Investigator

Alexander J.R. Bishop

Adjunct Professor · The University of Texas Health Science Center at San Antonio, Cell Systems and Anatomy

About

AJBAlexander J.R. Bi…
Papers(1)
SMARCA4 Loss Increase…
Collaborators(10)
Alica ValachováAmber YasmeenAnie MonastAzadeh ArabzadehBrian RaughtDavid HuntsmanDouglas A. LevineElise GraulichGeneviève MorinGiulio Aceto
Institutions(5)
Unknown InstitutionMcgill UniversityUniversity Health Net…University Of British…Merck Research Labora…

Papers

SMARCA4 Loss Increases RNA Polymerase II Pausing and Elevates R-Loops to Inhibit BRCA1-Mediated Repair in Ovarian Cancer

Abstract Small cell carcinoma of the ovary, hypercalcemic type (SCCOHT) is a rare, aggressive cancer affecting young women driven by inactivating mutations in SMARCA4, a key SWI/SNF chromatin remodeling gene. To uncover its druggable vulnerabilities, we performed a compound screen and found that SCCOHT cells and tumors were sensitive to PARP inhibitors. Paradoxically, SCCOHT displayed BRCA-deficient traits despite retaining wild-type BRCA1 expression. Elevated R-loop in SCCOHT sequestered BRCA1, limiting its availability for DNA damage repair. Proximity-dependent biotin identification revealed that wild-type SMARCA4, but not its pathogenic variants, promoted RNA polymerase II (Pol II) elongation by mediating the assembly of the polymerase-associated factor 1 complex. Thus, SMARCA4 loss increased Pol II pausing, resulting in elevated R-loops and BRCA1 redistribution. The suppression of BRCA1 activity sensitized SMARCA4-deficient SCCOHT cells and tumors to PARP inhibitors, which was further enhanced by the addition of a CDK9 inhibitor targeting Pol II elongation. Cotargeting PARP/CDK9 also elicited synergistic effects against other undifferentiated ovarian cancer cells with SMARCA4 loss. These findings link SMARCA4 loss to perturbed Pol II elongation and compromised DNA repair by BRCA1, providing a therapeutic opportunity to target SCCOHT and other SWI/SNF-deficient ovarian cancers. Significance: Pol II stalling induced by SMARCA4 loss leads to R-loop accumulation that sequesters BRCA1 to transcription complexes, underlying the sensitivity of SMARCA4-deficient ovarian cancers to inhibitors targeting PARPs and Pol II elongation.

75Works
1Papers
31Collaborators
Cell Line, TumorOvarian NeoplasmsXenograft Model Antitumor AssaysNeoplasms

Positions

2025–

Adjunct Professor

The University of Texas Health Science Center at San Antonio · Cell Systems and Anatomy

2025–

Professor

The Ohio State University · Pediatrics

2025–

Director

Nationwide Children's Hospital · Center for Childhood Cancer Research

2025–

Principal Investigator

Nationwide Children's Hospital · Center for Childhood Cancer Research

2021–

Professor

The University of Texas Health Science Center at San Antonio · Cell Systems and Anatomy

2004–

Principal Investigator

The University of Texas Health Science Center at San Antonio · Greehey Children's Cancer Research Institute

2012–

Associate Professor

University of Texas Health Science Center at San Antonio · Cell Systems and Anatomy

2005–

Assistant Professor

The University of Texas Health Science Center at San Antonio · Cellular and Structural Biology

2004–

Research Assistant Professor

The University of Texas Health Science Center at San Antonio · Cellular and Structural Biology

Education

1997

DPhil

University of Oxford · Clinical Medicine

1993

BSc (Hons)

University of Leicester

Country

US

Links & IDs
0000-0002-5742-4387

Scopus: 28767461100

Researcher Id: OUH-8369-2025