| Literature DB >> 33602789 |
Zhiwei Dong1, Kok Siong Yeo1, Gonzalo Lopez2, Cheng Zhang3, Erin N Dankert Eggum1, Jo Lynne Rokita4,5,6, Choong Yong Ung3, Taylor M Levee1, Zuag Paj Her1, Cassie J Howe1, Xiaonan Hou7, Janine H van Ree1, Shuai Li1, Shuning He8, Ting Tao9, Karen Fritchie10, Jorge Torres-Mora10, Julia S Lehman11, Alexander Meves11, Gina L Razidlo1, Komal S Rathi4,5, S John Weroha7, A Thomas Look8, Jan M van Deursen1, Hu Li3, Jennifer J Westendorf1,12, John M Maris5,13,14, Shizhen Zhu15,3.
Abstract
One of the greatest barriers to curative treatment of neuroblastoma is its frequent metastatic outgrowth prior to diagnosis, especially in cases driven by amplification of the MYCN oncogene. However, only a limited number of regulatory proteins that contribute to this complex MYCN-mediated process have been elucidated. Here we show that the growth arrest-specific 7 (GAS7) gene, located at chromosome band 17p13.1, is preferentially deleted in high-risk MYCN-driven neuroblastoma. GAS7 expression was also suppressed in MYCN-amplified neuroblastoma lacking 17p deletion. GAS7 deficiency led to accelerated metastasis in both zebrafish and mammalian models of neuroblastoma with overexpression or amplification of MYCN. Analysis of expression profiles and the ultrastructure of zebrafish neuroblastoma tumors with MYCN overexpression identified that GAS7 deficiency led to (i) downregulation of genes involved in cell-cell interaction, (ii) loss of contact among tumor cells as critical determinants of accelerated metastasis, and (iii) increased levels of MYCN protein. These results provide the first genetic evidence that GAS7 depletion is a critical early step in the cascade of events culminating in neuroblastoma metastasis in the context of MYCN overexpression. SIGNIFICANCE: Heterozygous deletion or MYCN-mediated repression of GAS7 in neuroblastoma releases an important brake on tumor cell dispersion and migration to distant sites, providing a novel mechanism underlying tumor metastasis in MYCN-driven neuroblastoma.See related commentary by Menard, p. 2815. ©2021 American Association for Cancer Research.Entities:
Mesh:
Substances:
Year: 2021 PMID: 33602789 PMCID: PMC8178188 DOI: 10.1158/0008-5472.CAN-20-1890
Source DB: PubMed Journal: Cancer Res ISSN: 0008-5472 Impact factor: 13.312