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AB235577

Anti-BMAL1 antibody [EPR20906-14]

  • RabMAb
  • Recombinant
  • KO Validated
  • 20ul selling size
  • What is this?

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(8 Publications)

Rabbit Recombinant Monoclonal BMAL1 antibody. Suitable for IP, WB and reacts with Mouse, Rat samples. Cited in 8 publications.

View Alternative Names

Arntl, Bmal1, Basic helix-loop-helix ARNT-like protein 1, Arnt3, Aryl hydrocarbon receptor nuclear translocator-like protein 1, Brain and muscle ARNT-like 1

3 Images
Immunoprecipitation - Anti-BMAL1 antibody [EPR20906-14] (AB235577)
  • IP

Unknown

Immunoprecipitation - Anti-BMAL1 antibody [EPR20906-14] (AB235577)

BMAL1 was immunoprecipitated from 0.35 mg Mouse testis tissue lysate 10 ug with ab235577 at 1/30 dilution (2ug in 0.35mg lysates). Western blot was performed on the immunoprecipitate using ab235577 at 1/1000 dilution. VeriBlot for IP secondary antibody(HRP)(ab131366) was used at 1/5000 dilution. Lane 1 : Mouse testis tissue lysate 10 ug

Lane 2 : ab235577 IP in Mouse testis tissue lysate

Lane 3 : Rabbit monoclonal IgG (ab172730) instead of ab235577 in mouse testis tissue lysate

Blocking and dilution buffer and concentration : 5% NFDM/TBST.

Exposure time : 3 minutes

All lanes:

Immunoprecipitation - Anti-BMAL1 antibody [EPR20906-14] (ab235577)

Predicted band size: 68 kDa

Observed band size: 75 kDa

false

Western blot - Anti-BMAL1 antibody [EPR20906-14] (AB235577)
  • WB

Lab

Western blot - Anti-BMAL1 antibody [EPR20906-14] (AB235577)

Blocking and diluting buffer and concentration : 5% NFDM/TBST.

Exposure time : 3 minutes

All lanes:

Western blot - Anti-BMAL1 antibody [EPR20906-14] (ab235577) at 1/1000 dilution

Lane 1:

Mouse testis tissue lysate at 20 µg

Lane 2:

Rat brain tissue lysate at 20 µg

Lane 3:

Rat liver tissue lysate at 20 µg

Secondary

All lanes:

Goat Anti-Rabbit IgG, (H+L), Peroxidase conjugated (<a href='/en-us/products/secondary-antibodies/goat-rabbit-igg-h-l-hrp-ab97051'>ab97051</a>) at 1/20000 dilution

Predicted band size: 68 kDa

Observed band size: 75 kDa

false

Western blot - Anti-BMAL1 antibody [EPR20906-14] (AB235577)
  • WB

Lab

Western blot - Anti-BMAL1 antibody [EPR20906-14] (AB235577)

Blocking and diluting buffer and concentration : 5% NFDM/TBST.

Lysates were kindly provided by Dr Zhang Erquan.

Exposure time : 3 minutes.

All lanes:

Western blot - Anti-BMAL1 antibody [EPR20906-14] (ab235577) at 1/1000 dilution

Lane 1:

Wild type mouse liver nuclear lysate at 20 µg

Lane 2:

Bmal1 knockout mouse liver nuclear lysate at 20 µg

Secondary

All lanes:

Western blot - Goat Anti-Rabbit IgG H&L (HRP) (<a href='/en-us/products/secondary-antibodies/goat-rabbit-igg-h-l-hrp-ab97051'>ab97051</a>) at 1/20000 dilution

Predicted band size: 68 kDa

Observed band size: 75 kDa

false

  • Carrier free

    Anti-BMAL1 antibody [EPR20906-14] - BSA and Azide free

Key facts

Host species

Rabbit

Clonality

Monoclonal

Clone number

EPR20906-14

Isotype

IgG

Carrier free

No

Reacts with

Mouse, Rat

Applications

WB, IP

applications

Immunogen

The exact immunogen used to generate this antibody is proprietary information.

Reactivity data

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Product details

Patented technology
Our RabMAb® technology is a patented hybridoma-based technology for making rabbit monoclonal antibodies. For details on our patents, please refer to RabMAb® patents.

What are the advantages of a recombinant monoclonal antibody?
This product is a recombinant monoclonal antibody, which offers several advantages including:

  • - High batch-to-batch consistency and reproducibility
  • - Improved sensitivity and specificity
  • - Long-term security of supply
  • - Animal-free batch production

For more information, read more on recombinant antibodies.

