TY - JOUR
T1 - Synthesis and characterization of a SIRT6 open tubular column
T2 - Predicting deacetylation activity using frontal chromatography
AU - Singh, Nagendra
AU - Ravichandran, Sarangan
AU - Norton, Darrell D.
AU - Fugmann, Sebastian D.
AU - Moaddel, Ruin
PY - 2013/5/15
Y1 - 2013/5/15
N2 - SIRT6 is a histone deacetylase that has been proposed as a potential therapeutic target for metabolic disorders and the prevention of age-associated diseases. Thus the identification of compounds that modulate SIRT6 activity could be of great therapeutic importance. We have previously reported on the identification of quercetin and vitexin as SIRT6 inhibitors, using SIRT6-coated magnetic beads. In this study, we have immobilized SIRT6 onto the surface of an open tubular capillary and characterized the quercetin binding site using frontal displacement chromatography. Structurally related flavonoids were tested for their activity on SIRT6, including apigenin, naringenin, luteolin, and kaempferol. In addition to obtaining their binding activity using frontal affinity chromatographic techniques, we also ranked the compounds based on their ability to displace quercetin. The data suggest that a single displacement curve is representative of the enzymatic activity of the tested ligand. In addition, using the inhibition data obtained in this study, we developed a preliminary pharmacophore model that confirmed the experimental data.
AB - SIRT6 is a histone deacetylase that has been proposed as a potential therapeutic target for metabolic disorders and the prevention of age-associated diseases. Thus the identification of compounds that modulate SIRT6 activity could be of great therapeutic importance. We have previously reported on the identification of quercetin and vitexin as SIRT6 inhibitors, using SIRT6-coated magnetic beads. In this study, we have immobilized SIRT6 onto the surface of an open tubular capillary and characterized the quercetin binding site using frontal displacement chromatography. Structurally related flavonoids were tested for their activity on SIRT6, including apigenin, naringenin, luteolin, and kaempferol. In addition to obtaining their binding activity using frontal affinity chromatographic techniques, we also ranked the compounds based on their ability to displace quercetin. The data suggest that a single displacement curve is representative of the enzymatic activity of the tested ligand. In addition, using the inhibition data obtained in this study, we developed a preliminary pharmacophore model that confirmed the experimental data.
KW - Frontal displacement chromatography
KW - Histone deacetylation assay
KW - Luteolin
KW - Pharmacophore model
UR - http://www.scopus.com/inward/record.url?scp=84874939431&partnerID=8YFLogxK
U2 - 10.1016/j.ab.2013.01.018
DO - 10.1016/j.ab.2013.01.018
M3 - 文章
C2 - 23376017
AN - SCOPUS:84874939431
SN - 0003-2697
VL - 436
SP - 78
EP - 83
JO - Analytical Biochemistry
JF - Analytical Biochemistry
IS - 2
ER -