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1.
Front Cell Dev Biol ; 9: 747667, 2021.
Article in English | MEDLINE | ID: mdl-35036403

ABSTRACT

Long noncoding RNAs (lncRNAs) are regulatory molecules which have been traditionally considered as "non-coding". Strikingly, recent evidence has demonstrated that many non-coding regions, including lncRNAs, do in fact contain small-open reading frames that code for small proteins that have been called microproteins. Only a few of them have been characterized so far, but they display key functions in a wide variety of cellular processes. Here, we show that TUNAR lncRNA encodes an evolutionarily conserved microprotein expressed in the nervous system that we have named pTUNAR. pTUNAR deficiency in mouse embryonic stem cells improves their differentiation potential towards neural lineage both in vitro and in vivo. Conversely, pTUNAR overexpression impairs neuronal differentiation by reduced neurite formation in different model systems. At the subcellular level, pTUNAR is a transmembrane protein that localizes in the endoplasmic reticulum and interacts with the calcium transporter SERCA2. pTUNAR overexpression reduces cytoplasmatic calcium, consistent with a possible role of pTUNAR as an activator of SERCA2. Altogether, our results suggest that our newly discovered microprotein has an important role in neural differentiation and neurite formation through the regulation of intracellular calcium. From a more general point of view, our results provide a proof of concept of the role of lncRNAs-encoded microproteins in neural differentiation.

2.
Cell Death Dis ; 11(12): 1045, 2020 12 10.
Article in English | MEDLINE | ID: mdl-33303756

ABSTRACT

Eukaryotic Translation Initiation Factor 5A (EIF5A) is a translation factor regulated by hypusination, a unique posttranslational modification catalyzed by deoxyhypusine synthetase (DHPS) and deoxyhypusine hydroxylase (DOHH) starting from the polyamine spermidine. Emerging data are showing that hypusinated EIF5A regulates key cellular processes such as autophagy, senescence, polyamine homeostasis, energy metabolism, and plays a role in cancer. However, the effects of EIF5A inhibition in preclinical cancer models, the mechanism of action, and specific translational targets are still poorly understood. We show here that hypusinated EIF5A promotes growth of colorectal cancer (CRC) cells by directly regulating MYC biosynthesis at specific pausing motifs. Inhibition of EIF5A hypusination with the DHPS inhibitor GC7 or through lentiviral-mediated knockdown of DHPS or EIF5A reduces the growth of various CRC cells. Multiplex gene expression analysis reveals that inhibition of hypusination impairs the expression of transcripts regulated by MYC, suggesting the involvement of this oncogene in the observed effect. Indeed, we demonstrate that EIF5A regulates MYC elongation without affecting its mRNA content or protein stability, by alleviating ribosome stalling at five distinct pausing motifs in MYC CDS. Of note, we show that blockade of the hypusination axis elicits a remarkable growth inhibitory effect in preclinical models of CRC and significantly reduces the size of polyps in APCMin/+ mice, a model of human familial adenomatous polyposis (FAP). Together, these data illustrate an unprecedented mechanism, whereby the tumor-promoting properties of hypusinated EIF5A are linked to its ability to regulate MYC elongation and provide a rationale for the use of DHPS/EIF5A inhibitors in CRC therapy.


Subject(s)
Colorectal Neoplasms/metabolism , Colorectal Neoplasms/pathology , Lysine/analogs & derivatives , Peptide Initiation Factors/metabolism , Proto-Oncogene Proteins c-myc/metabolism , RNA-Binding Proteins/metabolism , Adenomatous Polyposis Coli/genetics , Adenomatous Polyposis Coli/pathology , Amino Acid Motifs , Amino Acid Sequence , Animals , Cell Line, Tumor , Cell Proliferation/genetics , Colorectal Neoplasms/genetics , Down-Regulation , Gene Expression Profiling , Gene Expression Regulation, Neoplastic , Humans , Lysine/metabolism , Mice, Nude , Open Reading Frames/genetics , Oxidoreductases Acting on CH-NH Group Donors/antagonists & inhibitors , Oxidoreductases Acting on CH-NH Group Donors/metabolism , Peptide Initiation Factors/chemistry , Peptides/metabolism , Polyamines/metabolism , Protein Biosynthesis , RNA-Binding Proteins/chemistry , Eukaryotic Translation Initiation Factor 5A
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