Properties and storage information

Form
Liquid
Purification technique
Affinity purification Protein A
Storage buffer
pH: 7.2 - 7.4 Preservative: 0.01% Sodium azide Constituents: PBS, 40% Glycerol (glycerin, glycerine), 0.05% BSA
Shipped at conditions
Conditional Ambient
Appropriate short-term storage duration
1-2 weeks
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
-20°C
Aliquoting information
Upon delivery aliquot
Storage information
Avoid freeze / thaw cycle

Product protocols

For this product, it's our understanding that no specific protocols are required. You can visit:

Target data

Transcriptional activator which forms a core component of the circadian clock. The circadian clock, an internal time-keeping system, regulates various physiological processes through the generation of approximately 24 hour circadian rhythms in gene expression, which are translated into rhythms in metabolism and behavior. It is derived from the Latin roots 'circa' (about) and 'diem' (day) and acts as an important regulator of a wide array of physiological functions including metabolism, sleep, body temperature, blood pressure, endocrine, immune, cardiovascular, and renal function. Consists of two major components : the central clock, residing in the suprachiasmatic nucleus (SCN) of the brain, and the peripheral clocks that are present in nearly every tissue and organ system. Both the central and peripheral clocks can be reset by environmental cues, also known as Zeitgebers (German for 'timegivers'). The predominant Zeitgeber for the central clock is light, which is sensed by retina and signals directly to the SCN. The central clock entrains the peripheral clocks through neuronal and hormonal signals, body temperature and feeding-related cues, aligning all clocks with the external light/dark cycle. Circadian rhythms allow an organism to achieve temporal homeostasis with its environment at the molecular level by regulating gene expression to create a peak of protein expression once every 24 hours to control when a particular physiological process is most active with respect to the solar day. Transcription and translation of core clock components (CLOCK, NPAS2, BMAL1, BMAL2, PER1, PER2, PER3, CRY1 and CRY2) plays a critical role in rhythm generation, whereas delays imposed by post-translational modifications (PTMs) are important for determining the period (tau) of the rhythms (tau refers to the period of a rhythm and is the length, in time, of one complete cycle). A diurnal rhythm is synchronized with the day/night cycle, while the ultradian and infradian rhythms have a period shorter and longer than 24 hours, respectively. Disruptions in the circadian rhythms contribute to the pathology of cardiovascular diseases, cancer, metabolic syndromes and aging. A transcription/translation feedback loop (TTFL) forms the core of the molecular circadian clock mechanism. Transcription factors, CLOCK or NPAS2 and BMAL1 or BMAL2, form the positive limb of the feedback loop, act in the form of a heterodimer and activate the transcription of core clock genes and clock-controlled genes (involved in key metabolic processes), harboring E-box elements (5'-CACGTG-3') within their promoters. The core clock genes : PER1/2/3 and CRY1/2 which are transcriptional repressors form the negative limb of the feedback loop and interact with the CLOCK|NPAS2-BMAL1|BMAL2 heterodimer inhibiting its activity and thereby negatively regulating their own expression. This heterodimer also activates nuclear receptors NR1D1/2 and RORA/B/G, which form a second feedback loop and which activate and repress BMAL1 transcription, respectively. BMAL1 positively regulates myogenesis and negatively regulates adipogenesis via the transcriptional control of the genes of the canonical Wnt signaling pathway. Plays a role in normal pancreatic beta-cell function; regulates glucose-stimulated insulin secretion via the regulation of antioxidant genes NFE2L2/NRF2 and its targets SESN2, PRDX3, CCLC and CCLM. Negatively regulates the mTORC1 signaling pathway; regulates the expression of MTOR and DEPTOR. Controls diurnal oscillations of Ly6C inflammatory monocytes; rhythmic recruitment of the PRC2 complex imparts diurnal variation to chemokine expression that is necessary to sustain Ly6C monocyte rhythms. Regulates the expression of HSD3B2, STAR, PTGS2, CYP11A1, CYP19A1 and LHCGR in the ovary and also the genes involved in hair growth. Plays an important role in adult hippocampal neurogenesis by regulating the timely entry of neural stem/progenitor cells (NSPCs) into the cell cycle and the number of cell divisions that take place prior to cell-cycle exit. Regulates the circadian expression of CIART and KLF11. The CLOCK-BMAL1 heterodimer regulates the circadian expression of SERPINE1/PAI1, VWF, B3, CCRN4L/NOC, NAMPT, DBP, MYOD1, PPARGC1A, PPARGC1B, SIRT1, GYS2, F7, NGFR, GNRHR, BHLHE40/DEC1, ATF4, MTA1, KLF10 and also genes implicated in glucose and lipid metabolism. Promotes rhythmic chromatin opening, regulating the DNA accessibility of other transcription factors. May play a role in spermatogenesis; contributes to the chromatoid body assembly and physiology. The NPAS2-BMAL1 heterodimer positively regulates the expression of MAOA, F7 and LDHA and modulates the circadian rhythm of daytime contrast sensitivity by regulating the rhythmic expression of adenylate cyclase type 1 (ADCY1) in the retina. The preferred binding motif for the CLOCK-BMAL1 heterodimer is 5'-CACGTGA-3', which contains a flanking adenine nucleotide at the 3-prime end of the canonical 6-nucleotide E-box sequence (By similarity). CLOCK specifically binds to the half-site 5'-CAC-3', while BMAL1 binds to the half-site 5'-GTGA-3' (By similarity). The CLOCK-BMAL1 heterodimer also recognizes the non-canonical E-box motifs 5'-AACGTGA-3' and 5'-CATGTGA-3' (By similarity). Essential for the rhythmic interaction of CLOCK with ASS1 and plays a critical role in positively regulating CLOCK-mediated acetylation of ASS1 (PubMed : 28985504). Plays a role in protecting against lethal sepsis by limiting the expression of immune checkpoint protein CD274 in macrophages in a PKM2-dependent manner (PubMed : 29996098). Regulates the diurnal rhythms of skeletal muscle metabolism via transcriptional activation of genes promoting triglyceride synthesis (DGAT2) and metabolic efficiency (COQ10B) (PubMed : 30096135).
See full target information Bmal1

