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Retinoic Acid Receptor alpha Protein (AA 1-462) (Strep Tag)

Recombinant Retinoic Acid Receptor alpha protein expressed in Cell-free protein synthesis (CFPS).
Catalog No. ABIN3094887
starts at
$20,480.57
Plus shipping costs $50.00, if applicable $20.00 dry ice
250 μg
Shipping to: United States
Delivery in 55 to 67 Business Days

Quick Overview for Retinoic Acid Receptor alpha Protein (AA 1-462) (Strep Tag) (ABIN3094887)

Target

See all Retinoic Acid Receptor alpha (RARA) Proteins
Retinoic Acid Receptor alpha (RARA) (Retinoic Acid Receptor, alpha (RARA))

Protein Type

Recombinant

Origin

  • 7
  • 4
  • 2
  • 2
  • 1
  • 1
  • 1
  • 1
  • 1
Human

Source

  • 7
  • 7
  • 2
  • 1
  • 1
  • 1
  • 1
Cell-free protein synthesis (CFPS)

Application

Western Blotting (WB), SDS-PAGE (SDS), ELISA

Purity

approximately 70-80 % as determined by SDS PAGE, Western Blot and analytical SEC (HPLC).

Grade

custom-made
  • Protein Characteristics

    AA 1-462

    Purification tag / Conjugate

    This Retinoic Acid Receptor alpha protein is labelled with Strep Tag.

    Sequence

    MASNSSSCPT PGGGHLNGYP VPPYAFFFPP MLGGLSPPGA LTTLQHQLPV SGYSTPSPAT IETQSSSSEE IVPSPPSPPP LPRIYKPCFV CQDKSSGYHY GVSACEGCKG FFRRSIQKNM VYTCHRDKNC IINKVTRNRC QYCRLQKCFE VGMSKESVRN DRNKKKKEVP KPECSESYTL TPEVGELIEK VRKAHQETFP ALCQLGKYTT NNSSEQRVSL DIDLWDKFSE LSTKCIIKTV EFAKQLPGFT TLTIADQITL LKAACLDILI LRICTRYTPE QDTMTFSDGL TLNRTQMHNA GFGPLTDLVF AFANQLLPLE MDDAETGLLS AICLICGDRQ DLEQPDRVDM LQEPLLEALK VYVRKRRPSR PHMFPKMLMK ITDLRSISAK GAERVITLKM EIPGSMPPLI QEMLENSEGL DTLSGQPGGG GRDGGGLAPP PGSCSPSLSP SSNRSSPATH SP
    Sequence without tag. The proposed Strep-Tag is based on experience with the expression system. Our team may suggest an additional tag depending on the complexity of the protein. If you have a special request, please contact us..

    Characteristics

    Key Benefits:
    • Made in Germany - from design to production - by highly experienced protein experts.
    • Protein expressed with ALiCE® and purified in one-step affinity chromatography
    • State-of-the-art algorithm used for plasmid design (Gene synthesis).

    This protein is a predefined custom protein and will be made for the first time for your order. Our experts in the lab try to ensure that you receive soluble protein.

    The big advantage of ordering our predefined custom proteins in comparison to ordering custom made proteins from other companies is that there is no financial obligation in case the protein cannot be expressed or purified.


    Expression System:
    • ALiCE®, our Almost Living Cell-Free Expression System is based on a lysate obtained from Nicotiana tabacum c.v.. This contains all the protein expression machinery needed to produce even the most difficult-to-express proteins, including those that require post-translational modifications.
    • During lysate production, the cell wall and other cellular components that are not required for protein production are removed, leaving only the protein production machinery and the mitochondria to drive the reaction. During our lysate completion steps, the additional components needed for protein production (amino acids, cofactors, etc.) are added to produce something that functions like a cell, but without the constraints of a living system - all that's needed is the DNA that codes for the desired protein!

    Concentration:
    • The concentration of our recombinant proteins is measured using the absorbance at 280nm.
    • The protein's absorbance will be measured against its specific reference buffer.
    • We use the Expasy's ProtParam tool to determine the absorption coefficient of each protein.

    Purification

    One-step Strep-tag purification of proteins expressed in Almost Living Cell-Free Expression System (ALiCE®).
  • Want other Options for this Protein ?

