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1.
Org Lett ; 25(23): 4383-4387, 2023 06 16.
Article in English | MEDLINE | ID: mdl-37284781

ABSTRACT

A C-N bond-forming cross-dehydrogenative coupling of a collection of Tyr-containing peptides and estrogens with heteroarenes is described. This oxidative coupling is distinguished by its scalability, operational simplicity, and air tolerance and enables the appendance of phenothiazines and phenoxazines in phenol-like compounds. When incorporated into a Tb(III) metallopeptide, the Tyr-phenothiazine moiety acts as a sensitizer for the Tb(III) ion, providing a new tool for the design of luminescent probes.


Subject(s)
Phenol , Phenols , Amination , Oxidative Coupling
2.
Chembiochem ; 24(13): e202300072, 2023 07 03.
Article in English | MEDLINE | ID: mdl-36964960

ABSTRACT

Tyrosine nitration, a post-translational modification (PTM) that takes place under nitrosative stress conditions, occurs through a non-enzymatic peroxynitrite-mediated reaction. Although protein nitration has long been considered an irreversible PTM involved in nitrosative stress-associated diseases, it has also been suggested to be a regulatory mechanism of signal transduction. Therefore, the development of tools that help to understand this protein modification is of great interest. Herein, we explore a TbIII -chelating metallopeptide to monitor tyrosine nitration. The luminescence of this probe decreases significantly between its non-nitrated and nitrated states, and this reduction in the luminescence intensity is directly related to the degree of tyrosine nitration after treatment with peroxynitrite. Remarkably, the luminescence intensity changes after nitration are not affected in the presence of complex biological media, which makes it a promising tool for understanding this protein modification.


Subject(s)
Peroxynitrous Acid , Tyrosine , Tyrosine/metabolism , Peroxynitrous Acid/metabolism , Proteins
3.
Chem Commun (Camb) ; 56(58): 8000-8014, 2020 Jul 25.
Article in English | MEDLINE | ID: mdl-32495761

ABSTRACT

Peptides have become excellent platforms for the design of peptide-nanoparticle hybrid superstructures, owing to their self-assembly and binding/recognition capabilities. Morover, peptide sequences can be encoded and modified to finely tune the structure of the hybrid systems and pursue functionalities that hold promise in an array of high-end applications. This feature article summarizes the different methodologies that have been developed to obtain self-assembled peptide-inorganic nanoparticle hybrid architectures, and discusses how the proper encoding of the peptide sequences can be used for tailoring the architecture and/or functionality of the final systems. We also describe the applications of these hybrid superstructures in different fields, with a brief look at future possibilities towards the development of new functional hybrid materials.


Subject(s)
Nanoparticles/chemistry , Peptides/chemistry , Macromolecular Substances/chemical synthesis , Macromolecular Substances/chemistry , Molecular Structure , Particle Size , Surface Properties
4.
iScience ; 23(1): 100749, 2020 Jan 24.
Article in English | MEDLINE | ID: mdl-31884169

ABSTRACT

During sexual reproduction in the ciliate, Tetrahymena thermophila, cells of complementary mating type pair ("conjugate") undergo simultaneous meiosis and fertilize each other. In both mating partners only one of the four meiotic products is "selected" to escape autophagy, and this nucleus divides mitotically to produce two pronuclei. The migrating pronucleus of one cell translocates to the mating partner and fuses with its stationary pronucleus and vice versa. Selection of the designated gametic nucleus was thought to depend on its position within the cell because it always attaches to the junction with the partner cell. Here we show that a transmembrane protein, Semi1, is crucial for attachment. Loss of Semi1 causes failure to attach and consequent infertility. However, a nucleus is selected and gives rise to pronuclei regardless of Semi1 expression, indicating that attachment of a nucleus to the junction is not a precondition for selection but follows the selection process.

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