推荐产品
生物来源
rabbit
质量水平
抗体形式
serum
抗体产品类型
primary antibodies
克隆
polyclonal
种属反应性
mouse, human, rat
制造商/商品名称
Chemicon®
技术
western blot: suitable
GenBank登记号
运输
wet ice
靶向翻译后修饰
unmodified
基因信息
mouse ... Clock(12753)
一般描述
Circadian Locomotor Output Cycles Kaput, or Clock is a gene which encodes proteins regulating circadian rhythm. This gene encodes a protein that belongs to the basic helix-loop-helix (bHLH) family of transcription factors. Polymorphisms within the encoded protein have been associated with circadian rhythm sleep disorders. A similar protein in mice is a circadian regulator that acts as a transcription factor and forms a heterodimer with aryl hydrocarbon receptor nuclear translocator-like protein to activate transcription of mouse period 1.
特异性
Cat. # AB2203 recognizes CLOCK protein
Reactivity with other species has not been tested.
应用
Anti-CLOCK Antibody is an antibody against CLOCK for use in WB.
Western Blot Analysis:
L6 lysate was resolved by electrophoresis, transferred to PVDF membrane and probed with anti-CLOCK (1:500 dilution of this lot).
Proteins were visualized using a Donkey anti-rabbit secondary antibody conjugated to HRP and a chemiluminescence detection system.
L6 lysate was resolved by electrophoresis, transferred to PVDF membrane and probed with anti-CLOCK (1:500 dilution of this lot).
Proteins were visualized using a Donkey anti-rabbit secondary antibody conjugated to HRP and a chemiluminescence detection system.
质量
Routinely evaluated by western blot on L6 tissue lysate.
目标描述
Approx. 95 kDa
分析说明
Control
L6 Cell Lysate.
L6 Cell Lysate.
其他说明
Concentration: Please refer to the Certificate of Analysis for the lot-specific concentration.
法律信息
CHEMICON is a registered trademark of Merck KGaA, Darmstadt, Germany
GenBank is a registered trademark of United States Department of Health and Human Services
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储存分类代码
10 - Combustible liquids
WGK
WGK 1
Antibodies for assessing circadian clock proteins in the rodent suprachiasmatic nucleus.
Testing null
PloS one, 7(11), e50602-e50602 (2012-11-29)
Circadian rhythms in metabolism, physiology, and behavior originate from cell-autonomous circadian clocks located in many organs and structures throughout the body and that share a common molecular mechanism based on the clock genes and their protein products. In the mammalian
Neuron, 86(1), 264-275 (2015-03-25)
Circadian rhythms control a variety of physiological processes, but whether they may also time brain development remains largely unknown. Here, we show that circadian clock genes control the onset of critical period plasticity in the neocortex. Within visual cortex of
Theranostics, 12(8), 3963-3976 (2022-06-07)
The circadian clock in murine articular cartilage is a critical temporal regulatory mechanism for tissue homeostasis and osteoarthritis. However, translation of these findings into humans has been hampered by the difficulty in obtaining circadian time series human cartilage tissues. As
Cell reports, 26(12), 3191-3202 (2019-03-21)
Clock neurons within the mammalian suprachiasmatic nuclei (SCN) encode circadian time using interlocked transcription-translation feedback loops (TTFLs) that drive rhythmic gene expression. However, the contributions of other transcription factors outside of the circadian TTFLs to the functionality of the SCN
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