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    Your project requires further customization? Contact us and discover our custom protein solutions

  • Application Notes

    In addition to the applications listed above we expect the protein to work for functional studies as well. As the protein has not been tested for functional studies yet we cannot offer a guarantee though.

    Comment

    ALiCE®, our Almost Living Cell-Free Expression System is based on a lysate obtained from Nicotiana tabacum c.v.. This contains all the protein expression machinery needed to produce even the most difficult-to-express proteins, including those that require post-translational modifications.
    During lysate production, the cell wall and other cellular components that are not required for protein production are removed, leaving only the protein production machinery and the mitochondria to drive the reaction. During our lysate completion steps, the additional components needed for protein production (amino acids, cofactors, etc.) are added to produce something that functions like a cell, but without the constraints of a living system - all that's needed is the DNA that codes for the desired protein!

    Restrictions

    For Research Use only
  • Format

    Liquid

    Buffer

    The buffer composition is at the discretion of the manufacturer.
    Standard Storage Buffer: PBS pH 7.4, 10 % Glycerol Might differ depending on protein.

    Handling Advice

    Avoid repeated freeze-thaw cycles.

    Storage

    -80 °C

    Storage Comment

    Store at -80°C.

    Expiry Date

    12 months
  • Target

    Retinoic Acid Receptor alpha (RARA) (Retinoic Acid Receptor, alpha (RARA))

    Alternative Name

    RARA

    Background

    Retinoic acid receptor alpha (RAR-alpha) (Nuclear receptor subfamily 1 group B member 1),FUNCTION: Receptor for retinoic acid (PubMed:19850744, PubMed:16417524, PubMed:20215566). Retinoic acid receptors bind as heterodimers to their target response elements in response to their ligands, all-trans or 9-cis retinoic acid, and regulate gene expression in various biological processes (PubMed:28167758). The RXR/RAR heterodimers bind to the retinoic acid response elements (RARE) composed of tandem 5'-AGGTCA-3' sites known as DR1-DR5 (PubMed:28167758, PubMed:19398580). In the absence of ligand, the RXR-RAR heterodimers associate with a multiprotein complex containing transcription corepressors that induce histone deacetylation, chromatin condensation and transcriptional suppression (PubMed:16417524). On ligand binding, the corepressors dissociate from the receptors and associate with the coactivators leading to transcriptional activation (PubMed:9267036, PubMed:19850744, PubMed:20215566). Formation of a complex with histone deacetylases might lead to inhibition of RARE DNA element binding and to transcriptional repression (PubMed:28167758). Transcriptional activation and RARE DNA element binding might be supported by the transcription factor KLF2 (PubMed:28167758). RARA plays an essential role in the regulation of retinoic acid-induced germ cell development during spermatogenesis (By similarity). Has a role in the survival of early spermatocytes at the beginning prophase of meiosis (By similarity). In Sertoli cells, may promote the survival and development of early meiotic prophase spermatocytes (By similarity). In concert with RARG, required for skeletal growth, matrix homeostasis and growth plate function (By similarity). Together with RXRA, positively regulates microRNA-10a expression, thereby inhibiting the GATA6/VCAM1 signaling response to pulsatile shear stress in vascular endothelial cells (PubMed:28167758). In association with HDAC3, HDAC5 and HDAC7 corepressors, plays a role in the repression of microRNA-10a and thereby promotes the inflammatory response (PubMed:28167758). {ECO:0000250|UniProtKB:P11416, ECO:0000269|PubMed:16417524, ECO:0000269|PubMed:19398580, ECO:0000269|PubMed:19850744, ECO:0000269|PubMed:20215566, ECO:0000269|PubMed:28167758, ECO:0000269|PubMed:9267036}.

    Molecular Weight

    50.8 kDa

    UniProt

    P10276

    Pathways

    Nuclear Receptor Transcription Pathway, Retinoic Acid Receptor Signaling Pathway, Intracellular Steroid Hormone Receptor Signaling Pathway, Steroid Hormone Mediated Signaling Pathway, Cellular Response to Molecule of Bacterial Origin, Positive Regulation of Immune Effector Process, S100 Proteins
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