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AB28480

Anti-Bile Acid Receptor NR1H4 antibody

3

(1 리뷰)

|

(9 제품이 사용된 논문 )

Rabbit Polyclonal Bile Acid Receptor NR1H4 antibody. Suitable for WB and reacts with Mouse samples. Cited in 9 publications. Immunogen corresponding to Synthetic Peptide within Mouse Nr1h4 aa 200-250.

대체 명칭 보기

BAR, FXR, HRR1, RIP14, NR1H4, Bile acid receptor, Farnesoid X-activated receptor, Farnesol receptor HRR-1, Nuclear receptor subfamily 1 group H member 4, Retinoid X receptor-interacting protein 14, RXR-interacting protein 14

주요 정보

Host species

Rabbit

Clonality

Polyclonal

Isotype

IgG

Carrier free

No

Reacts with

Mouse

Applications

WB

applications

Immunogen

Synthetic Peptide within Mouse Nr1h4 aa 200-250. The exact immunogen used to generate this antibody is proprietary information.

Q60641

Reactivity 정보

{ "title": "Reactivity Data", "filters": { "stats": ["", "Species", "Dilution Info", "Notes"], "tabs": { "all-applications": {"fullname" : "All Applications", "shortname": "All Applications"}, "WB" : {"fullname" : "Western blot", "shortname":"WB"} }, "product-promise": { "all": "all", "testedAndGuaranteed": "tested", "guaranteed": "expected", "predicted": "predicted", "notRecommended": "not-recommended" } }, "values": { "Human": { "WB-species-checked": "predicted", "WB-species-dilution-info": "", "WB-species-notes": "" }, "Mouse": { "WB-species-checked": "guaranteed", "WB-species-dilution-info": "1/500", "WB-species-notes": "<p></p>" }, "Rat": { "WB-species-checked": "predicted", "WB-species-dilution-info": "", "WB-species-notes": "" } } }

특성 및 보관 정보

제형
Liquid
Purification 테크닉
Affinity purification Immunogen
보관 버퍼
Preservative: 0.05% Sodium azide Constituents: PBS, 0.1% BSA
배송 시 보관 조건
Blue Ice
적절한 단기 보관 조건
+4°C
적절한 장기 보관 조건
-20°C
분주 정보
Upon delivery aliquot
보관 정보
Avoid freeze / thaw cycle

추가 정보

This supplementary information is collated from multiple sources and compiled automatically.

Bile Acid Receptor NR1H4 also known as Farnesoid X Receptor (FXR) is a nuclear receptor with a mass of approximately 57 kDa. It functions as a transcription factor regulating the expression of genes involved in bile acid lipid and glucose homeostasis. NR1H4 is expressed mainly in the liver intestines kidneys and adrenal glands where it plays a critical role in maintaining metabolic balance. By binding bile acids NR1H4 activates allowing it to bind to DNA and modulate gene expression.
Biological function summary

NR1H4 influences the body's metabolism by controlling genes responsible for bile acid synthesis conjugation and transport. It forms a heterodimer with Retinoid X Receptor (RXR) to regulate these processes. As an important regulator NR1H4 controls the enterohepatic circulation of bile acids reducing toxicity by lowering hepatic bile acid production. Additionally it influences lipid and glucose metabolism linking it to broader metabolic functions.

Pathways

NR1H4 is involved in the bile acid signaling and lipid metabolism pathways. Within the bile acid signaling pathway NR1H4 modulates the interaction with various proteins such as Small Heterodimer Partner (SHP) to suppress bile acid synthesis. In the context of lipid metabolism NR1H4 interacts with Liver X Receptor (LXR) to regulate cholesterol and triglyceride levels. These interactions demonstrate NR1H4's integral role in maintaining lipid homeostasis.

NR1H4 bears relevance to cholestatic liver disease and nonalcoholic fatty liver disease (NAFLD). In cholestatic liver disease impaired NR1H4 function leads to abnormal bile acid regulation contributing to liver damage. In NAFLD altered NR1H4 activity affects lipid metabolism promoting liver steatosis. Through these diseases NR1H4 shares connections with the CYP7A1 protein critical for bile acid synthesis and the Peroxisome Proliferator-Activated Receptor Alpha (PPARα) involved in lipid oxidation.

