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Biomedical subjects

F Albericio

Publications and source records attributed to F Albericio.

59 records · Page 4Linked to original sources

Synthesis and binding properties of oligonucleotides carrying nuclear localization sequences.

The synthesis of oligonucleotides carrying nuclear localization peptide sequences is described using two strategies: first, oligonucleotides carrying a thiol group at the 5' end were reacted with maleimido peptides; second, peptide and oligonucleotide were prepared stepwise on the same support, yielding oligonucleotide-3'-peptide conjugates. This second approach was thoroughly studied. Using amino acids and small peptides as model compounds, some side reactions were analyzed, detected, and minimized. Oligonucleotides complementary to Ha-ras gene and carrying nuclear localization peptides at the 3' and 5' ends were prepared. Melting temperature studies showed that duplexes containing nuclear localization peptides were more stable than duplexes with unmodified oligonucleotides. Moreover, oligonucleotide-peptide conjugates maintain a good mismatch discrimination when they bind to their target RNA.

Amino Acid Sequence↗

Synthesis of a sulfahydantoin library.

A five-step solid-phase synthesis of sulfahydantoins from alpha-amino acids and aldehydes was developed. The synthetic method allows the use of hindered amino acids, including Val, Phg, and Aib, and use of aromatic aldehydes substituted with electron-withdrawing and -donating groups. Some limitations were encountered with amino acids with reactive side chains. A small but diverse library of compounds was produced for biological testing.

Aldehydes↗

Compatibility of the S-(3-nitro-2-pyridinesulfenyl) protecting group with DCC/HOBt coupling chemistry.

Two recent reports on the partial lability of the 3-nitro-2-pyridinesulfenyl (Npys) thiol protecting group towards 1-hydroxy-benzotriazole (HOBt) have prompted a rechecking of the chemical behavior of this group. Using both soluble and polymer-bound forms of Cys(Npys) as test materials, the complete stability of this protection against HOBt has now been definitively established, and its compatibility with Boc-benzyl-based solid-phase synthesis strategies has been clearly confirmed by stability assays against a wide range of reagents, as well as by the successful synthesis of several Cys(Npys)-containing peptides.

Amino Acid Sequence↗

Convergent solid-phase peptide synthesis IX: application to the synthesis of peptides with repetitive sequences.

The synthesis of a 36 amino acid peptide containing six conserved repeats of Val-His-Leu-Pro-Pro-Pro which corresponds to the glutelin-2 protein of maize has been carried out using a convergent approach. The protected single sequence repeat has been synthesized using a combination of a 9-fluorenylmethyloxycarbonyl (Fmoc) protection scheme and a p-alkoxybenzyl resin. The final peptide, as well as the different intermediate peptides, has been characterized by fast atom bombardment mass spectrometry (FAB-MS) and by co-elution with another sample obtained by stepwise continuous flow synthesis.

Amino Acid Sequence↗

Optimized preparation of deca(L-alanyl)-L-valinamide by 9-fluorenylmethyloxycarbonyl (Fmoc) solid-phase synthesis on polyethylene glycol-polystyrene (PEG-PS) graft supports, with 1,8-diazobicyclo [5.4.0]-undec-7-ene (DBU) deprotection.

Deca(L-alanyl)-L-valinamide is known to be a challenging model target for solidphase peptide synthesis, due to its hydrophobicity and its tendency to form secondary structures which inhibit acylation and deprotection. Here we report systematic studies on the synthesis of this peptide on an automated continuous-flow instrument, using the 9-fluorenylmethyloxycarbonyl (Fmoc) group for N alpha-amino protection and a polyethylene-glycol polystyrene (PEGPS) graft support. The optimal deprotection reagent proved to be DBU-piperidine-DMF (1:1:48, vol/vol/vol). The synthetic peptides were analyzed and characterized by high-performance liquid chromatography and several mass spectrometric techniques.

Bridged Bicyclo Compounds, Heterocyclic↗