Nras Q61R/+ and Kras −/− cooperate to downregulate Rasgrp1 and promote lympho-myeloid leukemia in early T-cell precursors

Author:

Wen Zhi1,Yun Grant12,Hebert Alexander3,Kong Guangyao1ORCID,Ranheim Erik A.4,Finn Remington12,Rajagoplan Adhithi15,Li Shuyi1,Zhou Yun1,Yu Mei6,Damnernsawad Alisa1,Roose Jeroen P.7ORCID,Coon Joshua J.389,Wen Renren6,Wang Demin6,Zhang Jing1

Affiliation:

1. McArdle Laboratory for Cancer Research,

2. Department of Biochemistry, and

3. National Center for Quantitative Biology of Complex Systems, University of Wisconsin–Madison, Madison, WI;

4. Department of Pathology & Laboratory Medicine, University of Wisconsin School of Medicine and Public Health, University of Wisconsin Carbone Cancer Center, Madison, WI;

5. Cellular and Molecular Biology Program, University of Wisconsin–Madison, Madison, WI;

6. Blood Research Institute, Versiti, Milwaukee, WI;

7. Department of Anatomy, University of California–San Francisco, San Francisco, CA; and

8. Department of Biomolecular Chemistry and

9. Department of Chemistry, University of Wisconsin–Madison, Madison, WI

Abstract

Abstract Early T-cell precursor acute lymphoblastic leukemia (ETP-ALL) is an aggressive subtype of T-cell ALL. Although genetic mutations hyperactivating cytokine receptor/Ras signaling are prevalent in ETP-ALL, it remains unknown how activated Ras signaling contributes to ETP-ALL. Here, we find that in addition to the frequent oncogenic RAS mutations, wild-type (WT) KRAS transcript level was significantly downregulated in human ETP-ALL cells. Similarly, loss of WT Kras in NrasQ61R/+ mice promoted hyperactivation of extracellular signal-regulated kinase (ERK) signaling, thymocyte hyperproliferation, and expansion of the ETP compartment. Kras−/−; NrasQ61R/+ mice developed early onset of T-cell malignancy that recapitulates many biological and molecular features of human ETP-ALL. Mechanistically, RNA-sequencing analysis and quantitative proteomics study identified that Rasgrp1, a Ras guanine nucleotide exchange factor, was greatly downregulated in mouse and human ETP-ALL. Unexpectedly, hyperactivated Nras/ERK signaling suppressed Rasgrp1 expression and reduced Rasgrp1 level led to increased ERK signaling, thereby establishing a positive feedback loop to augment Nras/ERK signaling and promote cell proliferation. Corroborating our cell line data, Rasgrp1 haploinsufficiency induced Rasgrp1 downregulation and increased phosphorylated ERK level and ETP expansion in NrasQ61R/+ mice. Our study identifies Rasgrp1 as a negative regulator of Ras/ERK signaling in oncogenic Nras-driven ETP-like leukemia.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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