Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.

The four DNA bases are recognized in immobilized DNA strands at high alkaline pH by nanopore current recordings. Ionic currents through the biological nanopores are also employed to measure the apparent pK(a) values of single nucleobases within the immobilised DNA strands.

Dettagli Bibliografici
Autori principali: Franceschini, L, Mikhailova, E, Bayley, H, Maglia, G
Natura: Journal article
Lingua:English
Pubblicazione: 2012
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author Franceschini, L
Mikhailova, E
Bayley, H
Maglia, G
author_facet Franceschini, L
Mikhailova, E
Bayley, H
Maglia, G
author_sort Franceschini, L
collection OXFORD
description The four DNA bases are recognized in immobilized DNA strands at high alkaline pH by nanopore current recordings. Ionic currents through the biological nanopores are also employed to measure the apparent pK(a) values of single nucleobases within the immobilised DNA strands.
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spelling oxford-uuid:16c0ec93-2084-47f0-8f8e-78bd2060d6312022-03-26T10:33:13ZNucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:16c0ec93-2084-47f0-8f8e-78bd2060d631EnglishSymplectic Elements at Oxford2012Franceschini, LMikhailova, EBayley, HMaglia, GThe four DNA bases are recognized in immobilized DNA strands at high alkaline pH by nanopore current recordings. Ionic currents through the biological nanopores are also employed to measure the apparent pK(a) values of single nucleobases within the immobilised DNA strands.
spellingShingle Franceschini, L
Mikhailova, E
Bayley, H
Maglia, G
Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.
title Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.
title_full Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.
title_fullStr Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.
title_full_unstemmed Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.
title_short Nucleobase recognition at alkaline pH and apparent pKa of single DNA bases immobilised within a biological nanopore.
title_sort nucleobase recognition at alkaline ph and apparent pka of single dna bases immobilised within a biological nanopore
work_keys_str_mv AT franceschinil nucleobaserecognitionatalkalinephandapparentpkaofsinglednabasesimmobilisedwithinabiologicalnanopore
AT mikhailovae nucleobaserecognitionatalkalinephandapparentpkaofsinglednabasesimmobilisedwithinabiologicalnanopore
AT bayleyh nucleobaserecognitionatalkalinephandapparentpkaofsinglednabasesimmobilisedwithinabiologicalnanopore
AT magliag nucleobaserecognitionatalkalinephandapparentpkaofsinglednabasesimmobilisedwithinabiologicalnanopore