Abnormal vertebral segmentation and the notch signaling pathway in man

Аномальная сегментация позвонков и сигнальный путь Notch у человека
Peter D. Turnpenny, Ben Alman, Alberto S. Cornier, Philip F. Giampietro, Amaka C Offiah, Olivier Tassy, Olivier Pourquié, Kenro Kusumi, Sally L. Dunwoodie
2007-05-11

DLL3 MESP2 LFNGNotch signaling pathwayabnormal vertebral segmentationsomitogenesisspondylocostal dysostosis
Abnormal vertebral segmentation (AVS) in man is a relatively common congenital malformation but cannot be subjected to the scientific analysis that is applied in animal models. Nevertheless, some spectacular advances in the cell biology and molecular genetics of somitogenesis in animal models have proved to be directly relevant to human disease. Some advances in our understanding have come through DNA linkage analysis in families demonstrating a clustering of AVS cases, as well as adopting a candidate gene approach. Only rarely do AVS phenotypes follow clear Mendelian inheritance, but three genes-DLL3, MESP2, and LNFG-have now been identified for spondylocostal dysostosis (SCD). SCD is characterized by extensive hemivertebrae, trunkal shortening, and abnormally aligned ribs with points of fusion. In familial cases clearly following a Mendelian pattern, autosomal recessive inheritance is more common than autosomal dominant and the genes identified are functional within the Notch signaling pathway. Other genes within the pathway cause diverse phenotypes such as Alagille syndrome (AGS) and CADASIL, conditions that may have their origin in defective vasculogenesis. Here, we deal mainly with SCD and AGS, and present a new classification system for AVS phenotypes, for which, hitherto, the terminology has been inconsistent and confusing.
1
Abnormal vertebral segmentation is a relatively common congenital malformation, but human cases are difficult to analyze experimentally compared with animal models.
2
Animal-model discoveries in somitogenesis, particularly involving the Notch pathway, have provided insights directly relevant to human vertebral segmentation disorders.
3
Familial Mendelian cases of spondylocostal dysostosis more commonly show autosomal recessive than autosomal dominant inheritance, with implicated genes functioning in Notch signaling.
4
Mutations in DLL3, MESP2, and LFNG have been identified in spondylocostal dysostosis, characterized by hemivertebrae, trunkal shortening, and abnormal rib alignment and fusion.
5
The paper focuses on spondylocostal dysostosis and Alagille syndrome and introduces a classification system intended to resolve inconsistent terminology for abnormal vertebral segmentation phenotypes.

Abnormal vertebral segmentation (AVS) in humans, particularly spondylocostal dysostosis (SCD) and Alagille syndrome (AGS) phenotypes

The genetic basis and phenotypic classification of AVS, focusing on mutations in Notch signaling pathway genes and their associated congenital malformations

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2007-05-11
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Peter D. Turnpenny
Ben Alman
Alberto S. Cornier
Philip F. Giampietro
Amaka C Offiah
Olivier Tassy
Olivier Pourquié
Kenro Kusumi
Sally L. Dunwoodie
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