제품 프로토콜

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타겟 정보

Ligand-activated transcription factor. Receptor for bile acids (BAs) such as chenodeoxycholic acid (CDCA), lithocholic acid, deoxycholic acid (DCA) and allocholic acid (ACA). Plays a essential role in BA homeostasis through the regulation of genes involved in BA synthesis, conjugation and enterohepatic circulation. Also regulates lipid and glucose homeostasis and is involved innate immune response (PubMed : 10334992, PubMed : 10334993, PubMed : 21383957, PubMed : 22820415). The FXR-RXR heterodimer binds predominantly to farnesoid X receptor response elements (FXREs) containing two inverted repeats of the consensus sequence 5'-AGGTCA-3' in which the monomers are spaced by 1 nucleotide (IR-1) but also to tandem repeat DR1 sites with lower affinity, and can be activated by either FXR or RXR-specific ligands. It is proposed that monomeric nuclear receptors such as NR5A2/LRH-1 bound to coregulatory nuclear responsive element (NRE) halfsites located in close proximity to FXREs modulate transcriptional activity (By similarity). In the liver activates transcription of the corepressor NR0B2 thereby indirectly inhibiting CYP7A1 and CYP8B1 (involved in BA synthesis) implicating at least in part histone demethylase KDM1A resulting in epigenomic repression, and SLC10A1/NTCP (involved in hepatic uptake of conjugated BAs). Activates transcription of the repressor MAFG (involved in regulation of BA synthesis) (By similarity). Activates transcription of SLC27A5/BACS and BAAT (involved in BA conjugation), ABCB11/BSEP (involved in bile salt export) by directly recruiting histone methyltransferase CARM1, and ABCC2/MRP2 (involved in secretion of conjugated BAs) and ABCB4 (involved in secretion of phosphatidylcholine in the small intestine) (PubMed : 12754200, PubMed : 15471871, PubMed : 17895379). Activates transcription of SLC27A5/BACS and BAAT (involved in BA conjugation), ABCB11/BSEP (involved in bile salt export) by directly recruiting histone methyltransferase CARM1, and ABCC2/MRP2 (involved in secretion of conjugated BAs) and ABCB4 (involved in secretion of phosphatidylcholine in the small intestine) (PubMed : 10514450, PubMed : 15239098, PubMed : 16269519). In the intestine activates FGF19 expression and secretion leading to hepatic CYP7A1 repression (PubMed : 12815072, PubMed : 19085950). The function also involves the coordinated induction of hepatic KLB/beta-klotho expression (By similarity). Regulates transcription of liver UGT2B4 and SULT2A1 involved in BA detoxification; binding to the UGT2B4 promoter seems to imply a monomeric transactivation independent of RXRA (PubMed : 12806625, PubMed : 16946559). Modulates lipid homeostasis by activating liver NR0B2/SHP-mediated repression of SREBF1 (involved in de novo lipogenesis), expression of PLTP (involved in HDL formation), SCARB1 (involved in HDL hepatic uptake), APOE, APOC1, APOC4, PPARA (involved in beta-oxidation of fatty acids), VLDLR and SDC1 (involved in the hepatic uptake of LDL and IDL remnants), and inhibiting expression of MTTP (involved in VLDL assembly (PubMed : 12554753, PubMed : 12660231, PubMed : 15337761). Increases expression of APOC2 (promoting lipoprotein lipase activity implicated in triglyceride clearance) (PubMed : 11579204). Transrepresses APOA1 involving a monomeric competition with NR2A1 for binding to a DR1 element (PubMed : 11927623, PubMed : 21804189). Also reduces triglyceride clearance by inhibiting expression of ANGPTL3 and APOC3 (both involved in inhibition of lipoprotein lipase) (PubMed : 12891557). Involved in glucose homeostasis by modulating hepatic gluconeogenesis through activation of NR0B2/SHP-mediated repression of respective genes. Modulates glycogen synthesis (inducing phosphorylation of glycogen synthase kinase-3) (By similarity). Modulates glucose-stimulated insulin secretion and is involved in insulin resistance (PubMed : 20447400). Involved in intestinal innate immunity. Plays a role in protecting the distal small intestine against bacterial overgrowth and preservation of the epithelial barrier (By similarity). Down-regulates inflammatory cytokine expression in several types of immune cells including macrophages and mononuclear cells (PubMed : 21242261). Mediates trans-repression of TLR4-induced cytokine expression; the function seems to require its sumoylation and prevents N-CoR nuclear receptor corepressor clearance from target genes such as IL1B and NOS2 (PubMed : 19864602). Involved in the TLR9-mediated protective mechanism in intestinal inflammation. Plays an anti-inflammatory role in liver inflammation; proposed to inhibit pro-inflammatory (but not antiapoptotic) NF-kappa-B signaling) (By similarity).. Isoform 1. Promotes transcriptional activation of target genes NR0B2/SHP (inducible by unconjugated CDCA), SLC51B/OSTB (inducible by unconjugated CDCA and DCA) and FABP6/IBAP; low activity for ABCB11/BSEP (inducible by unconjugated CDCA, DCA and ACA); not inducible by taurine- and glycine-amidated CDCA.. Isoform 2. Promotes transcriptional activation of target genes ABCB11/BSEP (inducible by unconjugated CDCA, DCA and ACA), NR0B2/SHP (inducible by unconjugated CDCA DCA and ACA), SLC51B/OSTB (inducible by unconjugated CDCA and DCA) and FABP6/IBAP; not inducible by taurine- and glycine-amidated CDCA.. Isoform 3. Promotes transcriptional activation of target genes NR0B2/SHP (inducible by unconjugated CDCA), SLC51B/OSTB (inducible by unconjugated CDCA and DCA) and IBAP; low activity for ABCB11/BSEP (inducible by unconjugated CDCA, DCA and ACA); not inducible by taurine- and glycine-amidated CDCA.. Isoform 4. Promotes transcriptional activation of target genes ABCB11/BSEP (inducible by unconjugated CDCA, ACA and DCA), NR0B2/SHP (inducible by unconjugated CDCA, ACA and DCA), SLC51B/OSTB (inducible by unconjugated CDCA and DCA) and FABP6/IBAP; most efficient isoform compared to isoforms 1 to 3; not inducible by taurine- and glycine-amidated CDCA.
See full target information NR1H4

