1. Recombinant Proteins
  2. Enzymes & Regulators
  3. Oxidoreductases (EC 1)
  4. Rnls Protein, Mouse (His-SUMO)

Rnls Protein, Mouse (His-SUMO)

Cat. No.: HY-P71521
Handling Instructions

The Rnls protein catalyzes the oxidation of the less abundant 1,2-dihydro-β-NAD(P) and 1,6-dihydro-β-NAD(P) to form β-NAD(P)(+). Mainly secreted by the kidneys, this enzyme circulates in the blood and plays a vital role in regulating heart function and systemic blood pressure. Rnls Protein, Mouse (His-SUMO) is the recombinant mouse-derived Rnls protein, expressed by E. coli , with N-His, N-SUMO labeled tag.

For research use only. We do not sell to patients.

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Description

The Rnls protein catalyzes the oxidation of the less abundant 1,2-dihydro-β-NAD(P) and 1,6-dihydro-β-NAD(P) to form β-NAD(P)(+). Mainly secreted by the kidneys, this enzyme circulates in the blood and plays a vital role in regulating heart function and systemic blood pressure. Rnls Protein, Mouse (His-SUMO) is the recombinant mouse-derived Rnls protein, expressed by E. coli , with N-His, N-SUMO labeled tag.

Background

Renalase (Rnls) is an enzyme that catalyzes the oxidation of the less abundant 1,2-dihydro-beta-NAD(P) and 1,6-dihydro-beta-NAD(P) to form beta-NAD(P)(+). This enzyme is primarily secreted by the kidney, circulating in the blood and playing a crucial role in modulating cardiac function and systemic blood pressure. Renalase has been identified as a key factor in lowering blood pressure in vivo, achieved by decreasing cardiac contractility and heart rate while preventing a compensatory increase in peripheral vascular tone. This suggests a causal link between renalase, increased plasma catecholamine levels, and heightened cardiovascular risk. Notably, high concentrations of catecholamines activate plasma renalase, promoting its secretion and synthesis. The multifaceted functions of renalase underscore its significance in cardiovascular regulation and its potential as a therapeutic target for managing blood pressure and cardiovascular health.

Species

Mouse

Source

E. coli

Tag

N-His;N-SUMO

Accession

A7RDN6-1 (A18-I342)

Gene ID
Molecular Construction
N-term
6*His-SUMO
Rnls (A18-I342)
Accession # A7RDN6-1
C-term
Synonyms
Rnls; Renalase; EC 1.6.3.5; Monoamine oxidase-C; MAO-C; mMAO-C
AA Sequence

ALLRKEITAPLYLGLWDKGGDIGGRMITASSPHNPRCTADLGAQYITCSPHYVKEHQNFYEELLAHGILKPLTSPIEGMKGKEGDCNFVAPQGFSSVIKYYLKKSGAEVSLKHCVTQIHLKDNKWEVSTDTGSAEQFDLVILTMPAPQILELQGDIVNLISERQREQLKSVSYSSRYALGLFYEVGMKIGVPWSCRYLSSHPCICFISIDNKKRNIESSECGPSVVIQTTVPFGVQHLEASEADVQKLMIQQLETILPGLPQPVATICHKWTYSQVTSSVSDRPGQMTLHLKPFLVCGGDGFTHSNFNGCISSALSVMKVLKRYI

Molecular Weight

Approximately 52.0 kDa

Purity

Greater than 90% as determined by reducing SDS-PAGE.

Endotoxin Level

<1 EU/μg, determined by LAL method.

Documentation

Rnls Protein, Mouse (His-SUMO) Related Classifications

Help & FAQs
  • Do most proteins show cross-species activity?

    Species cross-reactivity must be investigated individually for each product. Many human cytokines will produce a nice response in mouse cell lines, and many mouse proteins will show activity on human cells. Other proteins may have a lower specific activity when used in the opposite species.

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The reconstitution calculator equation

Volume (to add to vial) = Mass (in vial) ÷ Desired Reconstitution Concentration

Volume (to add to vial) = Mass (in vial) ÷ Desired Reconstitution Concentration
= ÷

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
× = ×
C1   V1   C2   V2

The specific activity calculator equation

Specific Activity (Unit/mg) = 106 ÷ Biological Activity (ED50)

Specific Activity (Unit/mg) = 106 ÷ Biological Activity (ED50)
Unit/mg = 106 ÷ ng/mL

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Rnls Protein, Mouse (His-SUMO)
Cat. No.:
HY-P71521
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