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Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A

Molecular probes are useful for both studying and controlling the functions of enzymes and other proteins. The most useful probes have high affinity for their target, along with small size and resistance to degradation. Here, we report on new surrogates for nucleic acids that fulfill these criteria....

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Detalles Bibliográficos
Autores principales: Thiyagarajan, Nethaji, Smith, Bryan D, Raines, Ronald T, Acharya, K Ravi
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039443/
https://www.ncbi.nlm.nih.gov/pubmed/21205197
http://dx.doi.org/10.1111/j.1742-4658.2010.07976.x
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author Thiyagarajan, Nethaji
Smith, Bryan D
Raines, Ronald T
Acharya, K Ravi
author_facet Thiyagarajan, Nethaji
Smith, Bryan D
Raines, Ronald T
Acharya, K Ravi
author_sort Thiyagarajan, Nethaji
collection PubMed
description Molecular probes are useful for both studying and controlling the functions of enzymes and other proteins. The most useful probes have high affinity for their target, along with small size and resistance to degradation. Here, we report on new surrogates for nucleic acids that fulfill these criteria. Isosteres in which phosphoryl [R–O–P(O(2)(−))–O–R′] groups are replaced with N-acylsulfonamidyl [R–C(O)–N(−)–S(O(2))–R′] or sulfonimidyl [R–S(O(2))–N(−)–S(O(2))–R′] groups increase the number of nonbridging oxygens from two (phosphoryl) to three (N-acylsulfonamidyl) or four (sulfonimidyl). Six such isosteres were found to be more potent inhibitors of catalysis by bovine pancreatic RNase A than are parent compounds containing phosphoryl groups. The atomic structures of two RNase A·N-acylsulfonamide complexes were determined at high resolution by X-ray crystallography. The N-acylsulfonamidyl groups were observed to form more hydrogen bonds with active site residues than did the phosphoryl groups in analogous complexes. These data encourage the further development and use of N-acylsulfonamides and sulfonimides as antagonists of nucleic acid-binding proteins. DATABASE: Structural data for the two RNase A complexes are available in the Protein Data Bank under accession numbers 2xog and 2xoi
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spelling pubmed-30394432011-06-28 Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A Thiyagarajan, Nethaji Smith, Bryan D Raines, Ronald T Acharya, K Ravi FEBS J Original Articles Molecular probes are useful for both studying and controlling the functions of enzymes and other proteins. The most useful probes have high affinity for their target, along with small size and resistance to degradation. Here, we report on new surrogates for nucleic acids that fulfill these criteria. Isosteres in which phosphoryl [R–O–P(O(2)(−))–O–R′] groups are replaced with N-acylsulfonamidyl [R–C(O)–N(−)–S(O(2))–R′] or sulfonimidyl [R–S(O(2))–N(−)–S(O(2))–R′] groups increase the number of nonbridging oxygens from two (phosphoryl) to three (N-acylsulfonamidyl) or four (sulfonimidyl). Six such isosteres were found to be more potent inhibitors of catalysis by bovine pancreatic RNase A than are parent compounds containing phosphoryl groups. The atomic structures of two RNase A·N-acylsulfonamide complexes were determined at high resolution by X-ray crystallography. The N-acylsulfonamidyl groups were observed to form more hydrogen bonds with active site residues than did the phosphoryl groups in analogous complexes. These data encourage the further development and use of N-acylsulfonamides and sulfonimides as antagonists of nucleic acid-binding proteins. DATABASE: Structural data for the two RNase A complexes are available in the Protein Data Bank under accession numbers 2xog and 2xoi Blackwell Publishing Ltd 2011-02 /pmc/articles/PMC3039443/ /pubmed/21205197 http://dx.doi.org/10.1111/j.1742-4658.2010.07976.x Text en Journal compilation © 2011 Federation of European Biochemical Societies http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Articles
Thiyagarajan, Nethaji
Smith, Bryan D
Raines, Ronald T
Acharya, K Ravi
Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A
title Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A
title_full Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A
title_fullStr Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A
title_full_unstemmed Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A
title_short Functional and structural analyses of N-acylsulfonamide-linked dinucleoside inhibitors of RNase A
title_sort functional and structural analyses of n-acylsulfonamide-linked dinucleoside inhibitors of rnase a
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039443/
https://www.ncbi.nlm.nih.gov/pubmed/21205197
http://dx.doi.org/10.1111/j.1742-4658.2010.07976.x
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