제품이 사용된 논문 (9)

Recent publications for all applications. Explore the 전체 목록 and refine your search

Journal of gastroenterology and hepatology 38:1438-1446 PubMed37415275

2023

Farnesoid X receptor is an important target for the treatment of disorders of bile acid and fatty acid metabolism in mice with nonalcoholic fatty liver disease combined with cholestasis.

Applications

Unspecified application

Species

Unspecified reactive species

Xinzhu Liu,Jiaxuan Wang,Maogang Li,Jiannan Qiu,Xingying Li,Li Qi,Jia Liu,Ping Liu,Guoxiang Xie,Xiaoning Wang

Journal of food science 86:5466-5478 PubMed34730235

2021

Policosanol alleviates hepatic lipid accumulation by regulating bile acids metabolism in C57BL6/mice through AMPK-FXR-TGR5 cross-talk.

Applications

Unspecified application

Species

Unspecified reactive species

Zhenya Zhai,Kai-Min Niu,Huiping Liu,Chong Lin,Yue Tu,Yichun Liu,Lichuang Cai,Kexian Ouyang,Jianping Liu

The Journal of pathology 255:412-424 PubMed34410012

2021

Disordered farnesoid X receptor signaling is associated with liver carcinogenesis in Abcb11-deficient mice.

Applications

Unspecified application

Species

Unspecified reactive species

Liping Wang,Qing Luo,Sijing Zeng,Yanmei Lou,Xiaoyan Li,Ming Hu,Linlin Lu,Zhongqiu Liu

EBioMedicine 55:102766 PubMed32408110

2020

A dysregulated bile acid-gut microbiota axis contributes to obesity susceptibility.

