Intra-Familial Tests of Association between Familial Idiopathic Scoliosis and Linked Regions on 9q31.3-q34.3 and 16p12.3-q22.2
HUMAN HEREDITY
Authors: Miller, Nancy H.; Justice, Cristina M.; Marosy, Beth; Swindle, Kandice; Kim, Yoonhee; Roy-Gagnon, Marie-Helene; Sung, Heejong; Behneman, Dana; Doheny, Kimberly F.; Pugh, Elizabeth; Wilson, Alexander F.
Abstract
Objective: Custom genotyping of markers in families with familial idiopathic scoliosis were used to fine-map candidate regions on chromosomes 9 and 16 in order to identify candidate genes that contribute to this disorder and prioritize them for next-generation sequence analysis. Methods: Candidate regions on 9q and 16p-16q, previously identified as linked to familial idiopathic scoliosis in a study of 202 families, were genotyped with a high-density map of single nucleotide polymorphisms. Tests of linkage for fine-mapping and intra-familial tests of association, including tiled regression, were performed on scoliosis as both a qualitative and quantitative trait. Results and Conclusions: Nominally significant linkage results were found for markers in both candidate regions. Results from intra-familial tests of association and tiled regression corroborated the linkage findings and identified possible candidate genes suitable for follow-up with next-generation sequencing in these same families. Candidate genes that met our prioritization criteria included FAM129B and CERCAM on chromosome 9 and SYT1, GNAO1, and CDH3 on chromosome 16. Copyright (C) 2012 S. Karger AG, Basel
The role of P-cadherin in skin biology and skin pathology: lessons from the hair follicle
CELL AND TISSUE RESEARCH
Authors: Samuelov, Liat; Sprecher, Eli; Paus, Ralf
Abstract
Adherens junctions (AJs) are one of the major intercellular junctions in various epithelia including the epidermis and the follicular epithelium. AJs connect the cell surface to the actin cytoskeleton and comprise classic transmembrane cadherins, such as P-cadherin, armadillo family proteins, and actin microfilaments. Loss-of-function mutations in CDH3, which encodes P-cadherin, result in two allelic autosomal recessive disorders: hypotrichosis with juvenile macular dystrophy (HJMD) and ectodermal dysplasia, ectrodactyly, and macular dystrophy (EEM) syndromes. Both syndromes feature sparse hair heralding progressive macular dystrophy. EEM syndrome is characterized in addition by ectodermal and limb defects. Recent studies have demonstrated that, together with its involvement in cell-cell adhesion, P-cadherin plays a crucial role in regulating cell signaling, malignant transformation, and other major intercellular processes. Here, we review the roles of P-cadherin in skin and hair biology, with emphasize on human hair growth, cycling and pigmentation.