Full Professor(heuristic)

CRISPR and Genetic Engineering · Molecular Biology

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h-index35
i10-index50
Publications100
Citations10,790

Grants

6 total · 2 active

NIH #R01HD111256

Regulation of DNA methylation by TETs and QSER1

Active
Amount
$600K–$700K
Period
2022-09-222027-08-31
PIs
2

Awarded at WEILL MEDICAL COLL OF CORNELL UNIV

NIH #UM1HG012654

Center for scalable knockout and multimodal phenotyping in genetically diverse human genomes

Active
Amount
$1M–$2M
Period
2022-08-152027-05-31
PIs
2

Awarded at SLOAN-KETTERING INST CAN RESEARCH

NIH #U01HG012051

Genomic control of gene regulatory networks governing early human lineage decisions

Amount
$1M–$2M
Period
2021-08-192026-05-31
PIs
3

Awarded at SLOAN-KETTERING INST CAN RESEARCH

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All Grants

6 total · 2 active

NIH #R01HD111256

Regulation of DNA methylation by TETs and QSER1

Active
Amount
$600K–$700K
Period
2022-09-222027-08-31
PIs
2

Awarded at WEILL MEDICAL COLL OF CORNELL UNIV

NIH #UM1HG012654

Center for scalable knockout and multimodal phenotyping in genetically diverse human genomes

Active
Amount
$1M–$2M
Period
2022-08-152027-05-31
PIs
2

Awarded at SLOAN-KETTERING INST CAN RESEARCH

NIH #U01HG012051

Genomic control of gene regulatory networks governing early human lineage decisions

Amount
$1M–$2M
Period
2021-08-192026-05-31
PIs
3

Awarded at SLOAN-KETTERING INST CAN RESEARCH

NIH #U01DK128852

Discovery of diabetes-relevant β cell enhancers through 4D enhancer mapping, integrative analysis, and large-scale CRISPRi perturbation screens

Amount
$700K–$800K
Period
2020-09-152025-06-30
PIs
3

Awarded at SLOAN-KETTERING INST CAN RESEARCH

NIH #R01DK096239

Understanding human pancreas development for diabetes cell-replacement therapy

Amount
$500K–$600K
Period
2012-07-012023-07-31
PIs
1

Awarded at SLOAN-KETTERING INST CAN RESEARCH

NIH #R01HD035455

Genetic Analysis of Morphogenesis in the Mouse Embryo

Amount
$600K–$700K
Period
1998-07-012023-07-31
PIs
3

Awarded at SLOAN-KETTERING INST CAN RESEARCH

Recent Public Signals

  1. New preprint: A dish-to-biobank framework links β-cell nutrient-stress programs to genetic and dietary risk for Type 2 Diabetes2026-06-16
  2. New paper: Human DICER1 hotspot mutation induces both loss and gain of miRNA function (Nature Structural & Molecular Biology)2025-11-04
  3. New NIH award: Regulation of DNA methylation by TETs and QSER12022-09-22

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Data Freshness

  • Publications as of 2026-07-09
  • Grants as of 2026-08-30

Data may not be current

Find elsewhere

ORCID: 0000-0002-1145-6199

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