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GMPPA defects cause a neuromuscular disorder with α-dystroglycan hyperglycosylation.
J Clin Invest. 2021 May 3;131(9). doi: 10.1172/JCI139076.
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Mutations in GMPPA cause a glycosylation disorder characterized by intellectual disability and autonomic dysfunction.
Am J Hum Genet. 2013 Oct 3;93(4):727-34. doi: 10.1016/j.ajhg.2013.08.002. Epub 2013 Sep 12.
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Impact of Hypermannosylation on the Structure and Functionality of the ER and the Golgi Complex.
Biomedicines. 2023 Jan 6;11(1):146. doi: 10.3390/biomedicines11010146.
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Cryo-EM structures of human GMPPA-GMPPB complex reveal how cells maintain GDP-mannose homeostasis.
Nat Struct Mol Biol. 2021 May;28(5):1-12. doi: 10.1038/s41594-021-00591-9. Epub 2021 May 13.
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GDP-Mannose Pyrophosphorylase B ()-Related Disorders.
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Mobility shift of beta-dystroglycan as a marker of gene-related muscular dystrophy.
J Neurol Neurosurg Psychiatry. 2018 Jul;89(7):762-768. doi: 10.1136/jnnp-2017-316956. Epub 2018 Feb 3.
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A novel mutation in GMPPA in siblings with apparent intellectual disability, epilepsy, dysmorphism, and autonomic dysfunction.
Am J Med Genet A. 2017 Aug;173(8):2246-2250. doi: 10.1002/ajmg.a.38292. Epub 2017 Jun 2.
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Differential glycosylation of α-dystroglycan and proteins other than α-dystroglycan by like-glycosyltransferase.
Glycobiology. 2012 Feb;22(2):235-47. doi: 10.1093/glycob/cwr131. Epub 2011 Sep 19.

引用本文的文献

2
Evolutionary rate covariation is pervasive between glycosylation pathways and points to potential disease modifiers.
PLoS Genet. 2024 Sep 11;20(9):e1011406. doi: 10.1371/journal.pgen.1011406. eCollection 2024 Sep.
3
Ubiquitination contributes to the regulation of GDP-mannose pyrophosphorylase B activity.
Front Mol Neurosci. 2024 Jun 24;17:1375297. doi: 10.3389/fnmol.2024.1375297. eCollection 2024.
4
Molecular mechanisms and therapeutic strategies for neuromuscular diseases.
Cell Mol Life Sci. 2024 Apr 28;81(1):198. doi: 10.1007/s00018-024-05229-9.
5
Consequences of GMPPB deficiency for neuromuscular development and maintenance.
Front Mol Neurosci. 2024 Feb 14;17:1356326. doi: 10.3389/fnmol.2024.1356326. eCollection 2024.
7
Impact of Hypermannosylation on the Structure and Functionality of the ER and the Golgi Complex.
Biomedicines. 2023 Jan 6;11(1):146. doi: 10.3390/biomedicines11010146.
8
Altered mannose metabolism in chronic stress and depression is rapidly reversed by vitamin B12.
Front Nutr. 2022 Oct 13;9:981511. doi: 10.3389/fnut.2022.981511. eCollection 2022.
9
Hypolacrimia and Alacrimia as Diagnostic Features for Genetic or Congenital Conditions.
Invest Ophthalmol Vis Sci. 2022 Aug 2;63(9):3. doi: 10.1167/iovs.63.9.3.
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Genetic pain loss disorders.
Nat Rev Dis Primers. 2022 Jun 16;8(1):41. doi: 10.1038/s41572-022-00365-7.

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WebGestalt 2019: gene set analysis toolkit with revamped UIs and APIs.
Nucleic Acids Res. 2019 Jul 2;47(W1):W199-W205. doi: 10.1093/nar/gkz401.
2
Comparison of Protein Quantification in a Complex Background by DIA and TMT Workflows with Fixed Instrument Time.
J Proteome Res. 2019 Mar 1;18(3):1340-1351. doi: 10.1021/acs.jproteome.8b00898. Epub 2019 Feb 20.
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The PRIDE database and related tools and resources in 2019: improving support for quantification data.
Nucleic Acids Res. 2019 Jan 8;47(D1):D442-D450. doi: 10.1093/nar/gky1106.
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Dystrophin expression in muscle stem cells regulates their polarity and asymmetric division.
Nat Med. 2015 Dec;21(12):1455-63. doi: 10.1038/nm.3990. Epub 2015 Nov 16.
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GMPPB-Associated Dystroglycanopathy: Emerging Common Variants with Phenotype Correlation.
Hum Mutat. 2015 Dec;36(12):1159-63. doi: 10.1002/humu.22898. Epub 2015 Sep 23.
9
Mutations in GMPPB cause congenital myasthenic syndrome and bridge myasthenic disorders with dystroglycanopathies.
Brain. 2015 Sep;138(Pt 9):2493-504. doi: 10.1093/brain/awv185. Epub 2015 Jun 30.
10
Expanding the phenotype of GMPPB mutations.
Brain. 2015 Apr;138(Pt 4):836-44. doi: 10.1093/brain/awv013. Epub 2015 Feb 12.

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