| Literature DB >> 27060491 |
Orit Reish1,2, Liam Aspit3, Arielle Zouella3, Yehudah Roth2,4, Sylvie Polak-Charcon5, Tatiana Baboushkin2,5, Lilach Benyamini1, Todd E Scheetz6, Huda Mussaffi2,7, Val C Sheffield8, Ruti Parvari3,9.
Abstract
We investigated the cause of situs inversus totalis (SIT) in two siblings from a consanguineous family. Genotyping and whole-exome analysis revealed a homozygous change in NME7, resulting in deletion of an exon causing an in-frame deletion of 34 amino acids located in the second NDK domain of the protein and segregated with the defective lateralization in the family. NME7 is an important developmental gene, and NME7 protein is a component of the γ-tubulin ring complex. This mutation is predicted to affect the interaction of NME7 protein with this complex as it deletes the amino acids crucial for the binding. SIT associated with homozygous deletion in our patients is in line with Nme7(-/-) mutant mice phenotypes consisting of congenital hydrocephalus and SIT, indicating a novel human laterality patterning role for NME7. Further cases are required to elaborate the full human phenotype associated with NME7 mutations.Entities:
Keywords: NME7; cilia; situs inversus totalis; γ-tubulin ring complex
Mesh:
Substances:
Year: 2016 PMID: 27060491 PMCID: PMC6066188 DOI: 10.1002/humu.22998
Source DB: PubMed Journal: Hum Mutat ISSN: 1059-7794 Impact factor: 4.878