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Items: 23

1.

Identification of murine phosphodiesterase 5A isoforms and their functional characterization in HL-1 cardiac cell line.

Campolo F, Zevini A, Cardarelli S, Monaco L, Barbagallo F, Pellegrini M, Cornacchione M, Di Grazia A, De Arcangelis V, Gianfrilli D, Giorgi M, Lenzi A, Isidori AM, Naro F.

J Cell Physiol. 2018 Jan;233(1):325-337. doi: 10.1002/jcp.25880. Epub 2017 May 18.

PMID:
28247930
2.

Pathways Implicated in Tadalafil Amelioration of Duchenne Muscular Dystrophy.

De Arcangelis V, Strimpakos G, Gabanella F, Corbi N, Luvisetto S, Magrelli A, Onori A, Passananti C, Pisani C, Rome S, Severini C, Naro F, Mattei E, Di Certo MG, Monaco L.

J Cell Physiol. 2016 Jan;231(1):224-32. doi: 10.1002/jcp.25075.

PMID:
26097015
3.

A long lasting β1 adrenergic receptor stimulation of cAMP/protein kinase A (PKA) signal in cardiac myocytes.

Fu Q, Kim S, Soto D, De Arcangelis V, DiPilato L, Liu S, Xu B, Shi Q, Zhang J, Xiang YK.

J Biol Chem. 2014 May 23;289(21):14771-81. doi: 10.1074/jbc.M113.542589. Epub 2014 Apr 8.

4.

Inflammation in muscular dystrophy and the beneficial effects of non-steroidal anti-inflammatory drugs.

Serra F, Quarta M, Canato M, Toniolo L, De Arcangelis V, Trotta A, Spath L, Monaco L, Reggiani C, Naro F.

Muscle Nerve. 2012 Nov;46(5):773-84. doi: 10.1002/mus.23432. Epub 2012 Jul 27.

PMID:
22847332
5.

β1-syntrophin modulation by miR-222 in mdx mice.

De Arcangelis V, Serra F, Cogoni C, Vivarelli E, Monaco L, Naro F.

PLoS One. 2010 Aug 10;5(8). pii: e12098. doi: 10.1371/journal.pone.0012098.

6.

Equilibrium between adenylyl cyclase and phosphodiesterase patterns adrenergic agonist dose-dependent spatiotemporal cAMP/protein kinase A activities in cardiomyocytes.

De Arcangelis V, Liu S, Zhang D, Soto D, Xiang YK.

Mol Pharmacol. 2010 Sep;78(3):340-9. doi: 10.1124/mol.110.064444. Epub 2010 Jun 7.

7.

Cardiomyocytes with disrupted CFTR function require CaMKII and Ca(2+)-activated Cl(-) channel activity to maintain contraction rate.

Sellers ZM, De Arcangelis V, Xiang Y, Best PM.

J Physiol. 2010 Jul 1;588(Pt 13):2417-29. doi: 10.1113/jphysiol.2010.188334. Epub 2010 May 4.

8.

Binding of amyloid beta peptide to beta2 adrenergic receptor induces PKA-dependent AMPA receptor hyperactivity.

Wang D, Govindaiah G, Liu R, De Arcangelis V, Cox CL, Xiang YK.

FASEB J. 2010 Sep;24(9):3511-21. doi: 10.1096/fj.10-156661. Epub 2010 Apr 15.

9.

Differential association of phosphodiesterase 4D isoforms with beta2-adrenoceptor in cardiac myocytes.

De Arcangelis V, Liu R, Soto D, Xiang Y.

J Biol Chem. 2009 Dec 4;284(49):33824-32. doi: 10.1074/jbc.M109.020388. Epub 2009 Oct 1.

10.

Agonist dose-dependent phosphorylation by protein kinase A and G protein-coupled receptor kinase regulates beta2 adrenoceptor coupling to G(i) proteins in cardiomyocytes.

Liu R, Ramani B, Soto D, De Arcangelis V, Xiang Y.

J Biol Chem. 2009 Nov 20;284(47):32279-87. doi: 10.1074/jbc.M109.021428. Epub 2009 Aug 25.

11.

