Journal Article10.1038/S41388-018-0442-6
Identification of UAP1L1 as a critical factor for protein O-GlcNAcylation and cell proliferation in human hepatoma cells.
Ching-Yu Lai,Ching-Yu Lai,Hsuan Liu,Kai Xuan Tin,Yi Huang,Kun-Hai Yeh,Hubert W Peng,Huan-Da Chen,Jun-Yu He,Yun-Jung Chiang,Chun-Shan Liu,Shih-Yen Weng,Shih-Yen Weng,Mi-Hua Tao,Mi-Hua Tao,Jeffrey J.Y. Yen,Jeffrey J.Y. Yen,Hsin-Fang Yang-Yen,Hsin-Fang Yang-Yen +18 more
34
TL;DR: UAP1L1 knockdown attenuated c- MYC O-GlcNAcylation and protein stability, and overexpression of c-MYC significantly rescued the proliferation defect of UAP1l1 knock down HepG2 cells, suggesting that c-myC is one downstream target of U AP1L 1 that contributes to UAP 1L1-mediated cell proliferation, at least in HepG 2 cells.
read more
Abstract: Aged hepatocyte-specific-Mcl-1 knockout (MKO-hep) mice are prone to develop liver tumors mimicking human hepatocellular carcinoma (HCC). Here we reported that a protein named UDP-N-acetylglucosamine pyrophosphorylase-1-like-1 (Uap1l1) is upregulated in the liver of young MKO-hep mice without any macroscopically detectable tumor nodules and is prominently expressed in the hepatic tumors developed in the aged MKO-hep mice. Intriguingly, human UAP1L1 is also significantly upregulated in a distinct subset of HCC tissues and patients with upregulated expression of UAP1L1 appeared to have poor prognosis. Overexpression of UAP1L1 significantly promoted, whereas UAP1L1 knockdown markedly reduced the proliferation of human hepatoma cells both in vitro and in vivo. UAP1L1 shows ~59% sequence identity to UDP-N-acetylglucosamine pyrophosphorylase-1 (UAP1), which is directly involved in the synthesis of the sugar donor (UDP-GlcNac) for N-acetylglucosamine modification (O-GlcNAcylation) of proteins. However, unlike UAP1, UAP1L1 harbors very limited UDP-GlcNAc synthesis activity. Moreover, although both UAP1 and UAP1L1 are required for O-GlcNAc transferase (OGT)-mediated protein O-GlcNAcylation, they appear to function distinctly from each other. UAP1L1 directly interacts with OGT, but does not seem to be an OGT substrate. In addition, UAP1L1 alone is not sufficient to activate OGT activity in vitro, suggesting that UAP1L1 may function together with other proteins to modulate OGT activity in vivo. Lastly, UAP1L1 knockdown attenuated c-MYC O-GlcNAcylation and protein stability, and overexpression of c-MYC significantly rescued the proliferation defect of UAP1L1 knockdown HepG2 cells, suggesting that c-MYC is one downstream target of UAP1L1 that contributes to UAP1L1-mediated cell proliferation, at least in HepG2 cells.
read more
Chat with Paper
AI Agents for this Paper
Find similar papers on Google Scholar, PubMed and Arxiv
Write a critical review of this paper
Analyze citations of this paper to find unaddressed research gaps
Citations
Role of O-Linked N-Acetylglucosamine Protein Modification in Cellular (Patho)Physiology.
TL;DR: The current understanding of the processes involved in regulating O- GlcNAc turnover, the role of O-GlcNAcylation in regulating cellular physiology, and how dysregulation in O- GloverNAc cycling contributes to pathophysiological processes are outlined.
211
The Hexosamine Biosynthesis Pathway: Regulation and Function
TL;DR: In this article , the authors discuss the regulation of GFAT, the key enzyme of the de novo HBP, as well as other metabolic enzymes that catalyze the reactions to produce UDP-GlcNAc.
Molecular mechanisms regulating O-linked N-acetylglucosamine (O-GlcNAc)–processing enzymes
TL;DR: This work amalgamate these emerging mechanisms from a structural and molecular perspective to explore how the cell exerts fine control to regulate O-GlcNAcylation of diverse proteins in a selective fashion.
56
The O-GlcNAcylation and its promotion to hepatocellular carcinoma.
TL;DR: O-GlcNAcylation is a posttranslational modification that attaches O-linked β-N-acetylglucosamine (O-glcNAc) to the serine and threonine residues of proteins as discussed by the authors .
19
Use of cellular metabolomics and lipidomics to decipher the mechanism of Huachansu injection-based intervention against human hepatocellular carcinoma cells.
TL;DR: Huachansu (HCS) injection has been used for the clinical treatment of hepatocellular carcinoma (HCC) patients in China for more than thirty years as discussed by the authors .
18
References
The cBio Cancer Genomics Portal: An Open Platform for Exploring Multidimensional Cancer Genomics Data
Ethan Cerami,Jianjiong Gao,Ugur Dogrusoz,Benjamin Gross,Selcuk Onur Sumer,Bulent Arman Aksoy,Anders Jacobsen,Caitlin Byrne,Michael Heuer,Erik G. Larsson,Yevgeniy Antipin,Boris Reva,Arthur P. Goldberg,Chris Sander,Nikolaus Schultz +14 more
TL;DR: The cBio Cancer Genomics Portal significantly lowers the barriers between complex genomic data and cancer researchers who want rapid, intuitive, and high-quality access to molecular profiles and clinical attributes from large-scale cancer genomics projects and empowers researchers to translate these rich data sets into biologic insights and clinical applications.
Integrative analysis of complex cancer genomics and clinical profiles using the cBioPortal
Jianjiong Gao,Bulent Arman Aksoy,Ugur Dogrusoz,Gideon Dresdner,Benjamin Gross,S. Onur Sumer,Yichao Sun,Anders Jacobsen,Rileen Sinha,Erik Larsson,Ethan Cerami,Chris Sander,Nikolaus Schultz +12 more
TL;DR: A practical guide to the analysis and visualization features of the cBioPortal for Cancer Genomics, which makes complex cancer genomics profiles accessible to researchers and clinicians without requiring bioinformatics expertise, thus facilitating biological discoveries.
14.4K
I-TASSER: a unified platform for automated protein structure and function prediction
TL;DR: The iterative threading assembly refinement (I-TASSER) server is an integrated platform for automated protein structure and function prediction based on the sequence- to-structure-to-function paradigm.
The I-TASSER Suite: protein structure and function prediction
TL;DR: A stand-alone I-TASSER Suite that can be used for off-line protein structure and function prediction and three complementary algorithms to enhance function inferences are developed, the consensus of which is derived by COACH4 using support vector machines.
Galectins as modulators of tumour progression
TL;DR: Current research indicates that galectins have important roles in cancer; they contribute to neoplastic transformation, tumour cell survival, angiogenesis and tumour metastasis, and might have a key role helping tumours to escape immune surveillance.
1.4K