلول بازالSquamous cell carcinoma - کارسینوم سلول سنگفرشیhuman embryonic kidney - کلیه جنین انسان
موضوعات مرتبط
علوم پزشکی و سلامت
پزشکی و دندانپزشکی
امراض پوستی
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چکیده انگلیسی
Currently available smoothened targeted therapies in patients with basal cell nevus syndrome are associated with substantial tumor recurrence and clinical resistance. Strategies bypassing smoothened and/or identifying additional downstream components of the Hedgehog pathway could provide novel antitumor targets with a better therapeutic index. Sry-related high mobility group box 9 (SOX9) is a Hedgehog/glioma-associated oncogene homolog-regulated transcription factor known to be overexpressed in basal cell carcinomas (BCCs). A sequence motif search for SOX9-responsive elements identified three motifs in the promoter region of mammalian target of rapamycin (mTOR). In murine BCC cells, SOX9 occupies the mTOR promoter and induces its transcriptional activity. Short hairpin RNA (shRNA)-mediated knockdown of SOX9, as well as smoothened inhibition by itraconazole and vismodegib, reduces mTOR expression and the phosphorylation of known downstream mTOR targets. These effects culminate in diminishing the proliferative capacity of BCC cells, demonstrating a direct mechanistic link between the Hedgehog and mTOR pathways capable of driving BCC growth. Furthermore, rapamycin, a pharmacologic mTOR inhibitor, suppressed the growth of UV-induced BCCs in Ptch1+/-/SKH-1 mice, a model that closely mimics the accelerated BCC growth pattern of patients with basal cell nevus syndrome. Our data demonstrate that Hedgehog signaling converges on mTOR via SOX9, and highlight the SOX9-mTOR axis as a viable additional target downstream of smoothened that could enhance tumor elimination in patients with BCC.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Journal of Investigative Dermatology - Volume 138, Issue 8, August 2018, Pages 1716-1725
Journal: Journal of Investigative Dermatology - Volume 138, Issue 8, August 2018, Pages 1716-1725
نویسندگان
Arianna L. Kim, Jung Ho Back, Sandeep C. Chaudhary, Yucui Zhu, Mohammad Athar, David R. Bickers,
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