Using Xenopus to analyze neurocristopathies like Kabuki syndrome

被引:2
作者
Schwenty-Lara, Janina [1 ]
Pauli, Silke [2 ]
Borchers, Annette [1 ,3 ]
机构
[1] Philipps Univ Marburg, Dept Biol, Mol Embryol, Marburg, Germany
[2] Univ Med Ctr Gottingen, Inst Human Genet, Gottingen, Germany
[3] Philipps Univ Marburg, Membrane Plast Tissue Dev & Remodeling, DFG Res Training Grp, GRK, Marburg, Germany
关键词
Kabuki syndrome; Kmt2d; neural crest; neurocristopathy; Xenopus; NIIKAWA-KUROKI-SYNDROME; CRANIAL NEURAL CREST; MAKE-UP SYNDROME; PREDICTIVE CHROMATIN SIGNATURES; CONGENITAL HEART-DEFECTS; GENE REGULATORY NETWORK; CONTACT INHIBITION; HISTONE H3; CELL-PROLIFERATION; KDM6A MUTATIONS;
D O I
10.1002/dvg.23404
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Neurocristopathies are human congenital syndromes that arise from defects in neural crest (NC) development and are typically associated with malformations of the craniofacial skeleton. Genetic analyses have been very successful in identifying pathogenic mutations, however, model organisms are required to characterize how these mutations affect embryonic development thereby leading to complex clinical conditions. The African clawed frog Xenopus laevis provides a broad range of in vivo and in vitro tools allowing for a detailed characterization of NC development. Due to the conserved nature of craniofacial morphogenesis in vertebrates, Xenopus is an efficient and versatile system to dissect the morphological and cellular phenotypes as well as the signaling events leading to NC defects. Here, we review a set of techniques and resources how Xenopus can be used as a disease model to investigate the pathogenesis of Kabuki syndrome and neurocristopathies in a wider sense.
引用
收藏
页数:14
相关论文
共 183 条
[1]  
Adam M. P., 2019, KABUKI SYNDROME GENE
[2]   Kabuki syndrome: a review [J].
Adam, MP ;
Hudgins, L .
CLINICAL GENETICS, 2005, 67 (03) :209-219
[3]   UTX and JMJD3 are histone H3K27 demethylases involved in HOX gene regulation and development [J].
Agger, Karl ;
Cloos, Paul A. C. ;
Christensen, Jesper ;
Pasini, Diego ;
Rose, Simon ;
Rappsilber, Juri ;
Issaeva, Irina ;
Canaani, Eli ;
Salcini, Anna Elisabetta ;
Helin, Kristian .
NATURE, 2007, 449 (7163) :731-U10
[4]   Integrin α5β1 supports the migration of Xenopus cranial neural crest on fibronectin [J].
Alfandari, D ;
Cousin, H ;
Gaultier, A ;
Hoffstrom, BG ;
DeSimone, DW .
DEVELOPMENTAL BIOLOGY, 2003, 260 (02) :449-464
[5]   KMT2D regulates specific programs in heart development via histone H3 lysine 4 di-methylation [J].
Ang, Siang-Yun ;
Uebersohn, Alec ;
Spencer, C. Ian ;
Huang, Yu ;
Lee, Ji-Eun ;
Ge, Kai ;
Bruneau, Benoit G. .
DEVELOPMENT, 2016, 143 (05) :810-821
[6]   KMT2D p.Gln3575His Segregating in a Family with Autosomal Dominant Choanal Atresia Strengthens the Kabuki/CHARGE Connection [J].
Badalato, Lauren ;
Farhan, Sali M. K. ;
Dilliott, Allison A. ;
Bulman, Dennis E. ;
Hegele, Robert A. ;
Goobie, Sharan L. .
AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2017, 173 (01) :183-189
[7]   PDGF controls contact inhibition of locomotion by regulating N-cadherin during neural crest migration [J].
Bahm, Isabel ;
Barriga, Elias H. ;
Frolov, Antonina ;
Theveneau, Eric ;
Frankel, Paul ;
Mayor, Roberto .
DEVELOPMENT, 2017, 144 (13) :2456-2468
[8]   In vivo topology converts competition for cell-matrix adhesion into directional migration [J].
Bajanca, Fernanda ;
Gouignard, Nadege ;
Colle, Charlotte ;
Parsons, Maddy ;
Mayor, Roberto ;
Theveneau, Eric .
NATURE COMMUNICATIONS, 2019, 10 (1)
[9]   CHD7 cooperates with PBAF to control multipotent neural crest formation [J].
Bajpai, Ruchi ;
Chen, Denise A. ;
Rada-Iglesias, Alvaro ;
Zhang, Junmei ;
Xiong, Yiqin ;
Helms, Jill ;
Chang, Ching-Pin ;
Zhao, Yingming ;
Swigut, Tomek ;
Wysocka, Joanna .
NATURE, 2010, 463 (7283) :958-U135
[10]   Novel KDM6A (UTX) mutations and a clinical and molecular review of the X-linked Kabuki syndrome (KS2) [J].
Banka, S. ;
Lederer, D. ;
Benoit, V. ;
Jenkins, E. ;
Howard, E. ;
Bunstone, S. ;
Kerr, B. ;
McKee, S. ;
Lloyd, I. C. ;
Shears, D. ;
Stewart, H. ;
White, S. M. ;
Savarirayan, R. ;
Mancini, G. M. S. ;
Beysen, D. ;
Cohn, R. D. ;
Grisart, B. ;
Maystadt, I. ;
Donnai, D. .
CLINICAL GENETICS, 2015, 87 (03) :252-258