Cyclic adenosine diphosphate ribose (cADPR) is a cyclic nucleotide involved in the Ca2+ homeostasis. In its structure, the northern ribose, bonded to adenosine through an N1 glycosidic bond, is connected to the southern ribose through a pyrophosphate bridge. Due to the chemical instability at the N1 glycosidic bond, new bioactive cADPR derivatives have been synthesized. One of the most interesting analogues is the cyclic inosine diphosphate ribose (cIDPR), in which the hypoxanthine replaced adenosine. The efforts for synthesizing new linear and cyclic northern ribose modified cIDPR analogues led us to study in detail the inosine N1 alkylation reaction. In the last few years, we have produced new flexible cIDPR analogues, where the northern ribose has been replaced by alkyl chains. With the aim to obtain the closest flexible cIDPR analogue, we have attached to the inosine N1 position a 2”,3”-dihydroxypentyl chain, possessing the two OH groups in a ribose-like fashion. The inosine alkylation reaction afforded also the O6-alkylated regioisomer, which could be a useful intermediate for the construction of new kinds of cADPR mimics.

O6-[(2”,3”-O-Isopropylidene-5”-O-tbutyldimethylsilyl)pentyl]- 5′-O-tbutyldiphenylsilyl-2′,3′-O-isopropylideneinosine / Marzano, Maria; Terracciano, Monica; Piccialli, Vincenzo; Mahal, Ahmed; Nilo, Roberto; D'Errico, Stefano. - In: MOLBANK. - ISSN 1422-8599. - 2022:M1345(2022), pp. 1-7. [10.3390/M1345]

O6-[(2”,3”-O-Isopropylidene-5”-O-tbutyldimethylsilyl)pentyl]- 5′-O-tbutyldiphenylsilyl-2′,3′-O-isopropylideneinosine

Maria Marzano
Primo
Data Curation
;
Monica Terracciano
Data Curation
;
Vincenzo Piccialli
Methodology
;
Stefano D’Errico
Ultimo
Supervision
2022

Abstract

Cyclic adenosine diphosphate ribose (cADPR) is a cyclic nucleotide involved in the Ca2+ homeostasis. In its structure, the northern ribose, bonded to adenosine through an N1 glycosidic bond, is connected to the southern ribose through a pyrophosphate bridge. Due to the chemical instability at the N1 glycosidic bond, new bioactive cADPR derivatives have been synthesized. One of the most interesting analogues is the cyclic inosine diphosphate ribose (cIDPR), in which the hypoxanthine replaced adenosine. The efforts for synthesizing new linear and cyclic northern ribose modified cIDPR analogues led us to study in detail the inosine N1 alkylation reaction. In the last few years, we have produced new flexible cIDPR analogues, where the northern ribose has been replaced by alkyl chains. With the aim to obtain the closest flexible cIDPR analogue, we have attached to the inosine N1 position a 2”,3”-dihydroxypentyl chain, possessing the two OH groups in a ribose-like fashion. The inosine alkylation reaction afforded also the O6-alkylated regioisomer, which could be a useful intermediate for the construction of new kinds of cADPR mimics.
2022
O6-[(2”,3”-O-Isopropylidene-5”-O-tbutyldimethylsilyl)pentyl]- 5′-O-tbutyldiphenylsilyl-2′,3′-O-isopropylideneinosine / Marzano, Maria; Terracciano, Monica; Piccialli, Vincenzo; Mahal, Ahmed; Nilo, Roberto; D'Errico, Stefano. - In: MOLBANK. - ISSN 1422-8599. - 2022:M1345(2022), pp. 1-7. [10.3390/M1345]
File in questo prodotto:
File Dimensione Formato  
Molbank_2022.pdf

accesso aperto

Tipologia: Versione Editoriale (PDF)
Licenza: Creative commons
Dimensione 672.64 kB
Formato Adobe PDF
672.64 kB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/923947
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 3
  • ???jsp.display-item.citation.isi??? 2
social impact