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Cell villages and Dirichlet modeling map human cell fitness genetics

delete2026-08-03
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OA
AI
C
Chloe Hanson
T
Timothy Derebenskiy
A
Ana Rodriguez Vega
Y
Yashika S. Kamte
R
Rachel Fox
L
Laila Sathe
H
Hannah Lambing
T
Tyler E Dietterich
D
Derek Hawes
R
Ralda Nehme
O
Olli Pietiläinen
A
Aarno Palotie
P
Patrick Allard
H
Harold Pimentel *
M
Michael F. Wells *
DOI:10.1016/j.ajhg.2026.07.005delete
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Abstract

Abstract

En 中文
The capacity of cells to proliferate and survive is central to development and disease. Assays that measure cell fitness are therefore a cornerstone of biology, but traditional techniques lack donor diversity and have high technical variability that impedes scale and reproducibility. To overcome these barriers, we designed and validated a “cell village”-based fitness screening approach using pooled cultures of 12–39 genetically distinct human neural progenitor cell (NPC) lines. We also developed Townlet to establish a foundational statistical framework based on Dirichlet regression for analyzing proportional data from cell villages. Applying these systems, we identified hyperproliferation in NPCs harboring the autism risk factor chromosome 16p11.2 deletion, mapped common genetic variants near ZFHX3 associated with NPC proliferation rate, and discovered genetic modifiers of lead (Pb) sensitivity implicating ARNT2. Together, these experimental and analytical tools advance a scalable, genetically diverse in vitro platform for dissecting human variation in cell fitness and gene-environment interactions.
Keywords:
cell village
Dirichlet model
cell fitness
neurotoxicity
GWAS-in-a-dish
neural progenitor cells
16p11.2 deletion
ZFHX3
ARNT2
gene-environment interaction

Journal

American Journal of Human Genetics cover
American Journal of Human Genetics
IF:
8.1
Papers:
7.2K
Citations:
3.7W

Organization

B
Broad Institute of MIT and Harvard
Scholars:
1.2K
Papers: 316
Citations: 0
U
university of california, los angeles
Scholars:
524
Papers: 174
Citations: 0
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