Literature DB >> 25506500

Clinical genetics and pathobiology of ciliary chondrodysplasias.

Miriam Schmidts1.   

Abstract

Ciliary chondrodysplasias represent a heterogenous group of rare, nearly exclusively autosomal recessively inherited developmental conditions. While the skeletal phenotype, mainly affecting limbs, ribs and sometimes the craniofacial skeleton, is predominant, extraskeletal disease affecting the kidneys, liver, heart, eyes and other organs and tissues is observed inconsistently. Significant lethality, resulting from cardiorespiratory failure due to thoracic constriction as well as from renal and hepatic insufficiency or primary cardiac failure due to congenital heart disease, is observed with these conditions. The underlying genetic defects as well as developmental biology and cell biology work undertaken using animal model systems, suggest that these rare conditions result from ciliary malfunction. The skeletal phenotype is believed to result from imbalances in the hedgehog signaling pathway that normally occurs in functional cilia in chondrocytes. Although phenotypes have been historically distinguished based on clinical features into short-rib polydactyly syndrome, Jeune asphyxiating thoracic dystrophy, Mainzer-Saldino syndrome, Sensenbrenner syndrome (cranioectodermal dysplasia), oral-facial-digital syndrome and Ellis-van Creveld syndrome, recent research suggests that there is significant genetic as well as phenotypic overlap between the conditions. This review discusses ciliary chondrodysplasias from phenotypic hallmarks to clinical management and summarizes progress in identification of the underlying molecular mechanisms as well as potential future therapeutic perspectives.

Entities:  

Keywords:  Cilia; Jeune syndrome; Sensenbrenner syndrome; chondrodysplasia; short-rib polydactyly syndrome

Year:  2014        PMID: 25506500      PMCID: PMC4262788          DOI: 10.3233/PGE-14089

Source DB:  PubMed          Journal:  J Pediatr Genet        ISSN: 2146-460X


  26 in total

Review 1.  Ciliopathies: Genetics in Pediatric Medicine.

Authors:  Machteld M Oud; Ideke J C Lamers; Heleen H Arts
Journal:  J Pediatr Genet       Date:  2016-11-10

2.  Anterograde trafficking of ciliary MAP kinase-like ICK/CILK1 by the intraflagellar transport machinery is required for intraciliary retrograde protein trafficking.

Authors:  Kentaro Nakamura; Tatsuro Noguchi; Mariko Takahara; Yoshihiro Omori; Takahisa Furukawa; Yohei Katoh; Kazuhisa Nakayama
Journal:  J Biol Chem       Date:  2020-07-29       Impact factor: 5.157

Review 3.  Primary ciliary dyskinesia and associated sensory ciliopathies.

Authors:  Amjad Horani; Thomas W Ferkol
Journal:  Expert Rev Respir Med       Date:  2016-03-28       Impact factor: 3.772

4.  Mutations in KIAA0586 Cause Lethal Ciliopathies Ranging from a Hydrolethalus Phenotype to Short-Rib Polydactyly Syndrome.

Authors:  Caroline Alby; Kevin Piquand; Céline Huber; André Megarbané; Amale Ichkou; Marine Legendre; Fanny Pelluard; Ferechté Encha-Ravazi; Georges Abi-Tayeh; Bettina Bessières; Salima El Chehadeh-Djebbar; Nicole Laurent; Laurence Faivre; László Sztriha; Melinda Zombor; Hajnalka Szabó; Marion Failler; Meriem Garfa-Traore; Christine Bole; Patrick Nitschké; Mathilde Nizon; Nadia Elkhartoufi; Françoise Clerget-Darpoux; Arnold Munnich; Stanislas Lyonnet; Michel Vekemans; Sophie Saunier; Valérie Cormier-Daire; Tania Attié-Bitach; Sophie Thomas
Journal:  Am J Hum Genet       Date:  2015-07-09       Impact factor: 11.025

5.  Genetic Defects in TAPT1 Disrupt Ciliogenesis and Cause a Complex Lethal Osteochondrodysplasia.

Authors:  Sofie Symoens; Aileen M Barnes; Charlotte Gistelinck; Fransiska Malfait; Brecht Guillemyn; Wouter Steyaert; Delfien Syx; Sanne D'hondt; Martine Biervliet; Julie De Backer; Eckhard P Witten; Sergey Leikin; Elena Makareeva; Gabriele Gillessen-Kaesbach; Ann Huysseune; Kris Vleminckx; Andy Willaert; Anne De Paepe; Joan C Marini; Paul J Coucke
Journal:  Am J Hum Genet       Date:  2015-09-10       Impact factor: 11.025

Review 6.  Skeletal ciliopathies: a pattern recognition approach.

Authors:  Atsuhiko Handa; Ulrika Voss; Anna Hammarsjö; Giedre Grigelioniene; Gen Nishimura
Journal:  Jpn J Radiol       Date:  2020-01-21       Impact factor: 2.374

Review 7.  Cilia in cystic kidney and other diseases.

Authors:  Gregory J Pazour; Lynne Quarmby; Abigail O Smith; Paurav B Desai; Miriam Schmidts
Journal:  Cell Signal       Date:  2019-12-24       Impact factor: 4.315

Review 8.  Understanding Primary Ciliary Dyskinesia and Other Ciliopathies.

Authors:  Amjad Horani; Thomas W Ferkol
Journal:  J Pediatr       Date:  2020-11-23       Impact factor: 4.406

9.  Spag17 deficiency results in skeletal malformations and bone abnormalities.

Authors:  Maria Eugenia Teves; Gobalakrishnan Sundaresan; David J Cohen; Sharon L Hyzy; Illya Kajan; Melissa Maczis; Zhibing Zhang; Richard M Costanzo; Jamal Zweit; Zvi Schwartz; Barbara D Boyan; Jerome F Strauss
Journal:  PLoS One       Date:  2015-05-27       Impact factor: 3.240

10.  Mutations in human C2CD3 cause skeletal dysplasia and provide new insights into phenotypic and cellular consequences of altered C2CD3 function.

Authors:  Claudio R Cortés; Aideen M McInerney-Leo; Ida Vogel; Maria C Rondón Galeano; Paul J Leo; Jessica E Harris; Lisa K Anderson; Patricia A Keith; Matthew A Brown; Mette Ramsing; Emma L Duncan; Andreas Zankl; Carol Wicking
Journal:  Sci Rep       Date:  2016-04-20       Impact factor: 4.379

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