Investigator

Mallikarjun Bidarimath

Scientist · U.S. Food and Drug Administration, Division of Systems Biology

About

MBMallikarjun Bidar…
Papers(1)
Cells expressing PAX8…
Collaborators(4)
Alexander Yu NikitinAndrea Flesken-NikitinAndrea J. De MicheliBenjamin D. Cosgrove
Institutions(1)
Cornell University

Papers

Cells expressing PAX8 are the main source of homeostatic regeneration of adult mouse endometrial epithelium and give rise to serous endometrial carcinoma

ABSTRACT Humans and mice have cyclical regeneration of the endometrial epithelium. It is expected that such regeneration is ensured by tissue stem cells, but their location and hierarchy remain debatable. A number of recent studies have suggested the presence of stem cells in the mouse endometrial epithelium. At the same time, it has been reported that this tissue can be regenerated by stem cells of stromal/mesenchymal or bone marrow cell origin. Here, we describe a single-cell transcriptomic atlas of the main cell types of the mouse uterus and epithelial subset transcriptome and evaluate the contribution of epithelial cells expressing the transcription factor PAX8 to the homeostatic regeneration and malignant transformation of adult endometrial epithelium. According to lineage tracing, PAX8+ epithelial cells are responsible for long-term maintenance of both luminal and glandular epithelium. Furthermore, multicolor tracing shows that individual glands and contiguous areas of luminal epithelium are formed by clonal cell expansion. Inactivation of the tumor suppressor genes Trp53 and Rb1 in PAX8+ cells, but not in FOXJ1+ cells, leads to the formation of neoplasms with features of serous endometrial carcinoma, one of the most aggressive types of human endometrial malignancies. Taken together, our results show that the progeny of single PAX8+ cells represents the main source of regeneration of the adult endometrial epithelium. They also provide direct experimental genetic evidence for the key roles of the P53 and RB pathways in the pathogenesis of serous endometrial carcinoma and suggest that PAX8+ cells represent the cell of origin of this neoplasm.

35Works
1Papers
4Collaborators

Positions

2021–

Scientist

U.S. Food and Drug Administration · Division of Systems Biology

2016–

Postdoctoral Research Associate (Experimental Pathology)

Cornell University College of Veterinary Medicine · Cornell Stem Cell Program, Department of Biomedical Sciences

2006–

Veterinarian (Mixed animal Practice)

Department of Animal Husbandry and Veterinary Services · Veterinary Medicine

2006–

Lecturer

Veterinary College Bangalore · Veterinary Biochemistry

Education

2016

Doctor of Philosophy (Reproductive & Developmental Sciences)

Queens University Faculty of Education · Department of Biomedical and Molecular Sciences

2012

MSc (Reproductive Biology)

Dalhousie University

2006

MVSc

National Dairy Research Institute

2003

Bachelor of Veterinary Science

Veterinary College Bangalore

Country

US

Keywords
PregnancypigmiRNAsExosomesEmbryo lossDairy CowsreproductionImmunologyoncologycompa
Links & IDs
0000-0002-9080-8737ResearchgateGoogle Scholar

Scopus: 23488142100

Researcher Id: L-2874-2017