x
Filter:
Filters applied
- Glycobiology and Extracellular Matrices
- Haltiwanger, Robert SRemove Haltiwanger, Robert S filter
Publication Date
Please choose a date range between 2016 and 2022.
Author
- Ito, Atsuko7
- Berardinelli, Steven J2
- Pennarubia, Florian2
- Takeuchi, Megumi2
- Zhang, Ao2
- Apte, Suneel S1
- Eletsky, Alexander1
- Giannone, Sharee1
- Hao, Huilin1
- Harvey, Beth M1
- Holdener, Bernadette C1
- Hurtado-Guerrero, Ramon1
- Jafar-Nejad, Hamed1
- Kakuda, Shinako1
- Kannan, Natarajan1
- Kumar, Vivek1
- Leonardi, Jessica1
- Leonhard-Melief, Christina1
- Li, Huilin1
- Liu, Ta-Wei1
- LoPilato, Rachel K1
- Manjunath, Rajashri1
- Matsumoto, Kenjiroo1
- Moremen, Kelley W1
Keyword
- glycosylation6
- mass spectrometry5
- EGF4
- extracellular matrix4
- O-fucose4
- glycoprotein secretion3
- TSR3
- Chinese hamster ovary2
- CHO2
- Delta-like ligand2
- ECM2
- EGF repeat2
- EGF repeats2
- EIC2
- ER2
- Fringe2
- MS2
- Notch2
- Notch receptor2
- NOTCH12
- PE2
- Peters plus syndrome2
- protein folding2
- PTRPLS2
- A Disintegrin-like And Metalloprotease with Thrombospondin type-1 repeats1
Glycobiology and Extracellular Matrices
9 Results
- Research ArticleOpen Access
Cancer-associated Notch receptor variants lead to O-fucosylation defects that deregulate Notch signaling
Journal of Biological ChemistryVol. 298Issue 12102616Published online: October 17, 2022- Florian Pennarubia
- Atsuko Ito
- Megumi Takeuchi
- Robert S. Haltiwanger
Cited in Scopus: 0NOTCH1 is a transmembrane receptor that initiates a signaling pathway involved in embryonic development of adult tissue homeostasis. The extracellular domain of NOTCH1 is composed largely of epidermal growth factor–like repeats (EGFs), many of which can be O-fucosylated at a specific consensus sequence by protein O-fucosyltransferase 1 (POFUT1). O-fucosylation of NOTCH1 is necessary for its function. The Notch pathway is deregulated in many cancers, and alteration of POFUT1 has been reported in several cancers, but further investigation is needed to assess whether there is deregulation of the Notch pathway associated with mutations that affect O-fucosylation in cancers. - Research ArticleOpen Access
Fringe GlcNAc-transferases differentially extend O-fucose on endogenous NOTCH1 in mouse activated T cells
Journal of Biological ChemistryVol. 298Issue 7102064Published online: May 24, 2022- Kenjiroo Matsumoto
- Vivek Kumar
- Shweta Varshney
- Alison V. Nairn
- Atsuko Ito
- Florian Pennarubia
- and others
Cited in Scopus: 3NOTCH1 is a transmembrane receptor that initiates a cell–cell signaling pathway controlling various cell fate specifications in metazoans. The addition of O-fucose by protein O-fucosyltransferase 1 (POFUT1) to epidermal growth factor-like (EGF) repeats in the NOTCH1 extracellular domain is essential for NOTCH1 function, and modification of O-fucose with GlcNAc by the Fringe family of glycosyltransferases modulates Notch activity. Prior cell-based studies showed that POFUT1 modifies EGF repeats containing the appropriate consensus sequence at high stoichiometry, while Fringe GlcNAc-transferases (LFNG, MFNG, and RFNG) modify O-fucose on only a subset of NOTCH1 EGF repeats. - Research ArticleOpen Access
O-fucosylation stabilizes the TSR3 motif in thrombospondin-1 by interacting with nearby amino acids and protecting a disulfide bond
Journal of Biological ChemistryVol. 298Issue 6102047Published online: May 18, 2022- Steven J. Berardinelli
- Alexander Eletsky
- Jessika Valero-González
- Atsuko Ito
- Rajashri Manjunath
- Ramon Hurtado-Guerrero
- and others
Cited in Scopus: 0Thrombospondin type-1 repeats (TSRs) are small protein motifs containing six conserved cysteines forming three disulfide bonds that can be modified with an O-linked fucose. Protein O-fucosyltransferase 2 (POFUT2) catalyzes the addition of O-fucose to TSRs containing the appropriate consensus sequence, and the O-fucose modification can be elongated to a Glucose-Fucose disaccharide with the addition of glucose by β3-glucosyltransferase (B3GLCT). Elimination of Pofut2 in mice results in embryonic lethality in mice, highlighting the biological significance of O-fucose modification on TSRs. - Research ArticleOpen Access
POGLUT2 and POGLUT3 O-glucosylate multiple EGF repeats in fibrillin-1, -2, and LTBP1 and promote secretion of fibrillin-1
Journal of Biological ChemistryVol. 297Issue 3101055Published online: August 16, 2021- Daniel B. Williamson
- Camron J. Sohn
- Atsuko Ito
- Robert S. Haltiwanger
Cited in Scopus: 3Fibrillin-1 (FBN1) is the major component of extracellular matrix microfibrils, which are required for proper development of elastic tissues, including the heart and lungs. Through protein–protein interactions with latent transforming growth factor (TGF) β-binding protein 1 (LTBP1), microfibrils regulate TGF-β signaling. Mutations within the 47 epidermal growth factor-like (EGF) repeats of FBN1 cause autosomal dominant disorders including Marfan Syndrome, which is characterized by disrupted TGF-β signaling. - Research ArticleOpen Access
