Identification of novel missense mutations of the TGFBR3 gene in Chinese women with premature ovarian failure
REPRODUCTIVE BIOMEDICINE ONLINE
Authors: Qin, Chun-rong; Chen, Shi-ling; Yao, Ji-long; Wu, Wei-qing; Xie, Jian-sheng
Abstract
The aim of this study was to assess the association between human transforming growth factor beta receptor, type III (TGFBR3) and idiopathic premature ovarian failure (POF) in a Chinese population. A total of 112 Chinese women with idiopathic POF and 110 normal controls were examined. DNA samples prepared from blood leukocytes were used as templates for polymerase-chain reaction amplification of DNA fragments from TGFBR3. The gene fragments were sequenced. Web-based programs, including PolyPhen, Sorting Intolerant from Tolerant (SIFT), Prediction of Pathological Mutations (PMUT), ScanProsite and ClustalW2, were used to predict the potential functional and structural impacts of the missense variants of TGFBR3. A total of 11 novel variants were identified. Among them, six were found only in the POF patients. Two missense variants, p.E459G and p.P825L, which are conserved in primates, were predicted to have functional and structural impacts on the TGFBR3 protein. The other four variants (c.381+12A>C, c.2431-7A>G, p.S172S and p.C220C) were considered benign. However, further functional studies are necessary to confirm these findings. (C) 2011, Reproductive Healthcare Ltd. Published by Elsevier Ltd. All rights reserved.
A gene for inherited cutaneous venous anomalies ("glomangiomas") localizes to chromosome 1p21-22
AMERICAN JOURNAL OF HUMAN GENETICS
Authors: Boon, LM; Brouillard, P; Irrthum, A; Karttunen, L; Warman, ML; Rudolph, R; Mulliken, JB; Olsen, BR; Vikkula, M
Abstract
Venous malformations (VMs) are localized defects of vascular morphogenesis. They can occur in every organ system, most commonly in skin and muscle. They can cause pain and bleeding, and in some critical locations they can be life threatening. Usually venous anomalies occur sporadically, but families with dominant inheritance have been identified. Using linkage analysis, we have established in earlier reports that some families with inherited VMs show linkage to chromosome 9p21; the mutation causes ligand-independent activation of an endothelial cell-specific receptor tyrosine kinase, TIE-2. Here we show that VMs with glomus cells (known as "glomangiomas"), inherited as an autosomal dominant trait in five families, are not linked to 9p21 but, instead, link to a new locus, on 1p21-p22, called "VMGLOM" (LOD score 12.70 at recombination fraction .00). We exclude three known positional candidate genes, DR1 (depressor of transcription 1), TGFBR3 (transforming growth factor-beta receptor, type 3), and TFA (tissue factor). We hypothesize that cutaneous venous anomalies (i.e., glomangiomas) are caused by mutations in a novel gene that may act to regulate angiogenesis, in concert with the TIE-2 signaling pathway.