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1.
J Biochem ; 174(5): 433-440, 2023 Oct 31.
Article in English | MEDLINE | ID: mdl-37500079

ABSTRACT

RNA aptamersare nucleic acids that are obtained using the systematic evolution of ligands by exponential enrichment (SELEX) method. When using conventional selection methods to immobilize target proteins on matrix beads using protein tags, sequences are obtained that bind not only to the target proteins but also to the protein tags and matrix beads. In this study, we performed SELEX using ß-1,3-glucan recognition protein (GRP)-tags and curdlan beads to immobilize the acute myeloid leukaemia 1 (AML1) Runt domain (RD) and analysed the enrichment of aptamers using high-throughput sequencing. Comparison of aptamer enrichment using the GRP-tag and His-tag suggested that aptamers were enriched using the GRP-tag as well as using the His-tag. Furthermore, surface plasmon resonance analysis revealed that the aptamer did not bind to the GRP-tag and that the conjugation of the GRP-tag to RD weakened the interaction between the aptamer and RD. The GRP-tag could have acted as a competitor to reduce weakly bound RNAs. Therefore, the affinity system of the GRP-tagged proteins and curdlan beads is suitable for obtaining specific aptamers using SELEX.


Subject(s)
Aptamers, Nucleotide , beta-Glucans , Glucans , Aptamers, Nucleotide/genetics , Aptamers, Nucleotide/metabolism , RNA , Ligands
2.
FEBS Lett ; 586(11): 1658-63, 2012 Jun 04.
Article in English | MEDLINE | ID: mdl-22673575

ABSTRACT

Anaerobic ammonium oxidation (anammox) and denitrification are two distinct microbial reactions relevant to the global nitrogen cycle. The proposed initial step of the anammox reactions, reduction of nitrite to nitric oxide, has been postulated to be identical to that in denitrification catalyzed by the dissimilatory nitrite reductase of the cytochrome cd(1)-type. Here, we characterized the copper-containing nitrite reductase homolog encoded by nirK detected in the genome of an anammox bacterium strain KSU-1. We hypothesize that this NirK-type nitrite reductase, rather than a nitrite reductase of the cytochrome cd(1)-type (NirS), is likely to catalyze nitrite reduction in anammox organism KSU-1.


Subject(s)
Bacteria/enzymology , Copper , Cytochromes/metabolism , Nitrite Reductases/genetics , Nitrite Reductases/metabolism , Quaternary Ammonium Compounds/metabolism , Amino Acid Sequence , Anaerobiosis , Bacteria/genetics , Bacteria/metabolism , Biocatalysis , Cytochrome c Group , Denitrification , Escherichia coli/genetics , Gene Expression , Genome, Bacterial/genetics , Models, Molecular , Molecular Sequence Data , Nitrite Reductases/chemistry , Nitrites/metabolism , Oxidation-Reduction , Protein Conformation , Sequence Homology, Nucleic Acid
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