Full Professor(heuristic)

Genetic factors in colorectal cancer · Pathology and Forensic Medicine

Compare more Pathology and Forensic Medicine professors.

h-index67
i10-index132
Publications247
Citations15,560

Grants

7 total · 2 active

NIH #R01CA300091

MTAP-MAT2A synthetic-lethality induced by transition state analogs

Active
Amount
$600K–$700K
Period
2026-05-012031-04-30
PIs
3

NIH #P30CA013330

Animal Model Shared Resource

Active
Amount
$300K–$400K
Period
1997-06-012028-06-30
PIs
1

NIH #R01CA248536

Analyzing the Hypersensitivity of MMR-deficient Colorectal Cancers to mTOR Inhibition and the Response of Cancer Stem Cells

Amount
$400K–$500K
Period
2021-04-012026-03-31
PIs
1

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All Grants

7 total · 2 active

NIH #R01CA300091

MTAP-MAT2A synthetic-lethality induced by transition state analogs

Active
Amount
$600K–$700K
Period
2026-05-012031-04-30
PIs
3

NIH #P30CA013330

Animal Model Shared Resource

Active
Amount
$300K–$400K
Period
1997-06-012028-06-30
PIs
1

NIH #R01CA248536

Analyzing the Hypersensitivity of MMR-deficient Colorectal Cancers to mTOR Inhibition and the Response of Cancer Stem Cells

Amount
$400K–$500K
Period
2021-04-012026-03-31
PIs
1

NIH #R01CA222358

Genetic and Dietary Interactions in MMR Deficient Colon Tumorigenesis

Amount
$600K–$700K
Period
2018-07-052023-05-31
PIs
2

NIH #R21ES019966

Identifying Conserved Genetic Networks for Eukaryotic MMR Genes

Amount
$200K–$300K
Period
2011-04-012013-03-31
PIs
1

NIH #R01CA076329

DNA mismatch repair and cancer in murine models

Amount
$300K–$400K
Period
1997-12-012013-01-31
PIs
1

NIH #R01CA093484

The Role of Late MMR Proteins in DNA Repair and Cancer

Amount
$300K–$400K
Period
2002-01-012012-05-31
PIs
1

Recent Public Signals

  1. New preprint: A mammalian-specific domain of MSH5 drives the transition from crossover licensing to designation during meiotic prophase I2026-06-18
  2. New NIH award: MTAP-MAT2A synthetic-lethality induced by transition state analogs2026-05-01
  3. New paper: DNA2 and MSH2 cooperatively repair stabilized G4 and allow efficient telomere replication (Nature Communications)2025-09-26

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Data Freshness

  • Publications as of 2026-07-09
  • Grants as of 2026-08-26

Data may not be current

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ORCID: 0000-0001-6958-9894

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