The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness

Cancer stemness represents one of the major mechanisms that predispose patients to tumor aggressiveness, metastasis, and treatment resistance. MicroRNA biogenesis is an important process controlling miRNA processing and maturation. Deregulation of miRNA biogenesis can lead to tumorigenesis and cance...

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Main Author: Kou-Juey Wu
Format: Article
Language:English
Published: Elsevier 2020-04-01
Series:Biomedical Journal
Subjects:
m6A
Online Access:http://www.sciencedirect.com/science/article/pii/S2319417020300275
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spelling doaj-b33fa903b9ae43b48f3f53e726b7b4652021-04-02T11:46:30ZengElsevierBiomedical Journal2319-41702020-04-01432107114The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemnessKou-Juey Wu0Cancer Genome Research Center, Chang Gung Memorial Hospital at Linkou, Taoyuan, Taiwan; Institute of Cellular and Organismic Biology, Academia Sinica, Taipei, Taiwan; Institute of Clinical Medical Sciences, Chang Gung University, Taoyuan, Taiwan; Corresponding author. Cancer Genome Research Center, Chang Gung Memorial Hospital at Linkou, 5, Fusing St., Gueishan, Taoyuan 333, Taiwan.Cancer stemness represents one of the major mechanisms that predispose patients to tumor aggressiveness, metastasis, and treatment resistance. MicroRNA biogenesis is an important process controlling miRNA processing and maturation. Deregulation of miRNA biogenesis can lead to tumorigenesis and cancer stemness. DDX17 is a co-factor of the miRNA microprocessor. Misregulation of DDX17 can be associated with cancer stemness. K63-linked polyubiquitination of DDX17 presents a concerted mechanism of decreased synthesis of stemness-inhibiting miRNAs and increased transcriptional activation of stemness-related gene expression. K63-linked polyubiquitination of HAUSP serves as a scaffold to anchor HIF-1α, CBP, the mediator complex, and the super-elongation complex to enhance HIF-1α-induced gene transcription. Recent progress in RNA modifications shows that RNA N6-methyladenosine (m6A) modification is a crucial mechanism to regulate RNA levels. M6A modification of miRNAs can also be linked to tumorigenesis and cancer stemness. Overall, miRNA biogenesis and K63-linked polyubiquitination of DDX17 play an important role in the induction of cancer stemness. Delineation of the mechanisms and identification of suitable targets may provide new therapeutic options for treatment-resistant cancers.http://www.sciencedirect.com/science/article/pii/S2319417020300275miRNA biogenesisDDX17Cancer stemnessHAUSPK63-linked polyubiquitinationm6A
collection DOAJ
language English
format Article
sources DOAJ
author Kou-Juey Wu
spellingShingle Kou-Juey Wu
The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness
Biomedical Journal
miRNA biogenesis
DDX17
Cancer stemness
HAUSP
K63-linked polyubiquitination
m6A
author_facet Kou-Juey Wu
author_sort Kou-Juey Wu
title The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness
title_short The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness
title_full The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness
title_fullStr The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness
title_full_unstemmed The role of miRNA biogenesis and DDX17 in tumorigenesis and cancer stemness
title_sort role of mirna biogenesis and ddx17 in tumorigenesis and cancer stemness
publisher Elsevier
series Biomedical Journal
issn 2319-4170
publishDate 2020-04-01
description Cancer stemness represents one of the major mechanisms that predispose patients to tumor aggressiveness, metastasis, and treatment resistance. MicroRNA biogenesis is an important process controlling miRNA processing and maturation. Deregulation of miRNA biogenesis can lead to tumorigenesis and cancer stemness. DDX17 is a co-factor of the miRNA microprocessor. Misregulation of DDX17 can be associated with cancer stemness. K63-linked polyubiquitination of DDX17 presents a concerted mechanism of decreased synthesis of stemness-inhibiting miRNAs and increased transcriptional activation of stemness-related gene expression. K63-linked polyubiquitination of HAUSP serves as a scaffold to anchor HIF-1α, CBP, the mediator complex, and the super-elongation complex to enhance HIF-1α-induced gene transcription. Recent progress in RNA modifications shows that RNA N6-methyladenosine (m6A) modification is a crucial mechanism to regulate RNA levels. M6A modification of miRNAs can also be linked to tumorigenesis and cancer stemness. Overall, miRNA biogenesis and K63-linked polyubiquitination of DDX17 play an important role in the induction of cancer stemness. Delineation of the mechanisms and identification of suitable targets may provide new therapeutic options for treatment-resistant cancers.
topic miRNA biogenesis
DDX17
Cancer stemness
HAUSP
K63-linked polyubiquitination
m6A
url http://www.sciencedirect.com/science/article/pii/S2319417020300275
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