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Human SNORA31 variations impair cortical neuron-intrinsic immunity to HSV-1 and underlie herpes simplex encephalitis

delete2019-12-05
delete90
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OA
AI
F
Fabien G. Lafaille
O
Oliver Harschnitz
Y
Yoon Seung Lee
Z
Zhang, Peng
M
Mary L. Hasek
G
Gaspard Kerner
Y
Yuval Itan
O
Osefame Ewaleifoh
F
Franck Rapaport
T
Thomas M. Carlile
M
Madalina E. Carter-Timofte
D
Dominik Paquet
K
Kerry Dobbs
B
Bastian Zimmer
高大兴 (Daxing Gao)
M
María F. Rojas-Durán
D
Dylan Kwart
V
Vimel Rattina
M
Michael J. Ciancanelli
J
Jessica L. McAlpine
L
Lazaro Lorenzo
S
Soraya Boucherit
F
Flore Rozenberg
R
Rabih Halwani
B
Benoît Henry
N
N. Amenzoui
Z
Zobaida Alsum
L
Laura Marques
J
Joseph A. Church
S
Saleh Al‐Muhsen
M
Marc Tardieu
A
Ahmed Aziz Bousfiha
S
Søren R. Paludan
T
Trine H. Mogensen
L
Lluís Quintana‐Murci
M
Marc Tessier‐Lavigne
G
Gregory A. Smith
L
Luigi D. Notarangelo
L
Lorenz Studer
W
Wendy V. Gilbert
L
Laurent Abel
J
Jean‐Laurent Casanova *
S
Shen‐Ying Zhang *
DOI:10.1038/s41591-019-0672-3delete
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Abstract

Abstract

En 中文
Herpes simplex virus-1 (HSV-1) encephalitis (HSE) is typically sporadic. Inborn errors of TLR3- and DBR1-mediated central nervous system cell-intrinsic immunity can account for forebrain and brainstem HSE, respectively. We report five unrelated patients with forebrain HSE, each heterozygous for one of four rare variants of SNORA31, encoding a small nucleolar RNA of the H/ACA class that are predicted to direct the isomerization of uridine residues to pseudouridine in small nuclear RNA and ribosomal RNA. We show that CRISPR/Cas9-introduced bi- and monoallelic SNORA31 deletions render human pluripotent stem cell (hPSC)-derived cortical neurons susceptible to HSV-1. Accordingly, SNORA31-mutated patient hPSC-derived cortical neurons are susceptible to HSV-1, like those from TLR3- or STAT1-deficient patients. Exogenous interferon (IFN)-beta renders SNORA31- and TLR3- but not STAT1-mutated neurons resistant to HSV-1. Finally, transcriptome analysis of SNORA31-mutated neurons revealed normal responses to TLR3 and IFN-alpha/beta stimulation but abnormal responses to HSV-1. Human SNORA31 thus controls central nervous system neuron-intrinsic immunity to HSV-1 by a distinctive mechanism.
Keywords:
NF-KAPPA-B
TLR3 DEFICIENCY
VIRUS ENCEPHALITIS
INBORN-ERRORS
RNA
PSEUDOURIDINE
PROTEIN
RECOGNITION
INHIBITION
MUTATIONS
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Nature Medicine cover
Nature Medicine
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