Steatocystoma multiplex is associated with the R94C mutation in the KRT17 gene
MOLECULAR MEDICINE REPORTS
Authors: Liu, Qiao; Wu, Weiwei; Lu, Jiejie; Wang, Ping; Qiao, Feng
Abstract
Steatocystoma multiplex (SM) is an uncommon disorder, characterized by numerous skin-colored subcutaneous cysts. A number of SM pedigrees have been identified with mutations in the keratin 17 (KRT17) gene. The present study examined a four-generation Chinese pedigree with an autosomal dominant mode of inheritance and examined its genetic basis. A review of the literature on KRT17 gene mutations in the SM pedigree was also performed to investigate the KRT17 gene mutation and genotype-phenotype correlation. Exon 1 of the KRT17 gene was amplified using polymerase chain reaction (PCR) from genomic DNA obtained, which was obtained from 25 family members in the selected Chinese pedigree and from 100 unrelated control individuals. The DNA was then subjected to automatic DNA sequencing. Genealogical investigations demonstrated an autosomal dominant pattern, and direct sequencing of the PCR product revealed a heterozygous mutation, c.280C/T (R94C), which was located in exon 1 of the KRT17 gene in all 10 affected family members. The mutation was not identified in the 15 unaffected family members or in the 100 unrelated control individuals. Therefore, the present study identified a causative mutation in the KRT17 gene in a large Chinese SM pedigree, exhibiting autosomal dominance. A review of the literature suggested that, in addition to the mutation factor, other modifying factors contribute to the phenotype of familial SM.
A Systematic Analysis on DNA Methylation and the Expression of Both mRNA and microRNA in Bladder Cancer
PLOS ONE
Authors: Zhu, Jialou; Jiang, Zhimao; Gao, Fei; Hu, Xueda; Zhou, Liang; Chen, Jiahao; Luo, Huijuan; Sun, Jihua; Wu, Song; Han, Yonghua; Yin, Guangliang; Chen, Maoshan; Han, Zujing; Li, Xianxin; Huang, Yi; Zhang, Weixing; Zhou, Fangjian; Chen, Tong; Fa, Pingping; Wang, Yong; Sun, Liang; Leng, Huimin; Sun, Fenghao; Liu, Yuchen; Ye, Mingzhi; Yang, Huanming; Cai, Zhiming; Gui, Yaoting; Zhang, Xiuqing
Abstract
Background: DNA methylation aberration and microRNA (miRNA) deregulation have been observed in many types of cancers. A systematic study of methylome and transcriptome in bladder urothelial carcinoma has never been reported. Methodology/Principal Findings: The DNA methylation was profiled by modified methylation-specific digital karyotyping (MMSDK) and the expression of mRNAs and miRNAs was analyzed by digital gene expression (DGE) sequencing in tumors and matched normal adjacent tissues obtained from 9 bladder urothelial carcinoma patients. We found that a set of significantly enriched pathways disrupted in bladder urothelial carcinoma primarily related to "neurogenesis" and "cell differentiation" by integrated analysis of -omics data. Furthermore, we identified an intriguing collection of cancer-related genes that were deregulated at the levels of DNA methylation and mRNA expression, and we validated several of these genes (HIC1, SLIT2, RASAL1, and KRT17) by Bisulfite Sequencing PCR and Reverse Transcription qPCR in a panel of 33 bladder cancer samples. Conclusions/Significance: We characterized the profiles between methylome and transcriptome in bladder urothelial carcinoma, identified a set of significantly enriched key pathways, and screened four aberrantly methylated and expressed genes. Conclusively, our findings shed light on a new avenue for basic bladder cancer research.