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Oncogenic RABL6A promotes NF1-associated MPNST progression in vivo
Jordan L Kohlmeyer1,2, Courtney A Kaemmer2, Joshua J Lingo3
1Molecular Medicine Graduate Program, The University of Iowa, Iowa City, Iowa, USA.
Background:
Malignant peripheral nerve sheath tumors (MPNSTs) are aggressive sarcomas with complex molecular and genetic alterations. Powerful tumor suppressors CDKN2A and TP53 are commonly disrupted along with NF1, a gene that encodes a negative regulator of Ras. Many additional factors have been implicated in MPNST pathogenesis. A greater understanding of critical drivers of MPNSTs is needed to guide more informed targeted therapies for patients. RABL6A is a newly identified driver of MPNST cell survival and proliferation whose in vivo role in the disease is unknown.
Methods:
Using CRISPR-Cas9 targeting of Nf1 + Cdkn2a or Nf1 + Tp53 in the mouse sciatic nerve to form de novo MPNSTs, we investigated the biological significance of RABL6A in MPNST development. Terminal tumors were evaluated by western blot, qRT-PCR, and immunohistochemistry.
Results:
Mice lacking Rabl6 displayed slower tumor progression and extended survival relative to wildtype animals in both genetic contexts. YAP oncogenic activity was selectively downregulated in Rabl6-null, Nf1 + Cdkn2a lesions whereas loss of RABL6A caused upregulation of the CDK inhibitor, p27, in all tumors. Paradoxically, both models displayed elevated Myc protein and Ki67 staining in terminal tumors lacking RABL6A. In Nf1 + p53 tumors, cellular atypia and polyploidy were evident and increased by RABL6A loss.
Conclusions:
These findings demonstrate that RABL6A is required for optimal progression of NF1 mutant MPNSTs in vivo in both Cdkn2a and p53 inactivated settings. However, sustained RABL6A loss may provide selective pressure for unwanted alterations, including increased Myc, cellular atypia, and polyploidy, that ultimately promote a hyper-proliferative tumor phenotype akin to drug-resistant lesions.
Insights
RABL6A is crucial for malignant peripheral nerve sheath tumor (MPNST) progression in mice. Its loss slows tumor growth but can paradoxically increase cellular atypia and promote drug resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Malignant peripheral nerve sheath tumors (MPNSTs) are aggressive sarcomas with complex genetic alterations, often involving tumor suppressors like CDKN2A, TP53, and NF1.
- Understanding MPNST drivers is crucial for developing targeted therapies.
- RABL6A's role in MPNST pathogenesis and in vivo significance remained largely unknown.
Purpose of the Study:
- To investigate the biological significance of RABL6A in MPNST development using a mouse model.
- To determine the in vivo role of RABL6A in MPNST progression and survival.
Main Methods:
- CRISPR-Cas9 targeting of Nf1 + Cdkn2a or Nf1 + Tp53 in mouse sciatic nerves to induce de novo MPNSTs.
- Evaluation of terminal tumors using western blot, qRT-PCR, and immunohistochemistry.
Main Results:
- Mice lacking Rabl6 exhibited slower tumor progression and extended survival.
- Rabl6 loss downregulated YAP oncogenic activity in Nf1 + Cdkn2a lesions and upregulated p27 in all tumors.
- Paradoxically, Rabl6 loss led to elevated Myc and Ki67, increased cellular atypia, and polyploidy in Nf1 + p53 tumors.
Conclusions:
- RABL6A is essential for optimal progression of NF1-mutant MPNSTs in vivo, regardless of CDKN2A or TP53 status.
- Sustained RABL6A loss can exert selective pressure, leading to alterations like increased Myc and cellular atypia, potentially promoting a hyper-proliferative, drug-resistant phenotype.
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