Dynamic protein kinase a activities induced by beta-adrenoceptors dictate signaling propagation for substrate phosphorylation and myocyte contraction.

Soto D, De Arcangelis V, Zhang J, Xiang Y.

Circ Res. 2009 Mar 27;104(6):770-9. doi: 10.1161/CIRCRESAHA.108.187880. Epub 2009 Feb 12.

12.

Identification of Drosophila mitotic genes by combining co-expression analysis and RNA interference.

Somma MP, Ceprani F, Bucciarelli E, Naim V, De Arcangelis V, Piergentili R, Palena A, Ciapponi L, Giansanti MG, Pellacani C, Petrucci R, Cenci G, Vernì F, Fasulo B, Goldberg ML, Di Cunto F, Gatti M.

PLoS Genet. 2008 Jul 18;4(7):e1000126. doi: 10.1371/journal.pgen.1000126.

13.
14.

Norepinephrine- and epinephrine-induced distinct beta2-adrenoceptor signaling is dictated by GRK2 phosphorylation in cardiomyocytes.

Wang Y, De Arcangelis V, Gao X, Ramani B, Jung YS, Xiang Y.

J Biol Chem. 2008 Jan 25;283(4):1799-807. Epub 2007 Dec 3.

15.

V1a vasopressin receptor expression is modulated during myogenic differentiation.

Alvisi M, De Arcangelis V, Ciccone L, Palombi V, Alessandrini M, Nemoz G, Molinaro M, Adamo S, Naro F.

Differentiation. 2008 Apr;76(4):371-80. Epub 2007 Nov 16.

PMID:
18021262
16.

Phospholipase D is involved in myogenic differentiation through remodeling of actin cytoskeleton.

Komati H, Naro F, Mebarek S, De Arcangelis V, Adamo S, Lagarde M, Prigent AF, Némoz G.

Mol Biol Cell. 2005 Mar;16(3):1232-44. Epub 2004 Dec 22.

17.

Hypertrophy and transcriptional regulation induced in myogenic cell line L6-C5 by an increase of extracellular calcium.

De Arcangelis V, Coletti D, Canato M, Molinaro M, Adamo S, Reggiani C, Naro F.

J Cell Physiol. 2005 Mar;202(3):787-95.

PMID:
15389566
18.

A bimodal modulation of the cAMP pathway is involved in the control of myogenic differentiation in l6 cells.

Naro F, De Arcangelis V, Sette C, Ambrosio C, Komati H, Molinaro M, Adamo S, Nemoz G.

J Biol Chem. 2003 Dec 5;278(49):49308-15. Epub 2003 Sep 23.

19.

IGF-I-induced differentiation of L6 myogenic cells requires the activity of cAMP-phosphodiesterase.

De Arcangelis V, Coletti D, Conti M, Lagarde M, Molinaro M, Adamo S, Nemoz G, Naro F.

Mol Biol Cell. 2003 Apr;14(4):1392-404.

20.

Increase in cytosolic Ca2+ induced by elevation of extracellular Ca2+ in skeletal myogenic cells.

Naro F, De Arcangelis V, Coletti D, Molinaro M, Zani B, Vassanelli S, Reggiani C, Teti A, Adamo S.

Am J Physiol Cell Physiol. 2003 Apr;284(4):C969-76. Epub 2002 Dec 18.

21.

Sequence dependence of translational positioning of core nucleosomes.

Negri R, Buttinelli M, Panetta G, De Arcangelis V, Di Mauro E, Travers A.

J Mol Biol. 2001 Apr 6;307(4):987-99.

PMID:
11286550
22.

Helical repeat of DNA in the nucleosome core particle.

Negri R, Buttinelli M, Panetta G, De Arcangelis V, Di Mauro E, Travers A.

Biochem Soc Trans. 2000;28(4):373-6.

PMID:
10961922
23.

Involvement of type 4 cAMP-phosphodiesterase in the myogenic differentiation of L6 cells.

Naro F, Sette C, Vicini E, De Arcangelis V, Grange M, Conti M, Lagarde M, Molinaro M, Adamo S, Némoz G.

Mol Biol Cell. 1999 Dec;10(12):4355-67.

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