The folliculin-FNIP1 pathway deleted in human Birt-Hogg-Dubé syndrome is required for murine B-cell development

Author:

Baba Masaya1,Keller Jonathan R.2,Sun Hong-Wei3,Resch Wolfgang4,Kuchen Stefan4,Suh Hyung Chan2,Hasumi Hisashi1,Hasumi Yukiko1,Kieffer-Kwon Kyong-Rim4,Gonzalez Carme Gallego5,Hughes Robert M.1,Klein Mara E.1,Oh Hyoungbin F.1,Bible Paul3,Southon Eileen6,Tessarollo Lino7,Schmidt Laura S.16,Linehan W. Marston1,Casellas Rafael48

Affiliation:

1. Urologic Oncology Branch, National Cancer Institute (NCI), National Institutes of Health (NIH), Bethesda, MD;

2. Laboratory of Cancer Prevention, NCI, NIH, Frederick, MD;

3. Biodata Mining and Discovery Section, National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS), NIH, Bethesda, MD;

4. Genomics & Immunity, NIAMS, NCI, NIH, Bethesda, MD;

5. Institut de Biologia Molecular de Barcelona, Barcelona, Spain;

6. Basic Science Program, SAIC-Frederick, NCI-Frederick, Frederick, MD;

7. Mouse Cancer Genetics Program, Center for Cancer, NCI-Frederick, Frederick, MD; and

8. Center for Cancer Research, NCI, NIH, Bethesda, MD

Abstract

Abstract Birt-Hogg-Dubé (BHD) syndrome is an autosomal dominant disorder characterized by cutaneous fibrofolliculomas, pulmonary cysts, and kidney malignancies. Affected individuals carry germ line mutations in folliculin (FLCN), a tumor suppressor gene that becomes biallelically inactivated in kidney tumors by second-hit mutations. Similar to other factors implicated in kidney cancer, FLCN has been shown to modulate activation of mammalian target of rapamycin (mTOR). However, its precise in vivo function is largely unknown because germ line deletion of Flcn results in early embryonic lethality in animal models. Here, we describe mice deficient in the newly characterized folliculin-interacting protein 1 (Fnip1). In contrast to Flcn, Fnip1−/− mice develop normally, are not susceptible to kidney neoplasia, but display a striking pro-B cell block that is entirely independent of mTOR activity. We show that this developmental arrest results from rapid caspase-induced pre-B cell death, and that a Bcl2 transgene reconstitutes mature B-cell populations, respectively. We also demonstrate that conditional deletion of Flcn recapitulates the pro-B cell arrest of Fnip1−/− mice. Our studies thus demonstrate that the FLCN-FNIP complex deregulated in BHD syndrome is absolutely required for B-cell differentiation, and that it functions through both mTOR-dependent and independent pathways.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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