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AB70061

Anti-ROR alpha/RORA antibody

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(7 Publications)

Rabbit Polyclonal ROR alpha/RORA antibody. Suitable for WB, IHC-P and reacts with Human, African green monkey samples. Cited in 7 publications.

View Alternative Names

NR1F1, RZRA, RORA, Nuclear receptor ROR-alpha, Nuclear receptor RZR-alpha, Nuclear receptor subfamily 1 group F member 1, RAR-related orphan receptor A, Retinoid-related orphan receptor-alpha

2 Images
Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ROR alpha/RORA antibody (AB70061)
  • IHC-P

Unknown

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ROR alpha/RORA antibody (AB70061)

Human breast carcinoma tissue with ab70061 at 1/50 dilution, with and without the immunising peptide.

Western blot - Anti-ROR alpha/RORA antibody (AB70061)
  • WB

Unknown

Western blot - Anti-ROR alpha/RORA antibody (AB70061)

All lanes:

Western blot - Anti-ROR alpha/RORA antibody (ab70061) at 1/500 dilution

Lane 1:

extract from HeLa cells at 5 µg

Lane 2:

extract from COS-7 cells at 5 µg

Lane 3:

extract from COS-7 cells at 5 µg with immunising peptide

Predicted band size: 63 kDa

Observed band size: 63 kDa

false

Key facts

Host species

Rabbit

Clonality

Polyclonal

Isotype

IgG

Carrier free

No

Reacts with

Human, African green monkey

Applications

IHC-P, WB

applications

Immunogen

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

Reactivity data

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Properties and storage information

Form
Liquid
Purification technique
Affinity purification Immunogen
Storage buffer
pH: 7.4 Preservative: 0.02% Sodium azide Constituents: PBS, 50% Glycerol (glycerin, glycerine), 0.87% Sodium chloride
Shipped at conditions
Blue Ice
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

Nuclear receptor that binds DNA as a monomer to ROR response elements (RORE) containing a single core motif half-site 5'-AGGTCA-3' preceded by a short A-T-rich sequence. Key regulator of embryonic development, cellular differentiation, immunity, circadian rhythm as well as lipid, steroid, xenobiotics and glucose metabolism. Considered to have intrinsic transcriptional activity, have some natural ligands like oxysterols that act as agonists (25-hydroxycholesterol) or inverse agonists (7-oxygenated sterols), enhancing or repressing the transcriptional activity, respectively. Recruits distinct combinations of cofactors to target genes regulatory regions to modulate their transcriptional expression, depending on the tissue, time and promoter contexts. Regulates genes involved in photoreceptor development including OPN1SW, OPN1SM and ARR3 and skeletal muscle development with MYOD1. Required for proper cerebellum development (PubMed : 29656859). Regulates SHH gene expression, among others, to induce granule cells proliferation as well as expression of genes involved in calcium-mediated signal transduction. Regulates the circadian expression of several clock genes, including CLOCK, BMAL1, NPAS2 and CRY1. Competes with NR1D1 for binding to their shared DNA response element on some clock genes such as BMAL1, CRY1 and NR1D1 itself, resulting in NR1D1-mediated repression or RORA-mediated activation of clock genes expression, leading to the circadian pattern of clock genes expression. Therefore influences the period length and stability of the clock. Regulates genes involved in lipid metabolism such as apolipoproteins APOA1, APOA5, APOC3 and PPARG. In liver, has specific and redundant functions with RORC as positive or negative modulator of expression of genes encoding phase I and phase II proteins involved in the metabolism of lipids, steroids and xenobiotics, such as CYP7B1 and SULT2A1. Induces a rhythmic expression of some of these genes. In addition, interplays functionally with NR1H2 and NR1H3 for the regulation of genes involved in cholesterol metabolism. Also involved in the regulation of hepatic glucose metabolism through the modulation of G6PC1 and PCK1. In adipose tissue, plays a role as negative regulator of adipocyte differentiation, probably acting through dual mechanisms. May suppress CEBPB-dependent adipogenesis through direct interaction and PPARG-dependent adipogenesis through competition for DNA-binding. Downstream of IL6 and TGFB and synergistically with RORC isoform 2, is implicated in the lineage specification of uncommitted CD4(+) T-helper (T(H)) cells into T(H)17 cells, antagonizing the T(H)1 program. Probably regulates IL17 and IL17F expression on T(H) by binding to the essential enhancer conserved non-coding sequence 2 (CNS2) in the IL17-IL17F locus. Involved in hypoxia signaling by interacting with and activating the transcriptional activity of HIF1A. May inhibit cell growth in response to cellular stress. May exert an anti-inflammatory role by inducing CHUK expression and inhibiting NF-kappa-B signaling.
See full target information RORA

