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Abrogation of MAP4K4 protein function causes congenital anomalies in humans and zebrafish.

Authors :
Patterson V
Ullah F
Bryant L
Griffin JN
Sidhu A
Saliganan S
Blaile M
Saenz MS
Smith R
Ellingwood S
Grange DK
Hu X
Mireguli M
Luo Y
Shen Y
Mulhern M
Zackai E
Ritter A
Izumi K
Hoefele J
Wagner M
Riedhammer KM
Seitz B
Robin NH
Goodloe D
Mignot C
Keren B
Cox H
Jarvis J
Hempel M
Gibson CF
Tran Mau-Them F
Vitobello A
Bruel AL
Sorlin A
Mehta S
Raymond FL
Gilmore K
Powell BC
Weck K
Li C
Vulto-van Silfhout AT
Giacomini T
Mancardi MM
Accogli A
Salpietro V
Zara F
Vora NL
Davis EE
Burdine R
Bhoj E
Source :
Science advances [Sci Adv] 2023 Apr 28; Vol. 9 (17), pp. eade0631. Date of Electronic Publication: 2023 Apr 26.
Publication Year :
2023

Abstract

We report 21 families displaying neurodevelopmental differences and multiple congenital anomalies while bearing a series of rare variants in mitogen-activated protein kinase kinase kinase kinase 4 ( MAP4K4 ). MAP4K4 has been implicated in many signaling pathways including c-Jun N-terminal and RAS kinases and is currently under investigation as a druggable target for multiple disorders. Using several zebrafish models, we demonstrate that these human variants are either loss-of-function or dominant-negative alleles and show that decreasing Map4k4 activity causes developmental defects. Furthermore, MAP4K4 can restrain hyperactive RAS signaling in early embryonic stages. Together, our data demonstrate that MAP4K4 negatively regulates RAS signaling in the early embryo and that variants identified in affected humans abrogate its function, establishing MAP4K4 as a causal locus for individuals with syndromic neurodevelopmental differences.

Details

Language :
English
ISSN :
2375-2548
Volume :
9
Issue :
17
Database :
MEDLINE
Journal :
Science advances
Publication Type :
Academic Journal
Accession number :
37126546
Full Text :
https://doi.org/10.1126/sciadv.ade0631