Identification of a novel splice mutation in CTNNB1 gene in a Chinese family with both severe intellectual disability and serious visual defects
NEUROLOGICAL SCIENCES
Authors: Wang, Hui; Zhao, Yiqi; Yang, Liwei; Han, Shuai; Qi, Ming
Abstract
The CTNNB1 gene encode the beta-catenin protein which is a core unit of the cadherin/catenin multiprotein complex. The loss-of-function mutation of the CTNNB1 gene recently has been confirmed as a cause of intellectual disability. Previous studies have found that patients with CTNNB1 gene mutation may have other clinical manifestation such as microcephaly, abnormal facial features, motor and language delays, and mild visual defects. Here, we reported a 27-year-old Chinese pregnant woman with a severe intellectual disability and serious visual defects who was detected with a novel splice mutation (c.734+1G>A) in CTNNB1 gene by whole-exome sequencing and confirmed by Sanger sequencing. Further investigation showed that the variant was inherited from her mother with similar phenotypes. This report not only helps to expand the mutant spectrum of the CTNNB1 gene but also prompts a new insight into genetic diagnosis in patients with both serious intellectual disability and visual defects.
Inhibitory effects of Lactobacilli cocktail on HT-29 colon carcinoma cells growth and modulation of the Notch and Wnt/beta-catenin signaling pathways
MICROBIAL PATHOGENESIS
Authors: Ghanavati, Roya; Asadollahi, Parisa; Shapourabadi, Mina Bahrololomi; Razavi, Shabnam; Talebi, Malihe; Rohani, Mahdi
Abstract
Probiotics could be considered as attractive candidates for preventing tumor growth through maintaining homeostasis. The aim of this study was to evaluate the inhibitory effect of a cocktail of five Lactobacillus species on human colorectal carcinoma cell line HT-29. The anti-proliferative and apoptotic effects of Lactobacilli cocktail were evaluated using MTT and flow cytometry tests, respectively. Quantitative real-time polymerase chain reaction (qPCR) was used to analyze the expression of several genes in the Notch (notch, hes1, msi1, and numb) and Wnt/beta-catenin (CTNNB1 and CCND1) pathways, following the treatment of HT-29 cells with Lactobacilli cocktail. The treatment by Lactobacilli cocktail induced a significant anti-proliferative effect and late stage apoptosis among the cancer cells (p < 0.05). Compared to the untreated cells, Lactobacilli cocktail induced the down-regulation of notch, hest, and msi1 genes and up-regulation of numb gene in the Notch pathway as well as the down-regulation of CTNNB1 and CCND1 genes in the Wnt/beta-catenin pathway in a time-dependent manner (p < 0.05). Conclusion: Lactobacilli cocktail was shown to have beneficial anti-tumor effects on HT-29 cells by modulating the Notch and Wnt/beta-catenin pathways; therefore, the use of Lactobacilli probiotics as nutritional supplements may prevent the incidence of colon cancer.