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GREGoR: accelerating genomics for rare diseases

delete2025-11-12
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PRE
AI
M
Moez Dawood *
B
Ben Heavner
M
Marsha M. Wheeler
R
Rachel A. Ungar
J
Jonathan LoTempio
L
Laurens Wiel
S
Seth Berger
J
Jonathan A. Bernstein
J
Jessica X. Chong
E
Emmanuèle C. Délot
E
Evan E. Eichler
J
James R. Lupski
A
Ali Shojaie
M
Michael E. Talkowski
A
Alex H. Wagner
C
Chia‐Lin Wei
M
Matthew T. Wheeler
C
Claudia M. B. Carvalho
R
Richard A. Gibbs
C
Casey A. Gifford
S
Susanne May
D
Danny E. Miller
H
Heidi L. Rehm
K
Kaitlin E. Samocha
F
Fritz J. Sedlazeck
E
Eric Vilain
A
Anne O’Donnell‐Luria
J
Jennifer E. Posey
L
Lisa H. Chadwick
M
Michael J. Bamshad
S
Stephen B. Montgomery
DOI:10.1038/s41586-025-09613-8delete
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Abstract

Abstract

En 中文
Rare diseases are collectively common, affecting approximately 1 in 20 individuals worldwide. In recent years, rapid progress has been made in rare disease diagnostics due to advances in next-generation sequencing, development of new computational and functional genomics approaches to prioritize genes and variants and increased global sharing of clinical and genetic data. However, more than half of individuals suspected to have a rare disease lack a genetic diagnosis. The Genomics Research to Elucidate the Genetics of Rare Diseases (GREGoR) Consortium was initiated to study thousands of challenging rare disease cases and families and apply, standardize and evaluate emerging genomics technologies and analytics to accelerate their adoption in clinical practice. Furthermore, all data generated, currently representing over 7,500 individuals from over 3,000 families, are rapidly made available to researchers worldwide through the Analysis, Visualization and Informatics Lab-space (AnVIL) to catalyse global efforts to develop approaches for genetic diagnoses in rare diseases. Most of these families have undergone previous clinical genetic testing but remained unsolved, with most being exome-negative. Here we describe the collaborative research framework, datasets and discoveries comprising GREGoR that will provide foundational resources and substrates for the future of rare disease genomics. The GREGoR consortium provides foundational resources and substrates for the future of rare disease genomics.
Keywords:
rare diseases
genomics
next-generation sequencing
genetic diagnosis
data sharing

Journal

Nature cover
Nature
IF:
48.5
Papers:
1.8W
Citations:
96.5W

Organization

M
Massachusetts General Hospital
Scholars:
3.4W
Papers: 2.6W
Citations: 8.6W
P
pacific northwest research institute
Scholars:
10
Papers: 6
Citations: 0
U
University of Washington
Scholars:
8.0W
Papers: 7.0W
Citations: 12.5W
S
Stanford University
Scholars:
9.6W
Papers: 8.2W
Citations: 17.0W
B
Baylor College of Medicine
Scholars:
4.1W
Papers: 3.0W
Citations: 4.2W
N
National Human Genome Research Institute
Scholars:
159
Papers: 54
Citations: 7.2K
I
irvine
Scholars:
25
Papers: 18
Citations: 0
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