Anti-KAT13D / CLOCK antibody
4
(1 Review)
|
(6 Publications)
Rabbit Polyclonal KAT13D / CLOCK antibody. Suitable for IP, WB and reacts with Human, Mouse samples. Cited in 6 publications.
View Alternative Names
BHLHE8, KIAA0334, CLOCK, Circadian locomoter output cycles protein kaput, hCLOCK, Class E basic helix-loop-helix protein 8, bHLHe8
- IP
Unknown
Immunoprecipitation - Anti-KAT13D / CLOCK antibody (AB93804)
ab93804 at 1 µg/ml detecting KAT13D/CLOCK in HeLa whole cell lysate by WB following IP.
Lane 1 : IP with an antibody which recognizes an upstream epitope of KAT13D/CLOCK
Lane 2 : ab93804 at 3µg/mg of lysate
Lane 3 : control IgG.
In each case, 1 mg of lysate was used for IP and 20% of the IP was loaded.
Detection : Chemiluminescence with an exposure time of 30 seconds
All lanes:
Immunoprecipitation - Anti-KAT13D / CLOCK antibody (ab93804)
Predicted band size: 95 kDa
false
- WB
Lab
Western blot - Anti-KAT13D / CLOCK antibody (AB93804)
False colour image of Western blot : Anti-KAT13D / CLOCK antibody staining at 1/2000 dilution, shown in green; Mouse anti-Alpha Tubulin [DM1A] (ab7291) loading control staining at 1/20000 dilution, shown in red. In Western blot, ab93804 was shown to bind specifically to KAT13D / CLOCK. A band was observed at 100 kDa in wild-type HeLa cell lysates with no signal observed at this size in CLOCK knockout cell line ab266054 (knockout cell lysate ab258365). The band observed in the knockout lysate lane below 100 kDa is likely to represent a truncated form of KAT13D / CLOCK. This has not been investigated further and the functional properties of the gene product have not been determined. To generate this image, wild-type and CLOCK knockout HeLa cell lysates were analysed.First, samples were run on an SDS-PAGE gel then transferred onto a nitrocellulose membrane. Membranes were blocked in 5 % milk in TBS-0.1 % Tween® 20 (TBS-T) before incubation with primary antibodies overnight at 4 °C. Blots were washed four times in TBS-T, incubated with secondary antibodies for 1 h at room temperature, washed again four times then imaged. Secondary antibodies used were Goat anti-Rabbit IgG H&L (IRDye® 800CW) preabsorbed (ab216773) and Goat anti-Mouse IgG H&L (IRDye® 680RD) preabsorbed (ab216776) at 1/20000 dilution.
All lanes:
Western blot - Anti-KAT13D / CLOCK antibody (ab93804) at 1/2000 dilution
Lane 1:
Wild-type HeLa cell lysate at 20 µg
Lane 2:
CLOCK knockout HeLa cell lysate at 20 µg
Lane 2:
Western blot - Human CLOCK (KAT13D) knockout HeLa cell line (<a href='/en-us/products/cell-lines/human-clock-kat13d-knockout-hela-cell-line-ab266054'>ab266054</a>)
Lane 3:
A431 cell lysate at 20 µg
Lane 4:
U-251 MG cell lysate at 20 µg
Predicted band size: 95 kDa
Observed band size: 100 kDa
false
- WB
Supplier Data
Western blot - Anti-KAT13D / CLOCK antibody (AB93804)
Detection : Chemiluminescence
All lanes:
Western blot - Anti-KAT13D / CLOCK antibody (ab93804) at 0.1 µg/mL
Lane 1:
HeLa cell lysate at 50 µg
Lane 2:
HEK293T cell lysate at 50 µg
Lane 3:
NIH3T3 cell lysate at 50 µg
Predicted band size: 95 kDa
false
Exposure time: 30s
- WB
Lab
Western blot - Anti-KAT13D / CLOCK antibody (AB93804)
False colour image of Western blot : Anti-KAT13D / CLOCK antibody staining at 1/2000 dilution, shown in green; Mouse anti-Alpha Tubulin [DM1A] (ab7291) loading control staining at 1/20000 dilution, shown in red. In Western blot, ab93804 was shown to bind specifically to KAT13D / CLOCK. A band was observed at 100 kDa in wild-type HeLa cell lysates with no signal observed at this size in CLOCK knockout cell line ab265301 (knockout cell lysate ab258364). The band observed in the knockout lysate lane below 100 kDa is likely to represent a truncated form of KAT13D / CLOCK. This has not been investigated further and the functional properties