FoxO1-GAB1 axis regulates homing capacity and tonic AKT activity in chronic lymphocytic leukemia

Author:

Seda Vaclav12ORCID,Vojackova Eva1ORCID,Ondrisova Laura12,Kostalova Lenka12,Sharma Sonali1ORCID,Loja Tomas1ORCID,Mladonicka Pavlasova Gabriela12,Zicha Daniel3ORCID,Kudlickova Peskova Marie4ORCID,Krivanek Jan5ORCID,Liskova Kvetoslava6,Kren Leos6,Benes Vladimir7ORCID,Musilova Litzmanova Katerina12,Borsky Marek2ORCID,Oppelt Jan1ORCID,Verner Jan2,Pospisilova Sarka2ORCID,Brychtova Yvona2,Panovska Anna2,Tan Zhi8,Zhang Shuxing8ORCID,Doubek Michael2,Amruz Cerna Katerina12,Mayer Jiri2,Mraz Marek12ORCID

Affiliation:

1. Molecular Medicine, CEITEC Masaryk University, and

2. Department of Internal Medicine, Hematology and Oncology, University Hospital Brno and Faculty of Medicine, Masaryk University, Brno, Czech Republic;

3. Experimental Biophotonics, CEITEC University of Technology, Brno, Czech Republic;

4. Centre for Neuroscience, CEITEC Masaryk University, Brno, Czech Republic;

5. Department of Histology and Embryology, Faculty of Medicine, and

6. Department of Pathology, University Hospital Brno and Faculty of Medicine, Masaryk University, Brno, Czech Republic;

7. Genomics Core Facility, EMBL (European Molecular Biology Laboratory), Heidelberg, Germany; and

8. Department of Experimental Therapeutics, The University of Texas MD Anderson Cancer Center, Houston, TX

Abstract

Abstract Recirculation of chronic lymphocytic leukemia (CLL) cells between the peripheral blood and lymphoid niches plays a critical role in disease pathophysiology, and inhibiting this process is one of the major mechanisms of action for B-cell receptor (BCR) inhibitors such as ibrutinib and idelalisib. Migration is a complex process guided by chemokine receptors and integrins. However, it remains largely unknown how CLL cells integrate multiple migratory signals while balancing survival in the peripheral blood and the decision to return to immune niches. Our study provided evidence that CXCR4/CD5 intraclonal subpopulations can be used to study the regulation of migration of CLL cells. We performed RNA profiling of CXCR4dimCD5bright vs CXCR4brightCD5dim CLL cells and identified differential expression of dozens of molecules with a putative function in cell migration. GRB2–associated binding protein 1 (GAB1) positively regulated CLL cell homing capacity of CXCR4brightCD5dim cells. Gradual GAB1 accumulation in CLL cells outside immune niches was mediated by FoxO1-induced transcriptional GAB1 activation. Upregulation of GAB1 also played an important role in maintaining basal phosphatidylinositol 3-kinase (PI3K) activity and the “tonic” AKT phosphorylation required to sustain the survival of resting CLL B cells. This finding is important during ibrutinib therapy, because CLL cells induce the FoxO1-GAB1-pAKT axis, which represents an adaptation mechanism to the inability to home to immune niches. We have demonstrated that GAB1 can be targeted therapeutically by novel GAB1 inhibitors, alone or in combination with BTK inhibition. GAB1 inhibitors induce CLL cell apoptosis, impair cell migration, inhibit tonic or BCR-induced AKT phosphorylation, and block compensatory AKT activity during ibrutinib therapy.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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