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Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation

Wilms tumor is the most common renal malignancy in children. Known gene mutations account for about 40% of all wilms tumor cases, but the full map of genetic mutations in wilms tumor is far from clear. Whole genome sequencing and RNA sequencing were performed in 5 pairs of wilms tumor tissues and ad...

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Autores principales: Liu, Bai-Hui, Liu, Gong-Bao, Zhang, Bin-Bin, Shen, Jian, Xie, Lu-Lu, Liu, Xiang-Qi, Yao, Wei, Dong, Rui, Bi, Yun-Li, Dong, Kui-Ran
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9097904/
https://www.ncbi.nlm.nih.gov/pubmed/35574418
http://dx.doi.org/10.3389/fonc.2022.756117
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author Liu, Bai-Hui
Liu, Gong-Bao
Zhang, Bin-Bin
Shen, Jian
Xie, Lu-Lu
Liu, Xiang-Qi
Yao, Wei
Dong, Rui
Bi, Yun-Li
Dong, Kui-Ran
author_facet Liu, Bai-Hui
Liu, Gong-Bao
Zhang, Bin-Bin
Shen, Jian
Xie, Lu-Lu
Liu, Xiang-Qi
Yao, Wei
Dong, Rui
Bi, Yun-Li
Dong, Kui-Ran
author_sort Liu, Bai-Hui
collection PubMed
description Wilms tumor is the most common renal malignancy in children. Known gene mutations account for about 40% of all wilms tumor cases, but the full map of genetic mutations in wilms tumor is far from clear. Whole genome sequencing and RNA sequencing were performed in 5 pairs of wilms tumor tissues and adjacent normal tissues to figure out important genetic mutations. Gene knock-down, CRISPR-induced mutations were used to investigate their potential effects in cell lines and in-vivo xenografted model. Mutations in seven novel genes (MUC6, GOLGA6L2, GPRIN2, MDN1, MUC4, OR4L1 and PDE4DIP) occurred in more than one patient. The most prevalent mutation was found in MUC6, which had 7 somatic exonic variants in 4 patients. In addition, TaqMan assay and immunoblot confirmed that MUC6 expression was reduced in WT tissues when compared with control tissues. Moreover, the results of MUC6 knock-down assay and CRISPR-induced MUC6 mutations showed that MUC6 inhibited tumor aggression via autophagy-dependent β-catenin degradation while its mutations attenuated tumor-suppressive effects of MUC6. Seven novel mutated genes (MUC6, GOLGA6L2, GPRIN2, MDN1, MUC4, OR4L1 and PDE4DIP) were found in WT, among which MUC6 was the most prevalent one. MUC6 acted as a tumor suppressive gene through autophagy dependent β-catenin pathway.
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spelling pubmed-90979042022-05-13 Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation Liu, Bai-Hui Liu, Gong-Bao Zhang, Bin-Bin Shen, Jian Xie, Lu-Lu Liu, Xiang-Qi Yao, Wei Dong, Rui Bi, Yun-Li Dong, Kui-Ran Front Oncol Oncology Wilms tumor is the most common renal malignancy in children. Known gene mutations account for about 40% of all wilms tumor cases, but the full map of genetic mutations in wilms tumor is far from clear. Whole genome sequencing and RNA sequencing were performed in 5 pairs of wilms tumor tissues and adjacent normal tissues to figure out important genetic mutations. Gene knock-down, CRISPR-induced mutations were used to investigate their potential effects in cell lines and in-vivo xenografted model. Mutations in seven novel genes (MUC6, GOLGA6L2, GPRIN2, MDN1, MUC4, OR4L1 and PDE4DIP) occurred in more than one patient. The most prevalent mutation was found in MUC6, which had 7 somatic exonic variants in 4 patients. In addition, TaqMan assay and immunoblot confirmed that MUC6 expression was reduced in WT tissues when compared with control tissues. Moreover, the results of MUC6 knock-down assay and CRISPR-induced MUC6 mutations showed that MUC6 inhibited tumor aggression via autophagy-dependent β-catenin degradation while its mutations attenuated tumor-suppressive effects of MUC6. Seven novel mutated genes (MUC6, GOLGA6L2, GPRIN2, MDN1, MUC4, OR4L1 and PDE4DIP) were found in WT, among which MUC6 was the most prevalent one. MUC6 acted as a tumor suppressive gene through autophagy dependent β-catenin pathway. Frontiers Media S.A. 2022-04-28 /pmc/articles/PMC9097904/ /pubmed/35574418 http://dx.doi.org/10.3389/fonc.2022.756117 Text en Copyright © 2022 Liu, Liu, Zhang, Shen, Xie, Liu, Yao, Dong, Bi and Dong https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Liu, Bai-Hui
Liu, Gong-Bao
Zhang, Bin-Bin
Shen, Jian
Xie, Lu-Lu
Liu, Xiang-Qi
Yao, Wei
Dong, Rui
Bi, Yun-Li
Dong, Kui-Ran
Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation
title Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation
title_full Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation
title_fullStr Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation
title_full_unstemmed Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation
title_short Tumor Suppressive Role of MUC6 in Wilms Tumor via Autophagy-Dependent β-Catenin Degradation
title_sort tumor suppressive role of muc6 in wilms tumor via autophagy-dependent β-catenin degradation
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9097904/
https://www.ncbi.nlm.nih.gov/pubmed/35574418
http://dx.doi.org/10.3389/fonc.2022.756117
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