Publications (8)

Recent publications for all applications. Explore the full list and refine your search

Journal of animal science and biotechnology 16:62 PubMed40307878

2025

Lactate induces oxidative stress by HIF1α stabilization and circadian clock disturbance in mammary gland of dairy cows.

Applications

Unspecified application

Species

Unspecified reactive species

Juan Feng,Lei Zhu,Cunman He,Ruidong Xiang,Jianxin Liu,Jie Cai,Diming Wang

Theranostics 15:340-361 PubMed39744689

2025

Targeting macrophage circadian rhythms with microcurrent stimulation to activate cancer immunity through phagocytic defense.

Applications

Unspecified application

Species

Unspecified reactive species

Yuya Yoshida,Tomohito Tanihara,Keika Hamasaki,Fumiaki Tsurusaki,Taiki Fukuda,Satoka Adachi,Yuma Terada,Kaita Otsuki,Naoki Nishikawa,Kohei Fukuoka,Ryotaro Tsukamoto,Kengo Hamamura,Kosuke Oyama,Akito Tsuruta,Kouta Mayanagi,Satoru Koyanagi,Shigehiro Ohdo,Naoya Matsunaga

Frontiers in pharmacology 15:1422693 PubMed39611170

2024

Bmal1 haploinsufficiency impairs fear memory and modulates neuroinflammation via the 5-HT2C receptor.

Applications

Unspecified application

Species

Unspecified reactive species

Weifen Li,Shengnan Mou,Tahir Ali,Tianxiang Li,Yan Liu,Shupeng Li,Xiaoming Yu,Zhi-Jian Yu

Heliyon 10:e37088 PubMed39296207

2024

Time of day-dependent alterations of ferroptosis in LPS-induced myocardial injury via Bmal-1/AKT/ Nrf2 in rat and H9c2 cell.

Applications

Unspecified application

Species

Unspecified reactive species

Pei Ying-Hao,Yang Yu-Shan,Cheng Song-Yi,Jiang Hua,Yu Peng,Chen Xiao-Hu

Nutrients 15: PubMed38140389

2023

Exogenous Nucleotides Ameliorate Age-Related Decline in Testosterone in Male Senescence-Accelerated Mouse Prone-8 (SAMP8) Mice by Modulating the Local Renin-Angiotensin System Antioxidant Pathway.

Applications

Unspecified application

Species

Unspecified reactive species

Qianqian Chen,Rui Liu,Chan Wei,Xiujuan Wang,Xin Wu,Rui Fan,Xiaochen Yu,Zhen Li,Ruixue Mao,Jiani Hu,Na Zhu,Xinran Liu,Yong Li,Meihong Xu

Aging 15:11033-11051 PubMed37837551

2023

Dysregulated expression of slingshot protein phosphatase 1 (SSH1) disrupts circadian rhythm and WNT signaling associated to hepatocellular carcinoma pathogenesis.

Applications

Unspecified application

Species

Unspecified reactive species

Shiue-Wei Lai,Yi-Chiao Cheng,Wen-Chien Huang,Vijesh Kumar Yadav,Iat-Hang Fong,Chi-Tai Yeh,Ching-Kuo Yang,Wei-Hwa Lee,Ming-Yao Chen

Cell death & disease 13:151 PubMed35165262

2022

DNAJB8 in small extracellular vesicles promotes Oxaliplatin resistance through TP53/MDR1 pathway in colon cancer.

Applications

Unspecified application

Species

Unspecified reactive species

Zheng Wang,Yi Li,Rui Mao,Yu Zhang,Jun Wen,Qian Liu,Yanjun Liu,Tongtong Zhang

Acta pharmacologica Sinica 43:2351-2361 PubMed35149852

2022

Hepatic NCoR1 deletion exacerbates alcohol-induced liver injury in mice by promoting CCL2-mediated monocyte-derived macrophage infiltration.

Applications

Unspecified application

Species

Unspecified reactive species

Fan Yin,Miao-Miao Wu,Xiao-Li Wei,Rui-Xue Ren,Meng-Hua Liu,Chong-Qing Chen,Liu Yang,Rui-Qian Xie,Shan-Yue Jiang,Xue-Fu Wang,Hua Wang
View all publications

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