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Citations to this article

Disrupted ER membrane protein complex–mediated topogenesis drives congenital neural crest defects
Jonathan Marquez, … , Martín I. García-Castro, Mustafa K. Khokha
Jonathan Marquez, … , Martín I. García-Castro, Mustafa K. Khokha
Published January 6, 2020
Citation Information: J Clin Invest. 2020;130(2):813-826. https://doi.org/10.1172/JCI129308.
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Research Article Development Genetics Article has an altmetric score of 7

Disrupted ER membrane protein complex–mediated topogenesis drives congenital neural crest defects

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Abstract

Multipass membrane proteins have a myriad of functions, including transduction of cell-cell signals, ion transport, and photoreception. Insertion of these proteins into the membrane depends on the endoplasmic reticulum (ER) membrane protein complex (EMC). Recently, birth defects have been observed in patients with variants in the gene encoding a member of this complex, EMC1. Patient phenotypes include congenital heart disease, craniofacial malformations, and neurodevelopmental disease. However, a molecular connection between EMC1 and these birth defects is lacking. Using Xenopus, we identified defects in neural crest cells (NCCs) upon emc1 depletion. We then used unbiased proteomics and discovered a critical role for emc1 in WNT signaling. Consistent with this, readouts of WNT signaling and Frizzled (Fzd) levels were reduced in emc1-depleted embryos, while NCC defects could be rescued with β-catenin. Interestingly, other transmembrane proteins were mislocalized upon emc1 depletion, providing insight into additional patient phenotypes. To translate our findings back to humans, we found that EMC1 was necessary for human NCC development in vitro. Finally, we tested patient variants in our Xenopus model and found the majority to be loss-of-function alleles. Our findings define molecular mechanisms whereby EMC1 dysfunction causes disease phenotypes through dysfunctional multipass membrane protein topogenesis.

Authors

Jonathan Marquez, June Criscione, Rebekah M. Charney, Maneeshi S. Prasad, Woong Y. Hwang, Emily K. Mis, Martín I. García-Castro, Mustafa K. Khokha

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 Total
Citations: 1 4 4 2 2 2 15
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Citations to this article (15)

Title and authors Publication Year
ODC signaling is dysregulated in COXFA4 related mitochondrial disease
Jonathan Marquez, Stephen Viviano, Erika Beckman, Jenny Thies, Joshua Friedland-Little, Christina Lam, Engin Deniz, Emily Shelkowitz
HGG advances 2025
METTL3-dependent m6A modification of PSEN1 mRNA regulates craniofacial development through the Wnt/β-catenin signaling pathway
Ma L, Zhou X, Yao S, Zhang X, Mao J, Vona B, Fan L, Lou S, Li D, Wang L, Pan Y
Cell Death and Disease 2024
Structural insights into human EMC and its interaction with VDAC.
Li M, Zhang C, Xu Y, Li S, Huang C, Wu J, Lei M
Aging 2024
Exploiting fly models to investigate rare human neurological disorders
Tanaka T, Chung HL
Neural Regeneration Research 2024
Technologies to Study Genetics and Molecular Pathways.
Grunert M, Dorn C, Dopazo A, Sánchez-Cabo F, Vázquez J, Rickert-Sperling S, Lara-Pezzi E
Advances in experimental medicine and biology 2024
Conserved transcription factors promote cell fate stability and restrict reprogramming potential in differentiated cells.
Missinato MA, Murphy S, Lynott M, Yu MS, Kervadec A, Chang YL, Kannan S, Loreti M, Lee C, Amatya P, Tanaka H, Huang CT, Puri PL, Kwon C, Adams PD, Qian L, Sacco A, Andersen P, Colas AR
Nature Communications 2023
Novel compound heterozygous variants in EMC1 associated with global developmental delay: a lesson from a non-silent synonymous exonic mutation
Wang G, Wang Y, Gao C, Xie W
Frontiers in molecular neuroscience 2023
The endoplasmic reticulum membrane protein complex subunit Emc6 is essential for rhodopsin localization and photoreceptor cell survival
Sun K, Liu L, Jiang X, Wang H, Wang L, Yang Y, Liu W, Zhang L, Zhao X, Zhu X
Genes & Diseases 2023
Expanding EMC Foldopathies: Topogenesis Deficits Alter the Neural Crest
Marquez J, Aslam F, Khokha MK
Genesis (New York, N.Y. : 2000) 2023
De novo variants in EMC1 lead to neurodevelopmental delay and cerebellar degeneration and affect glial function in Drosophila
Chung HL, Rump P, Lu D, Glassford MR, Mok JW, Fatih J, Basal A, Marcogliese PC, Kanca O, Rapp M, Fock JM, Kamsteeg EJ, Lupski JR, Larson A, Haninbal MC, Bellen H, Harel T
Human Molecular Genetics 2022
Defective EMC1 drives abnormal retinal angiogenesis via Wnt/β-catenin signaling and may be associated with the pathogenesis of familial exudative vitreoretinopathy
Li S, Yang M, Zhao R, Peng L, Liu W, Jiang X, He Y, Dai E, Zhang L, Yang Y, Shi Y, Zhao P, Yang Z, Zhu X
Genes & Diseases 2022
The ER membrane protein complex subunit Emc3 controls angiogenesis via the FZD4/WNT signaling axis
M Yang, S Li, W Liu, X Li, Y He, Y Yang, K Sun, L Zhang, W Tian, L Duan, H Chen, D Yao, Z Yang, X Zhu
Science China Life Sciences 2021
PIWI-interacting RNA sequencing profiles in maternal plasma-derived exosomes reveal novel non-invasive prenatal biomarkers for the early diagnosis of nonsyndromic cleft lip and palate
S Jia, Q Zhang, Y Wang, Y Wang, D Liu, Y He, X Wei, H Gu, W Ma, W Luo, Z Yuan
EBioMedicine 2021
Squaring the EMC – how promoting membrane protein biogenesis impacts cellular functions and organismal homeostasis
N Volkmar, JC Christianson
Journal of cell science 2020
Structural and mechanistic basis of the EMC-dependent biogenesis of distinct transmembrane clients
LE Miller-Vedam, B Bräuning, KD Popova, NT Oakdale, JL Bonnar, JR Prabu, EA Boydston, N Sevillano, MJ Shurtleff, RM Stroud, CS Craik, BA Schulman, A Frost, JS Weissman
eLife 2020

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