Literature DB >> 31600785

ADAMTS9 and ADAMTS20 are differentially affected by loss of B3GLCT in mouse model of Peters plus syndrome.

Bernadette C Holdener1, Christopher J Percival2, Richard C Grady1, Daniel C Cameron1, Steven J Berardinelli3, Ao Zhang3, Sanjiv Neupane1, Megumi Takeuchi3, Javier C Jimenez-Vega4, Sardar M Z Uddin5, David E Komatsu5, Robert Honkanen6, Johanne Dubail7, Suneel S Apte7, Takashi Sato8, Hisashi Narimatsu8, Steve A McClain9,10, Robert S Haltiwanger3.   

Abstract

Peters plus syndrome (MIM #261540 PTRPLS), characterized by defects in eye development, prominent forehead, hypertelorism, short stature and brachydactyly, is caused by mutations in the β3-glucosyltransferase (B3GLCT) gene. Protein O-fucosyltransferase 2 (POFUT2) and B3GLCT work sequentially to add an O-linked glucose β1-3fucose disaccharide to properly folded thrombospondin type 1 repeats (TSRs). Forty-nine proteins are predicted to be modified by POFUT2, and nearly half are members of the ADAMTS superfamily. Previous studies suggested that O-linked fucose is essential for folding and secretion of POFUT2-modified proteins and that B3GLCT-mediated extension to the disaccharide is essential for only a subset of targets. To test this hypothesis and gain insight into the origin of PTRPLS developmental defects, we developed and characterized two mouse B3glct knockout alleles. Using these models, we tested the role of B3GLCT in enabling function of ADAMTS9 and ADAMTS20, two highly conserved targets whose functions are well characterized in mouse development. The mouse B3glct mutants developed craniofacial and skeletal abnormalities comparable to PTRPLS. In addition, we observed highly penetrant hydrocephalus, white spotting and soft tissue syndactyly. We provide strong genetic and biochemical evidence that hydrocephalus and white spotting in B3glct mutants resulted from loss of ADAMTS20, eye abnormalities from partial reduction of ADAMTS9 and cleft palate from loss of ADAMTS20 and partially reduced ADAMTS9 function. Combined, these results provide compelling evidence that ADAMTS9 and ADAMTS20 were differentially sensitive to B3GLCT inactivation and suggest that the developmental defects in PTRPLS result from disruption of a subset of highly sensitive POFUT2/B3GLCT targets such as ADAMTS20.
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Year:  2019        PMID: 31600785      PMCID: PMC6991180          DOI: 10.1093/hmg/ddz225

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  87 in total

1.  Adamts-1 is essential for the development and function of the urogenital system.

Authors:  L Mittaz; D L Russell; T Wilson; M Brasted; J Tkalcevic; L A Salamonsen; P J Hertzog; M A Pritchard
Journal:  Biol Reprod       Date:  2003-12-10       Impact factor: 4.285

2.  Cooperation of two ADAMTS metalloproteases in closure of the mouse palate identifies a requirement for versican proteolysis in regulating palatal mesenchyme proliferation.

Authors:  Hiroyuki Enomoto; Courtney M Nelson; Robert P T Somerville; Katrina Mielke; Laura J Dixon; Kimerly Powell; Suneel S Apte
Journal:  Development       Date:  2010-11-01       Impact factor: 6.868

3.  Mutation analysis of B3GALTL in Peters Plus syndrome.

Authors:  Linda M Reis; Rebecca C Tyler; Omar Abdul-Rahman; Pamela Trapane; Robert Wallerstein; Diane Broome; Jodi Hoffman; Aneal Khan; Christina Paradiso; Nitin Ron; Amanda Bergner; Elena V Semina
Journal:  Am J Med Genet A       Date:  2008-10-15       Impact factor: 2.802

4.  Crystal structures of the noncatalytic domains of ADAMTS13 reveal multiple discontinuous exosites for von Willebrand factor.

Authors:  Masashi Akiyama; Soichi Takeda; Koichi Kokame; Junichi Takagi; Toshiyuki Miyata
Journal:  Proc Natl Acad Sci U S A       Date:  2009-10-30       Impact factor: 11.205

5.  Molecular cloning and characterization of a novel human beta1,3-glucosyltransferase, which is localized at the endoplasmic reticulum and glucosylates O-linked fucosylglycan on thrombospondin type 1 repeat domain.

Authors:  Takashi Sato; Maiko Sato; Katsue Kiyohara; Maki Sogabe; Toshihide Shikanai; Norihiro Kikuchi; Akira Togayachi; Hiroyasu Ishida; Hiromi Ito; Akihiko Kameyama; Masanori Gotoh; Hisashi Narimatsu
Journal:  Glycobiology       Date:  2006-08-09       Impact factor: 4.313

6.  ADAMTS9-Mediated Extracellular Matrix Dynamics Regulates Umbilical Cord Vascular Smooth Muscle Differentiation and Rotation.