of the gene product have not been determined. To generate this image, wild-type and CLOCK knockout HeLa cell lysates were analysed.First, samples were run on an SDS-PAGE gel then transferred onto a nitrocellulose membrane. Membranes were blocked in 5 % milk in TBS-0.1 % Tween® 20 (TBS-T) before incubation with primary antibodies overnight at 4 °C. Blots were washed four times in TBS-T, incubated with secondary antibodies for 1 h at room temperature, washed again four times then imaged. Secondary antibodies used were Goat anti-Rabbit IgG H&L (IRDye® 800CW) preabsorbed (ab216773) and Goat anti-Mouse IgG H&L (IRDye® 680RD) preabsorbed (ab216776) at 1/20000 dilution.
All lanes:
Western blot - Anti-KAT13D / CLOCK antibody (ab93804) at 1/2000 dilution
Lane 1:
Wild-type HeLa cell lysate at 20 µg
Lane 2:
CLOCK knockout HeLa cell lysate at 20 µg
Lane 2:
Western blot - Human CLOCK (KAT13D) knockout HeLa cell line (<a href='/en-us/products/cell-lines/human-clock-kat13d-knockout-hela-cell-line-ab265301'>ab265301</a>)
Lane 3:
A431 cell lysate at 20 µg
Lane 4:
U-251 MG cell lysate at 20 µg
Predicted band size: 95 kDa
Observed band size: 100 kDa
false
Reactivity data
Properties and storage information
Form
Purification technique
Purification notes
Storage buffer
Shipped at conditions
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Aliquoting information
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
The CLOCK protein acts as an important component of the circadian rhythm machinery. It forms a heterodimer complex with BMAL1 which activates transcription of other core clock genes. This process drives the rhythmic expression of various genes essential for physiological and behavioral rhythms. Through this function CLOCK influences the timing of many body systems such as sleep-wake cycles feeding and metabolism. By doing so it sets a steady rhythm to coordinate bodily processes with environmental light-dark cycles ensuring optimal biological activity during appropriate times of the day.
Pathways
The CLOCK protein plays an important role in the circadian signaling pathway where its function involves intricate feedback loops. It controls the oscillation of gene expression alongside other clock proteins like PER and CRY. This feedback mechanism is part of the circadian rhythm regulation pathway which directly influences processes such as hormone regulation and cell cycle progression. CLOCK’s relationship with BMAL1 PER and CRY in these pathways highlights its indispensable role in maintaining the synchronization of endogenous biological rhythms with external time cues.
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Target data
Publications (6)
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Molecules (Basel, Switzerland) 28: PubMed36838862
2023
Applications
Unspecified application
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Unspecified reactive species
BMC pulmonary medicine 22:435 PubMed36419003
2022
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Unspecified reactive species
Neuropharmacology 172:108133 PubMed32413367
2020
Applications
Unspecified application
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Unspecified reactive species
Molecules (Basel, Switzerland) 24: PubMed31408938
2019
Applications
Unspecified application
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Unspecified reactive species
Food and chemical toxicology : an international jo 122:181-193 PubMed30316844
2018
Applications
Unspecified application
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Unspecified reactive species
Biochimica et biophysica acta. Molecular and cell 1863:549-562 PubMed29501626
2018
Applications
WB
Species
Unspecified reactive species
Product promise
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