Melanoblast transcriptome analysis reveals pathways promoting melanoma metastasis

被引:0
|
作者
Kerrie L. Marie
Antonella Sassano
Howard H. Yang
Aleksandra M. Michalowski
Helen T. Michael
Theresa Guo
Yien Che Tsai
Allan M. Weissman
Maxwell P. Lee
Lisa M. Jenkins
M. Raza Zaidi
Eva Pérez-Guijarro
Chi-Ping Day
Kris Ylaya
Stephen M. Hewitt
Nimit L. Patel
Heinz Arnheiter
Sean Davis
Paul S. Meltzer
Glenn Merlino
Pravin J. Mishra
机构
[1] National Institutes of Health,Laboratory of Cancer Biology and Genetics, Center for Cancer Research, National Cancer Institute
[2] Johns Hopkins Medical Institutions,Department of Otolaryngology—Head and Neck Surgery, Sidney Kimmel Comprehensive Cancer Center
[3] National Cancer Institute,Laboratory of Protein Dynamics and Signaling, Center for Cancer Research
[4] National Institutes of Health,Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute
[5] Lewis Katz School of Medicine at Temple University,Fels Institute for Cancer Research and Molecular Biology
[6] National Institutes of Health,Experimental Pathology Laboratory, Center for Cancer Research, National Cancer Institute
[7] Leidos Biomedical Research Inc.,Small Animal Imaging Program, Frederick National Laboratory for Cancer Research
[8] National Institute of Health,Mammalian Development Section, National Institute of Neurological Disorders and Stroke
[9] National Institutes of Health,Genetics Branch, Center for Cancer Research, National Cancer Institute
[10] Ohio State University Comprehensive Cancer Center,James Cancer Hospital and Solove Research Institute
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Cutaneous malignant melanoma is an aggressive cancer of melanocytes with a strong propensity to metastasize. We posit that melanoma cells acquire metastatic capability by adopting an embryonic-like phenotype, and that a lineage approach would uncover metastatic melanoma biology. Using a genetically engineered mouse model to generate a rich melanoblast transcriptome dataset, we identify melanoblast-specific genes whose expression contribute to metastatic competence and derive a 43-gene signature that predicts patient survival. We identify a melanoblast gene, KDELR3, whose loss impairs experimental metastasis. In contrast, KDELR1 deficiency enhances metastasis, providing the first example of different disease etiologies within the KDELR-family of retrograde transporters. We show that KDELR3 regulates the metastasis suppressor, KAI1, and report an interaction with the E3 ubiquitin-protein ligase gp78, a regulator of KAI1 degradation. Our work demonstrates that the melanoblast transcriptome can be mined to uncover targetable pathways for melanoma therapy.
引用
收藏
相关论文
共 50 条
  • [21] The role of PRAME in promoting uveal melanoma metastasis
    Sanchez, Margaret I.
    Field, Matthew G.
    Kuznetsov, Jeffim N.
    Kurtenbach, Stefan
    Dien Pham
    Harbour, James W.
    CANCER RESEARCH, 2017, 77
  • [22] FERROPTOSIS IS INHIBITED IN LYMPH, PROMOTING METASTASIS OF MELANOMA
    Ubellacker, J. M.
    Tasdogan, A.
    Ramesh, V
    Shen, B.
    Mitchell, E. C.
    Martin-Sandoval, M. S.
    CANCER DISCOVERY, 2020, 10 (11) : 1621 - 1621
  • [23] Comparative Transcriptome Analysis of Henosepilachna vigintioctomaculata Reveals Critical Pathways during Development
    Zhang, Yu-Xing
    Wu, Yi-Kuan
    Liu, Hai-Hui
    Li, Wen-Ze
    Jin, Lin
    Li, Guo-Qing
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2024, 25 (14)
  • [24] Integrated genomic analysis reveals regulatory pathways and dynamic landscapes of the tRNA transcriptome
    Sun, Zefang
    Tan, Jia
    Zhao, Minqiong
    Peng, Qiyao
    Zhou, Mingqing
    Zuo, Shanru
    Wu, Feilong
    Li, Xueguang
    Dong, Yangyang
    Xie, Ming
    Yang, Yide
    Zhou, Junhua
    Liu, Xianghua
    He, Quanze
    He, Zuping
    Yu, Xing
    He, Quanyuan
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [25] Transcriptome Analysis in Tardigrade Species Reveals Specific Molecular Pathways for Stress Adaptations
    Foerster, Frank
    Beisser, Daniela
    Grohme, Markus A.
    Liang, Chunguang
    Mali, Brahim
    Siegl, Alexander Matthias
    Engelmann, Julia C.
    Shkumatov, Alexander V.
    Schokraie, Elham
    Mueller, Tobias
    Schnoelzer, Martina
    Schill, Ralph O.
    Frohme, Marcus
    Dandekar, Thomas
    BIOINFORMATICS AND BIOLOGY INSIGHTS, 2012, 6 : 69 - 96
  • [26] Integrated genomic analysis reveals regulatory pathways and dynamic landscapes of the tRNA transcriptome
    Zefang Sun
    Jia Tan
    Minqiong Zhao
    Qiyao Peng
    Mingqing Zhou
    Shanru Zuo
    Feilong Wu
    Xueguang Li
    Yangyang Dong
    Ming Xie
    Yide Yang
    Junhua Zhou
    Xianghua Liu
    Quanze He
    Zuping He
    Xing Yu
    Quanyuan He
    Scientific Reports, 11
  • [27] Transcriptome analysis reveals pathways facilitating the growth of tobacco powdery mildew in Arabidopsis
    Ran Li
    Ling-Li Zhang
    Xue-Mei Yang
    Xiao-Long Cao
    Ying-Ge Wang
    Xian-Feng Ma
    Viswanathan Chandran
    Jing Fan
    Hui Yang
    Jing Shang
    Ji-Qun Zhao
    Shunyuan Xiao
    Yan Li
    Wen-Ming Wang
    Phytopathology Research, 1
  • [28] Transcriptome analysis of mouse aortae reveals multiple novel pathways regulated by aging
    Gao, Ping
    Gao, Pan
    Choi, Mihyun
    Chegireddy, Kavya
    Slivano, Orazio J.
    Zhao, Jinjing
    Zhang, Wei
    Long, Xiaochun
    AGING-US, 2020, 12 (15): : 15603 - 15623
  • [29] Transcriptome analysis reveals pathways facilitating the growth of tobacco powdery mildew in Arabidopsis
    Li, Ran
    Zhang, Ling-Li
    Yang, Xue-Mei
    Cao, Xiao-Long
    Wang, Ying-Ge
    Ma, Xian-Feng
    Chandran, Viswanathan
    Fan, Jing
    Yang, Hui
    Shang, Jing
    Zhao, Ji-Qun
    Xiao, Shunyuan
    Li, Yan
    Wang, Wen-Ming
    PHYTOPATHOLOGY RESEARCH, 2019, 1 (01)
  • [30] Transcriptome analysis reveals key genes and pathways for prickle development in Zanthoxylum armatum
    Wang, Yi
    Jiang, Yuhui
    Feng, Fayu
    Guo, Yongqing
    Hao, Jiabo
    Huyan, Li
    Du, Chunhua
    Xu, Liang
    Lu, Bin
    HELIYON, 2024, 10 (05)