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Hat activity assay kit

Manufactured by Abcam
Sourced in United Kingdom

The HAT Activity Assay Kit is a laboratory tool designed to measure the enzymatic activity of histone acetyltransferases (HATs). It provides a straightforward method for quantifying HAT activity in cell or tissue samples. The kit includes all the necessary components to perform the assay.

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7 protocols using hat activity assay kit

1

HDAC and HAT Activity Assays

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To measure the activity of both HDAC and HAT, the HDAC Activity Assay Kit (Millipore, item #17–356) and HAT Activity Assay Kit (BioVision, item #K334-100) were used according to the manufacturer's instructions. Proteins were extracted from fresh brain tissue and quantified. HDAC and HAT activity was estimated using 20 μg of protein. Briefly, for the HDAC activity assay, the HDAC assay buffer containing TSAs was used as an inhibitor control, HeLa nuclear extract was used as a positive control, and the HDAC assay buffer solution was used as the negative control. Subsequently, the enzyme plate was placed in an ELISA reader for the assay, with excitation light at 350–380 nm and emission light at 460 nm. The detected optical density value's magnitude reflected the HDAC activity level.
For the determination of the HAT activation, dissolve 20 μg brain tissue proteins in 40 μl of H2O (ultimate amount) and then with 5 μl of specific color substrates 1 and 2 based on a manufacturer's directions. 50 μl of 2 × HAT assay buffer and 8 μl of NADH-generating enzyme were added. After thorough mixing, the samples were incubated at 37 °C for 4 h. Subsequently, the samples were placed in an enzyme calibrator for detection at a reading wavelength of 440 nm. The magnitude of the value obtained reflected the level of HAT activity.
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2

Quantifying HAT and HDAC Activities

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HAT and HDAC activity were measured using a HAT Activity Assay Kit (Biovision, K332-100) and a HDAC Colorimetric Assay Kit (Biovision, K331-100)). All procedures were performed according to the manufacturer's instructions. Absorbance was then measured using a micro-titer plate reader (Labsystems Multiskan, MS, Finland) at 440 nm for HAT activity and at 405 nm for HDAC activity. The HDAC activity was expressed as arbitrary fluorescence units. HAT and HDAC activity are expressed as the relative O.D. value per 50 µg protein.
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3

Fluorometric Histone Acetyltransferase Assay

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HAT activity in isolated nuclear fractions was measured fluorometrically using a HAT activity assay kit (Biovision, Cat. No. K33–100) according to the manufacturer’s protocol. Briefly, nuclear proteins were combined with acetyl-CoA and H3 peptide as substrates, and incubated for 60 min at 25°C. The HAT enzyme generates acetylated H3 peptide and CoA-SH. The CoA-SH reacts with the developer to produce fluoroscence products that were detected by fluorimetry with excitation at 535 nm and emission at 587 nm. All the data were collected in kinetic mode.
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4

HAT Activity Assay Protocol

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HAT activity assays were determined using a commercial available kit (Biovision Biotechnology) according to the manufacturer's instruction [11] . BioVision's HAT Activity Assay Kit utilizes Acetyl CoA and H3 histone peptide as substrates, and recombinant p300 core domain as the enzyme. In this assay, HAT enzyme catalyzes the transfer of acetyl groups from Acetyl-CoA to the histone peptide, thereby generating two products -acetylated peptide and CoA-SH. The CoA-SH reacts with the developer to generate a product that is detected fluorometrically at Ex/Em = 535/587 nm.
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5

Quantifying Histone Acetyltransferase Activity

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Following shear stress treatment, the cells were collected and then nuclear extract was obtained by using Nuclear Extraction Reagents (#78833, Thermo Fisher Scientific, USA). HAT activity was measured with the HAT activity assay kit (ab239713, Abcam) following the manufacturer's protocol. In brief, the standard sample, background controls and positive controls were prepared according to the instructions, and added with reaction mix reagents into a 96-well plate. Fluorescence signals (excitation, 535 nm; emission, 587 nm) were read by using a multimode microplate reader (Varioskan LUX, Thermo Fisher Scientific) in the kinetic mode at 30°C for 60 min. A linear standard curve was obtained using values measured from standard samples of gradient concentrations. The measured sample values were then substituted into the function of the standard curve to calculate their HAT activity. Sample HAT activity =B×D/(ΔTV), where B is CoA amount from the standard curve (pmol), T is reaction time (min), V is the sample volume added into the reaction well (ml), and D is the dilution factor.
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6

Immunoprecipitation and Enzyme Assays

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For immunoprecipitation, hippocampal tissues were dounce homogenized in IP buffer (50 mM Tris-HCl pH 8.0, 150 mM NaCl, 0.5% Triton X-100, 0.1% NP-40). Lysates were pre-cleared with 30 μL of Protein A Sepharose beads (Sigma-Aldrich) at 4 °C for 30 min and incubated with 5 μg of primary antibody overnight on a tube rotator at 4 °C. Beads were washed three times in washing buffer (20 mM HEPES KOH adjust pH 7.9, 0.1 M KCl, 0.01% NP-40) and boiled in 2× loading buffer for western blot analysis. For HDAC1 and p300 activity assay, hippocampal tissues were lysed in IP buffer and immunoprecipitated with anti-HDAC1 antibody (Abcam, ab7028) or anti-p300 antibody (Thermo Fisher, MA1-16608). The washed beads with bound HDAC1 or p300 were assessed for HDAC or histone acetylase activity using the FLUOR DE LYS® HDAC Fluorometric Activity Assay Kit (Enzo Life Sciences) or HAT Activity Assay Kit (Abcam, ab65352) according to the manufacturer’s instructions. HDAC1 or p300 activity was normalized to input HDAC1 or p300 protein levels.
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7

Quantifying HAT and HDAC Activities in Oli-Neu Cells

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To quantify the activities of HATs and HDACs in Oli-Neu cells, the HAT Activity Assay Kit (Abcam, Cambridge, United Kingdom) and the Epigenase HDAC Activity/Inhibition Direct Assay Kit (EpigGenetek, NY, United States) were respectively used, according to the manufacturer’s instruction. For HATs activity assays, 50 μg of nuclear extract in 40 μL of water (final volume) were added in a 96-well plate; 40 μL of water instead of samples were used for background reading; 10 μL of cell nuclear extract (NE) were added to 30 μL of water as a positive control. Depending on color development, the plates were incubated 1/4 h at 37°C and read OD440 nm at different times during incubation. To measure the activity of the HDACs, 5 μg of nuclear extracts were diluted with kit-specific reagents up to 50 μL/well (final volume). Only the reagents were used as a blank sample. The signal was detected at 450 nm with a Multiplate Spectrophotometric Reader (Bio-rad Laboratories, Milano, Italy) after 1–2 h of incubation.
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