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The Switch from NF-YAl to NF-YAs Isoform Impairs Myotubes Formation

Articolo
Data di Pubblicazione:
2020
Citazione:
The Switch from NF-YAl to NF-YAs Isoform Impairs Myotubes Formation / D. Libetti, A. Bernardini, S. Sertic, G. Messina, D. Dolfini, R. Mantovani. - In: CELLS. - ISSN 2073-4409. - 9:3(2020 Mar), pp. 789.1-789.21.
Abstract:
NF-YA, the regulatory subunit of the trimeric transcription factor (TF) NF-Y, is regulated by alternative splicing (AS) generating two major isoforms, "long" (NF-YAl) and "short" (NF-YAs). Muscle cells express NF-YAl. We ablated exon 3 in mouse C2C12 cells by a four-guide CRISPR/Cas9n strategy, obtaining clones expressing exclusively NF-YAs (C2-YAl-KO). C2-YAl-KO cells grow normally, but are unable to differentiate. Myogenin and-to a lesser extent, MyoD- levels are substantially lower in C2-YAl-KO, before and after differentiation. Expression of the fusogenic Myomaker and Myomixer genes, crucial for the early phases of the process, is not induced. Myomaker and Myomixer promoters are bound by MyoD and Myogenin, and Myogenin overexpression induces their expression in C2-YAl-KO. NF-Y inactivation reduces MyoD and Myogenin, but not directly: the Myogenin promoter is CCAAT-less, and the canonical CCAAT of the MyoD promoter is not bound by NF-Y in vivo. We propose that NF-YAl, but not NF-YAs, maintains muscle commitment by indirectly regulating Myogenin and MyoD expression in C2C12 cells. These experiments are the first genetic evidence that the two NF-YA isoforms have functionally distinct roles.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
C2C12 cells; CRISPR-Cas9; NF-Y; exon deletion; muscle differentiation; splicing isoforms.
Elenco autori:
D. Libetti, A. Bernardini, S. Sertic, G. Messina, D. Dolfini, R. Mantovani
Autori di Ateneo:
BERNARDINI ANDREA ( autore )
DOLFINI DILETTA ( autore )
MANTOVANI ROBERTO ( autore )
MESSINA GRAZIELLA ( autore )
SERTIC SARAH ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/723901
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/723901/1441952/Libetti%20et%20al.,%20Cells%202020.pdf
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Settori (3)


Settore BIO/11 - Biologia Molecolare

Settore BIO/17 - Istologia

Settore BIO/18 - Genetica
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