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Human RBPMS Recombinant Protein (N-His-SUMO & C-Strep) (HP322012)

Human RBPMS Recombinant Protein (N-His-SUMO & C-Strep)
Human RBPMS Recombinant Protein (N-His-SUMO & C-Strep)
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Overview
Catalog No.HP322012
Description
Recombinant Human RBPMS Protein, N-His-SUMO & C-Strep (HP322012) expressed in E. coli, spanning Glu22-Glu97. Purity: >90% by SDS-PAGE.
Highlights
  • His-Tagged — N-terminal 6×His tag for IMAC purification.
  • E. coli Expression — High-yield, cost-effective production.
  • High Purity — >90% purity verified by SDS-PAGE.
Expression systemE. coli
AccessionQ93062
Protein lengthGlu22-Glu97
ApplicationsELISA, Immunogen, SDS-PAGE, WB, Bioactivity testing in progress
SpeciesHomo sapiens (Human)
Nature Recombinant
Endotoxin level Please contact with the lab for this information.
Purity >90% as determined by SDS-PAGE.
Predicted molecular weight 22.23 kDa
Form Lyophilized
Storage buffer Lyophilized from a solution in PBS pH 7.4, 0.02% NLS, 1 mM EDTA, 4% Trehalose, 1% Mannitol.

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

Reconstitution Reconstitute in sterile water for a stock solution. Adjust the volume of sterile water so that, after reconstitution, the final stock concentration matches the value indicated on the product label or datasheet.

RECONSTITUTION PROTOCOL
1. Allow the product to be reconstituted and the reconstitution diluent to reach room temperature.
2. Tap or briefly centrifuge the product vial before opening to dislodge any lyophilized material that may be dispersed on the wall or cap of the vial.
3. Use the diluent and stock concentration recommended in the product datasheet. If preparing a stock concentration higher than recommended, contact Technical Service.
4. After adding the diluent, re-cap the vial and invert gently by hand or place on a slow rocking platform to allow the reconstitution diluent to coat all the surfaces inside the vial. Note: Do not mix by vortexing or by pipetting the material up and down.
5. Allow the vial to sit at room temperature with gentle agitation for at least 15 minutes before aliquotting or using.
6. Store the reconstituted material in single use aliquots in polypropylene or siliconized tubes. Aliquots of 10 μL or larger are recommended.
Shipping In general, proteins are provided as lyophilized powder/frozen liquid. They are shipped out with dry ice/blue ice unless customers require otherwise.
Stability and Storage Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt.
Alternate NamesHermes, Heart and RRM expressed sequence, RNA-binding protein with multiple splicing, HERMES, RBP-MS, RBPMS
Background

RNA-binding protein with multiple splicing (RBPMS) is a ~21 kDa protein. RNA binding protein that mediates the regulation of pre-mRNA alternative splicing (AS). Acts either as activator (FLNB, HSPG2, LIPA1, MYOCD, PTPRF and PPFIBP1) or repressor (TPM1, ACTN1, ITGA7, PIEZO1, LSM14B, MBNL1 and MBML2) of splicing events on specific pre-mRNA targets. Together with RNA binding proteins RBFOX2 and MBNL1/2, activates a splicing program associated with differentiated contractile vascular smooth muscle cells (SMC) by regulating AS of numerous pre-mRNA involved in actin cytoskeleton and focal adhesion machineries, suggesting a role in promoting a cell differentiated state. Binds to introns, exons and 3'-UTR associated with tandem CAC trinucleotide motifs separated by a variable spacer region, at a minimum as a dimer. The minimal length of RNA required for RBPMS-binding tandem CAC motifs is 15 nt, with spacing ranging from 1 to 9 nt.

1. Farazi, TA. et al. (2014) RNA (New York, N.Y.) 20, 1090-102. PMID: 24860013
2. Teplova, M. et al. (2016) Quarterly reviews of biophysics 49, e1. PMID: 26347403
Note For research use only.
Images
  • Human RBPMS Recombinant Protein (N-His-SUMO & C-Strep)

    SDS-PAGE

    SDS-PAGE for Recombinant Human RBPMS Protein, N-His-SUMO & C-Strep

Formula
Mass (g) = Concentration (mol/L) × Volume (L) × MW (g/mol)
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Formula
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