Genome-wide association study of cocaine self-administration behavior in Heterogeneous Stock rats

M Montana Kay Lara L Lieselot L. G. Carrette T Thiago Missfeldt Sanches O Oksana Polesskaya A Alicia Avelar A Angela Beeson H Hassiba Beldjoud B Brent Boomhower M Molly Brennan D Denghui Chen R Riyan Cheng L Lindsey China A Apurva S. Chitre D Dana Elizabeth Conlisk M McKenzie Fannon B Benjamin B. Johnson E Elaine Keung A Adam Kimbrough J Jenni Kononoff A Angelica Renee Martinez L Lisa Maturin K Khai-Minh Nguyen A Alex Morgan J Joseph Mosquera D Dyar Othman S Sonja L. Plasil J Jarryd Ramborger P Paul Schweitzer S Sharona Sedighim O Osborne Seshie K Kokila Shankar B Benjamin Sichel S Sierra Simpson L Lauren Cassandra Smith E Elizabeth A. Sneddon L Lani Tieu N Nathan Velarde S Selene Zahedi L Leah C. Solberg Woods M Marsida Kallupi G Giordano de Guglielmo A Abraham A. Palmer O Olivier George

Abstract

Abstract Cocaine use disorder (CUD) is a major public health crisis. The specific genes mediating CUD remain largely unknown. We conducted a genome-wide association study (GWAS) using outbred N/NIH Heterogeneous Stock (HS; n  = 836, female = 415, male = 421) rats. We examined CUD-related phenotypes including acquisition of self-administration, escalation of intake, and compulsive-like responding. These traits were phenotypically correlated and exhibited modest SNP heritability (h 2  = 0.07 – 0.16). We identified six genome-wide significant associations (>-log 10 (p)=5.58; α = 0.05 by permutation). One locus on chromosome 19 was associated with variable time between cocaine infusions (post infusion interval) and contains several carboxylesterase genes that are orthologous to the human CES1 gene. Notably, carboxylesterases metabolize cocaine. Three non-synonymous coding variants in Ces1c and Ces1d were in perfect linkage disequilibrium with this locus. The other five loci contained promising coding and expression variants, including Trak2 , a gene previously associated with CUD in human GWAS and Slc10a7 , Plcl1 , and Satb2 which have been associated with alcohol and tobacco use disorder. This is the largest genetic study of cocaine self-administration ever conducted in rats. Our results replicate previous loci associated with CUD in humans and provide several novel biological insights including the potential of pharmacological strategies targeting carboxylesterases.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 11, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (43)

M

Montana Kay Lara

L

Lieselot L. G. Carrette

T

Thiago Missfeldt Sanches

O

Oksana Polesskaya

A

Alicia Avelar

A

Angela Beeson

H

Hassiba Beldjoud

B

Brent Boomhower

M

Molly Brennan

D

Denghui Chen

R

Riyan Cheng

L

Lindsey China

A

Apurva S. Chitre

D

Dana Elizabeth Conlisk

M

McKenzie Fannon

B

Benjamin B. Johnson

E

Elaine Keung

A

Adam Kimbrough

J

Jenni Kononoff

A

Angelica Renee Martinez

L

Lisa Maturin

K

Khai-Minh Nguyen

A

Alex Morgan

J

Joseph Mosquera

D

Dyar Othman

S

Sonja L. Plasil

J

Jarryd Ramborger

P

Paul Schweitzer

S

Sharona Sedighim

O

Osborne Seshie

K

Kokila Shankar

B

Benjamin Sichel

S

Sierra Simpson

L

Lauren Cassandra Smith

E

Elizabeth A. Sneddon

L

Lani Tieu

N

Nathan Velarde

S

Selene Zahedi

L

Leah C. Solberg Woods

M

Marsida Kallupi

G

Giordano de Guglielmo

A

Abraham A. Palmer

O

Olivier George