Authors:  Sumeda Nandadasa; Courtney M Nelson; Suneel S Apte
Journal:  Cell Rep       Date:  2015-05-28       Impact factor: 9.423

7.  O-fucosylation of thrombospondin type 1 repeats in ADAMTS-like-1/punctin-1 regulates secretion: implications for the ADAMTS superfamily.

Authors:  Lauren W Wang; Malgosia Dlugosz; Robert P T Somerville; Mona Raed; Robert S Haltiwanger; Suneel S Apte
Journal:  J Biol Chem       Date:  2007-03-29       Impact factor: 5.157

Review 8.  The ADAMTS (A Disintegrin and Metalloproteinase with Thrombospondin motifs) family.

Authors:  Richard Kelwick; Ines Desanlis; Grant N Wheeler; Dylan R Edwards
Journal:  Genome Biol       Date:  2015-05-30       Impact factor: 13.583

9.  Unusual life cycle and impact on microfibril assembly of ADAMTS17, a secreted metalloprotease mutated in genetic eye disease.

Authors:  Dirk Hubmacher; Michael Schneider; Steven J Berardinelli; Hideyuki Takeuchi; Belinda Willard; Dieter P Reinhardt; Robert S Haltiwanger; Suneel S Apte
Journal:  Sci Rep       Date:  2017-02-08       Impact factor: 4.379

10.  ADAMTS10-mediated tissue disruption in Weill-Marchesani syndrome.

Authors:  Ewa J Mularczyk; Mukti Singh; Alan R F Godwin; Francessco Galli; Neil Humphreys; Antony D Adamson; Aleksandr Mironov; Stuart A Cain; Gerhard Sengle; Ray P Boot-Handford; Giulio Cossu; Cay M Kielty; Clair Baldock
Journal:  Hum Mol Genet       Date:  2018-11-01       Impact factor: 6.150

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  7 in total

1.  Other Types of Glycosylation.

Authors:  Yohei Tsukamoto; Hideyuki Takeuchi
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 3.650

2.  Origin of cytoplasmic GDP-fucose determines its contribution to glycosylation reactions.

Authors:  Paulina Sosicka; Bobby G Ng; Lauren E Pepi; Asif Shajahan; Maurice Wong; David A Scott; Kenjiroo Matsumoto; Zhi-Jie Xia; Carlito B Lebrilla; Robert S Haltiwanger; Parastoo Azadi; Hudson H Freeze
Journal:  J Cell Biol       Date:  2022-09-02       Impact factor: 8.077

3.  O-fucosylation stabilizes the TSR3 motif in thrombospondin-1 by interacting with nearby amino acids and protecting a disulfide bond.

Authors:  Steven J Berardinelli; Alexander Eletsky; Jessika Valero-González; Atsuko Ito; Rajashri Manjunath; Ramon Hurtado-Guerrero; James H Prestegard; Robert J Woods; Robert S Haltiwanger
Journal:  J Biol Chem       Date:  2022-05-18       Impact factor: 5.486

4.  O-Fucosylation of ADAMTSL2 is required for secretion and is impacted by geleophysic dysplasia-causing mutations.

Authors:  Ao Zhang; Steven J Berardinelli; Christina Leonhard-Melief; Deepika Vasudevan; Ta-Wei Liu; Andrew Taibi; Sharee Giannone; Suneel S Apte; Bernadette C Holdener; Robert S Haltiwanger
Journal:  J Biol Chem       Date:  2020-09-10       Impact factor: 5.157

5.  Hydrocephalus in mouse B3glct mutants is likely caused by defects in multiple B3GLCT substrates in ependymal cells and subcommissural organ.

Authors:  Sanjiv Neupane; June Goto; Steven J Berardinelli; Atsuko Ito; Robert S Haltiwanger; Bernadette C Holdener
Journal:  Glycobiology       Date:  2021-09-09       Impact factor: 4.313

6.  Dietary Diversification and Specialization in Neotropical Bats Facilitated by Early Molecular Evolution.

Authors:  Joshua H T Potter; Kalina T J Davies; Laurel R Yohe; Miluska K R Sanchez; Edgardo M Rengifo; Monika Struebig; Kim Warren; Georgia Tsagkogeorga; Burton K Lim; Mario Dos Reis; Liliana M Dávalos; Stephen J Rossiter
Journal:  Mol Biol Evol       Date:  2021-08-23       Impact factor: 16.240

7.  Whole Genome Sequencing Unravels New Genetic Determinants of Early-Onset Familial Osteoporosis and Low BMD in Malta.

Authors:  Chanelle Cilia; Donald Friggieri; Josanne Vassallo; Angela Xuereb-Anastasi; Melissa Marie Formosa
Journal:  Genes (Basel)       Date:  2022-01-23       Impact factor: 4.096

  7 in total

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