Spontaneous Tumor Regression in Tasmanian Devils Associated with RASL11A Activation
Author(s) -
Mark J. Margres,
Manuel RuizAravena,
Rodrigo Hamede,
Kusum Chawla,
Austin H. Patton,
Matthew Lawrance,
Alexandra K. Fraik,
Amanda R. Stahlke,
Brian W. Davis,
Elaine A. Ostrander,
Menna E. Jones,
Hamish McCallum,
Patrick J. Paddison,
Paul A. Hohenlohe,
David M. Hockenbery,
Andrew Storfer
Publication year - 2020
Publication title -
genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.792
H-Index - 246
eISSN - 1943-2631
pISSN - 0016-6731
DOI - 10.1534/genetics.120.303428
Subject(s) - biology , regression , genetics , regression analysis , disease , cancer , evolutionary biology , medicine , statistics , psychology , psychoanalysis , mathematics
Spontaneous tumor regression has been documented in a small proportion of human cancer patients, but the specific mechanisms underlying tumor regression without treatment are not well understood. Tasmanian devils are threatened with extinction from a transmissible cancer due to universal susceptibility and a near 100% case fatality rate. In over 10,000 cases, <20 instances of natural tumor regression have been detected. Previous work in this system has focused on Tasmanian devil genetic variation associated with the regression phenotype. Here, we used comparative and functional genomics to identify tumor genetic variation associated with tumor regression. We show that a single point mutation in the 5' untranslated region of the putative tumor suppressor RASL11A significantly contributes to tumor regression. RASL11A was expressed in regressed tumors but silenced in wild-type, nonregressed tumors, consistent with RASL11A downregulation in human cancers. Induced RASL11A expression significantly reduced tumor cell proliferation in vitro The RAS pathway is frequently altered in human cancers, and RASL11A activation may provide a therapeutic treatment option for Tasmanian devils as well as a general mechanism for tumor inhibition.
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