Peters plus syndrome mutations affect the function and stability of human β1,3-glucosyltransferase
Journal of Biological ChemistryVol. 297Issue 1100843Published online: May 27, 2021- Ao Zhang
- Aarya Venkat
- Rahil Taujale
- James L. Mull
- Atsuko Ito
- Natarajan Kannan
- and others
Cited in Scopus: 2Peters Plus Syndrome (PTRPLS OMIM # 261540 ) is a severe congenital disorder of glycosylation where patients have multiple structural anomalies, including Peters anomaly of the eye (anterior segment dysgenesis), disproportionate short stature, brachydactyly, dysmorphic facial features, developmental delay, and variable additional abnormalities. PTRPLS patients and some Peters Plus-like (PTRPLS-like) patients (who only have a subset of PTRPLS phenotypes) have mutations in the gene encoding β1,3-glucosyltransferase (B3GLCT). - Glycobiology and Extracellular MatricesOpen Access
O-Fucosylation of ADAMTSL2 is required for secretion and is impacted by geleophysic dysplasia-causing mutations
Journal of Biological ChemistryVol. 295Issue 46p15742–15753Published online: September 10, 2020- Ao Zhang
- Steven J. Berardinelli
- Christina Leonhard-Melief
- Deepika Vasudevan
- Ta-Wei Liu
- Andrew Taibi
- and others
Cited in Scopus: 10ADAMTSL2 mutations cause an autosomal recessive connective tissue disorder, geleophysic dysplasia 1 (GPHYSD1), which is characterized by short stature, small hands and feet, and cardiac defects. ADAMTSL2 is a matricellular protein previously shown to interact with latent transforming growth factor-β binding protein 1 and influence assembly of fibrillin 1 microfibrils. ADAMTSL2 contains seven thrombospondin type-1 repeats (TSRs), six of which contain the consensus sequence for O-fucosylation by protein O-fucosyltransferase 2 (POFUT2). - Glycobiology and Extracellular MatricesOpen Access
Canonical Notch ligands and Fringes have distinct effects on NOTCH1 and NOTCH2
Journal of Biological ChemistryVol. 295Issue 43p14710–14722Published online: August 19, 2020- Shinako Kakuda
- Rachel K. LoPilato
- Atsuko Ito
- Robert S. Haltiwanger
Cited in Scopus: 19Notch signaling is a cellular pathway regulating cell-fate determination and adult tissue homeostasis. Little is known about how canonical Notch ligands or Fringe enzymes differentially affect NOTCH1 and NOTCH2. Using cell-based Notch signaling and ligand-binding assays, we evaluated differences in NOTCH1 and NOTCH2 responses to Delta-like (DLL) and Jagged (JAG) family members and the extent to which Fringe enzymes modulate their activity. In the absence of Fringes, DLL4–NOTCH1 activation was more than twice that of DLL4–NOTCH2, whereas all other ligands activated NOTCH2 similarly or slightly more than NOTCH1. - Editors' PicksOpen Access
O-Glycosylation modulates the stability of epidermal growth factor-like repeats and thereby regulates Notch trafficking
Journal of Biological ChemistryVol. 292Issue 38p15964–15973Published online: July 20, 2017- Hideyuki Takeuchi
- Hongjun Yu
- Huilin Hao
- Megumi Takeuchi
- Atsuko Ito
- Huilin Li
- and others
Cited in Scopus: 65Glycosylation in the endoplasmic reticulum (ER) is closely associated with protein folding and quality control. We recently described a non-canonical ER quality control mechanism for folding of thrombospondin type 1 repeats by protein O-fucosyltransferase 2 (POFUT2). Epidermal growth factor-like (EGF) repeats are also small cysteine-rich protein motifs that can be O-glycosylated by several ER-localized enzymes, including protein O-glucosyltransferase 1 (POGLUT1) and POFUT1. Both POGLUT1 and POFUT1 modify the Notch receptor on multiple EGF repeats and are essential for full Notch function. - Glycobiology and Extracellular MatricesOpen Access
Mapping Sites of O-Glycosylation and Fringe Elongation on Drosophila Notch
Journal of Biological ChemistryVol. 291Issue 31p16348–16360Published online: June 6, 2016- Beth M. Harvey
- Nadia A. Rana
- Hillary Moss
- Jessica Leonardi
- Hamed Jafar-Nejad
- Robert S. Haltiwanger
Cited in Scopus: 52Glycosylation of the Notch receptor is essential for its activity and serves as an important modulator of signaling. Three major forms of O-glycosylation are predicted to occur at consensus sites within the epidermal growth factor-like repeats in the extracellular domain of the receptor: O-fucosylation, O-glucosylation, and O-GlcNAcylation. We have performed comprehensive mass spectral analyses of these three types of O-glycosylation on Drosophila Notch produced in S2 cells and identified peptides containing all 22 predicted O-fucose sites, all 18 predicted O-glucose sites, and all 18 putative O-GlcNAc sites.