Applications

Unspecified application

Species

Unspecified reactive species

Meilin Wei,Fengjie Huang,Ling Zhao,Yunjing Zhang,Wei Yang,Shouli Wang,Mengci Li,Xiaolong Han,Kun Ge,Chun Qu,Cynthia Rajani,Guoxiang Xie,Xiaojiao Zheng,Aihua Zhao,Zhaoxiang Bian,Wei Jia

British journal of pharmacology 177:1041-1060 PubMed31658492

2020

Rosiglitazone alleviates intrahepatic cholestasis induced by α-naphthylisothiocyanate in mice: The role of circulating 15-deoxy-Δ -PGJ and Nogo.

Applications

Unspecified application

Species

Unspecified reactive species

Shuang Zhang,Miao Yu,Fangling Guo,Xiaoxiao Yang,Yuanli Chen,Chuanrui Ma,Qi Li,Zhuo Wei,Xiaoju Li,Hua Wang,Huaqing Hu,Yujue Zhang,Derun Kong,Qing Robert Miao,Wenquan Hu,David P Hajjar,Yan Zhu,Jihong Han,Yajun Duan

Cell death & disease 11:31 PubMed31949131

2020

The nuclear translocation of transketolase inhibits the farnesoid receptor expression by promoting the binding of HDAC3 to FXR promoter in hepatocellular carcinoma cell lines.

Applications

Unspecified application

Species

Unspecified reactive species

Minle Li,Xuping Zhang,Ying Lu,Sen Meng,Haoyu Quan,Pingfu Hou,Pan Tong,Dafei Chai,Xiaoge Gao,Junnian Zheng,Xuemei Tong,Jin Bai

Nature communications 10:4971 PubMed31672964

2019

Theabrownin from Pu-erh tea attenuates hypercholesterolemia via modulation of gut microbiota and bile acid metabolism.

Applications

Unspecified application

Species

Unspecified reactive species

Fengjie Huang,Xiaojiao Zheng,Xiaohui Ma,Runqiu Jiang,Wangyi Zhou,Shuiping Zhou,Yunjing Zhang,Sha Lei,Shouli Wang,Junliang Kuang,Xiaolong Han,Meilin Wei,Yijun You,Mengci Li,Yitao Li,Dandan Liang,Jiajian Liu,Tianlu Chen,Chao Yan,Runmin Wei,Cynthia Rajani,Chengxing Shen,Guoxiang Xie,Zhaoxiang Bian,Houkai Li,Aihua Zhao,Wei Jia

Cardiovascular research 114:1335-1349 PubMed29668847

2018

Adiponectin determines farnesoid X receptor agonism-mediated cardioprotection against post-infarction remodelling and dysfunction.

Applications

Unspecified application

Species

Unspecified reactive species

Yunlong Xia,Fuyang Zhang,Shihao Zhao,Yueyang Li,Xiyao Chen,Erhe Gao,Xinyue Xu,Zhenyu Xiong,Xiaomeng Zhang,Jinglong Zhang,Huishou Zhao,Wei Wang,Helin Wang,Yanjie Guo,Yi Liu,Congye Li,Shan Wang,Ling Zhang,Wenjun Yan,Ling Tao

The American journal of pathology 187:2775-2787 PubMed28919113

2017

Hepatic Tmem30a Deficiency Causes Intrahepatic Cholestasis by Impairing Expression and Localization of Bile Salt Transporters.

Applications

Unspecified application

Species

Unspecified reactive species

Leiming Liu,Lingling Zhang,Lin Zhang,Fan Yang,Xudong Zhu,Zhongjie Lu,Yeming Yang,Haiqi Lu,Lifeng Feng,Zhuo Wang,Hui Chen,Sheng Yan,Lin Wang,Zhenyu Ju,Hongchuan Jin,Xianjun Zhu
제품이 사용된 논문 모두 보기

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