Publications (7)

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

Nature communications 16:1489 PubMed39929812

2025

Trajectory analysis of hepatic stellate cell differentiation reveals metabolic regulation of cell commitment and fibrosis.

Applications

Unspecified application

Species

Unspecified reactive species

Raquel A Martínez García de la Torre,Julia Vallverdú,Zhenqing Xu,Silvia Ariño,Raquel Ferrer-Lorente,Laura Zanatto,Maria Mercado-Gómez,Beatriz Aguilar-Bravo,Paloma Ruiz-Blázquez,Maria Fernandez-Fernandez,Artur Navarro-Gascon,Albert Blasco-Roset,Paula Sànchez-Fernàndez-de-Landa,Joan Pera,Damia Romero-Moya,Paula Ayuso Garcia,Celia Martínez Sánchez,Laura Sererols Viñas,Paula Cantallops Vilà,Carmen I Cárcamo Giráldez,Andrew McQuillin,Marsha Y Morgan,Daniel Moya-Rull,Núria Montserrat,Delphine Eberlé,Bart Staels,Bénédicte Antoine,Mikel Azkargorta,Juan-José Lozano,Maria L Martínez-Chantar,Alessandra Giorgetti,Félix Elortza,Anna Planavila,Marta Varela-Rey,Ashwin Woodhoo,Antonio Zorzano,Isabel Graupera,Anna Moles,Mar Coll,Silvia Affo,Pau Sancho-Bru

Cell reports 43:113942 PubMed38489266

2024

PAD4 controls tumor immunity via restraining the MHC class II machinery in macrophages.

Applications

Unspecified application

Species

Unspecified reactive species

Michael R Pitter,Ilona Kryczek,Hongjuan Zhang,Nisha Nagarsheth,Houjun Xia,Zhenyu Wu,Yuzi Tian,Karolina Okla,Peng Liao,Weichao Wang,Jiajia Zhou,Gaopeng Li,Heng Lin,Linda Vatan,Sara Grove,Shuang Wei,Yongqing Li,Weiping Zou

PeerJ 11:e15839 PubMed37609436

2023

A novel immune-related prognostic signature based on Chemoradiotherapy sensitivity predicts long-term survival in patients with esophageal squamous cell carcinoma.

Applications

Unspecified application

Species

Unspecified reactive species

Zewei Zhang,Shiliang Liu,Tiantian Gao,Yuxian Yang,Quanfu Li,Lei Zhao

Yonsei medical journal 63:554-563 PubMed35619579

2022

RAR-Related Orphan Receptor: An Accelerated Preeclampsia Progression by Activating the JAK/STAT3 Pathway.

Applications

Unspecified application

Species

Unspecified reactive species

Ying Yu,Tongyu Zhu

Clinical and experimental nephrology 26:512-521 PubMed35195816

2022

RORA alleviates LPS-induced apoptosis of renal epithelial cells by promoting PGC-1α transcription.

Applications

Unspecified application

Species

Unspecified reactive species

Dayong Li,Guanlan Liu,Yundou Wu

BMC anesthesiology 21:213 PubMed34479497

2021

Sevoflurane blocks glioma malignant development by upregulating circRELN through circRELN-mediated miR-1290/RORA axis.

Applications

Unspecified application

Species

Unspecified reactive species

Xiaofang Kang,Hongxia Li,Zaiwang Zhang

Molecular cancer research : MCR 18:1340-1353 PubMed32503923

2020

Circadian Oscillations Persist in Cervical and Esophageal Cancer Cells Displaying Decreased Expression of Tumor-Suppressing Circadian Clock Genes.

Applications

Unspecified application

Species

Unspecified reactive species

Pauline J van der Watt,Laura C Roden,Kate T Davis,M Iqbal Parker,Virna D Leaner
View all publications

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