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Leptin Mouse E. coli Tagless

Type: Recombinant
Source: E. coli Species: Mouse
Other names: Obesity factor, Obese protein, LEP, OB, OBS Product of BioVendor
Product: Size:
RD272001100 0.1 mg
Files: Datasheet PDFMSDS Leptin on pubmed

Product details


Introduction to the Molecule

Leptin, the product of the ob (obese) gene, is a single-chain 16 kDa proteohormone consisting of 146 amino acid residues. Leptin is produced by differentiated adiocytes, although production have been demonstrated in other tissues, such as fundus of the stomach, the sceletal muscle, the liver, and the placenta. Leptin is considered to play an important role in appetite control, fat metabolism and body weight regulation. It targets the central nervous system, in particular the hypothalamus, suppressing food intake and stimulating energy expenditure. In humans, leptin levels correlate with body mass index (BMI) and percentage body fat, and are elevated even in obese individuals. Leptin has a dual action; it decreases the appetite and increases energy consumption, causing more fat to be burned.

Research topic

Animal studies, Energy metabolism and body weight regulation, Reproduction


Amino Acid Sequence

VPIQKVQDDT KTLIKTIVTR INDISHTQSV SAKQRVTGLD FIPGLHPILS LSKMDQTLAV YQQVLTSLPS QNVLQIANDL ENLRDLLHLL AFSKSCSLPQ TSGLQKPESL DGVLEASLYS TEVVALSRLQ GSLQDILQQL DVSPEC

Source

E. coli

Purity

>95%

SDS-PAGE gel

12% SDS-PAGE separation of Mouse Leptin
1. M.W. marker – 14, 21, 31, 45, 66, 97 kDa
2. reduced and heated sample, 5μg/lane
3. non-reduced and non-heated sample, 5μg/lane

Formulation

Filtered (0,4 μm) and lyophilized in 0.5 mg/mL in 10 mM sodium citrate, pH 4.0

Reconstitution

Add deionized water to prepare a working stock solution of approximately 0.5 mg/mL and let the lyophilized pellet dissolve completely. Once the protein is solubilized, pH can be readjusted to the physiological range. Product is not sterile! Please filter the product by an appropriate sterile filter before using it in the cell culture.

Storage, Stability/Shelf Life

Store lyophilized protein at –20°C. Lyophilized protein remains stable until the expiry date when stored at –20°C. Aliquot reconstituted protein to avoid repeated freezing/thawing cycles and store at –80°C for long term storage. Reconstituted protein can be stored at 4°C for a limited period of time; it does not show any change after one week at 4°C.

Quality Control Test

BCA to determine quantity of the protein.

SDS PAGE to determine purity of the protein.

Applications

ELISA, Western blotting

Note

This product is intended for research use only. The recombinant protein is for research use only.


References

  • Considine R.V., Sinha M.K., Heiman M.L. et al. Serum immunoreactive leptin concentrations in normal-weight and obese humans. N. Engl. J. Med. 334, 292-295 (1996) .
  • Considine R.V., Sinha M.K., Heiman M.L. et al. Serum immunoreactive leptin concentrations in normal weight and obese humans. N. Engl. J. Med. 1996; (334), 292 295.
  • Halaas J.L., Gajiwala K.S., Maffei M. et al. Weight-reducing effects of the plasma protein encoded by the obese gene. Science 269, 543-546 (1995) .
  • Halaas J.L., Gajiwala K.S., Maffei M. et al. Weight reducing effects of the plasma protein encoded by the obese gene. Science 1995; (269), 543 546.
  • Lonnqvist F., Arner P., Nordfors L. and Shalling M. Overexpression of the obese (ob) gene in adipose tissue of human subjects. Nature Med. 1, 950-953 (1995) .
  • Maffei M., Halaas J., Ravussin E. et al. Leptin levels in human and rodent: measurement of plasma leptin and ob RNA in obese and weight-reduced subjects. Nature Med. 1, 1155-1161 (1995) .
  • Maffei M., Halaas J., Ravussin E. et al. Leptin levels in human and rodent: measurement of plasma leptin and ob RNA in obese and weight reduced subjects. Nature Med. 1995; 1155 1161.
  • Ricci M.R., Lee M.J., et al. Isoproterenol decreases leptin release from rat and human adipose tissue through posttranscriptional mechanisms. Am. J. Physiol. Endocrinol. Metab. 2005; (288), E798-E804.
  • Zhang Y., Proenca R., Maffei M., Barone M., Leopold L., Friedman J. Positional Cloning of the Mouse Obese Gene and its Human Homologue. Nature 372, 425-432 (1994) .


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