Carboxylesterase 2 (Human Highly Pure)


Catalog Number: B2010479 (10 ug)
Carboxylesterase 2 (Human Highly Pure) is a highly pure (> 95%) human carboxylesterase 2 expressed in HEK 293 cells. This protein has a wide variety of applications in biochemistry and cellular biology. Custom bulk orders of this product are available upon request.
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SKU: B2010479 Categories: ,


Carboxylesterase 2 (Human Highly Pure)
Catalog number: B2010479
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 10 ug
Molecular Weight or Concentration: 60 kDa
Supplied as: Lyophilized powder
Appearance: Powder
Applications: highly pure (> 95%) human carboxylesterase 2 expressed in HEK 293 cells. This protein has a wide variety of applications in biochemistry and cellular biology.
Storage: -20C
Keywords: CE-2 Protein, CES2A1 Protein, iCE Protein, PCE-2 Protein
Grade: Biotechnology grade. All solid components are highly pure (minimum 95%). All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um.

1: Song SS, Sun CP, Zhou JJ, Chu L. Flavonoids as human carboxylesterase 2
inhibitors: Inhibition potentials and molecular docking simulations. Int J Biol
Macromol. 2019 Jun 15;131:201-208.

2: Zou LW, Jin Q, Wang DD, Qian QK, Hao DC, Ge GB, Yang L. Carboxylesterase
Inhibitors: An Update. Curr Med Chem. 2018;25(14):1627-1649.

3: Wang Y , Yu F , Luo X , Li M , Zhao L , Yu F . Visualization of
carboxylesterase 2 with a near-infrared two-photon fluorescent probe and
potential evaluation of its anticancer drug effects in an orthotopic colon
carcinoma mice model. Chem Commun (Camb). 2020 Apr 25;56(32):4412-4415.

4: Liu X, Li X, Dong P, Wu Z, Gao J, Wang Q. Near-infrared emission tracks
inter-individual variability of carboxylesterase-2 via a novel molecular
substrate. Mikrochim Acta. 2020 May 6;187(6):313.

5: Sun CP, Yang ZJ, Zhao WY, Zhang RY, Li H, Chen LX. A novel 15-spiro
diterpenoid dimer from Andrographis paniculata with inhibitory potential against
human carboxylesterase 2. Bioorg Chem. 2020 Apr;97:103680.

6: Chen F, Zhang B, Parker RB, Laizure SC. Clinical implications of genetic
variation in carboxyl_esterase drug metabolism. Expert Opin Drug Metab Toxicol.
2018 Feb;14(2):131-142.

7: Zhao YS, Qian XK, Guan XQ, Song PF, Song YQ, He RJ, Sun MR, Wang XY, Zou LW,
Ge GB. Discovery of natural alkaloids as potent and selective inhibitors against
human carboxyl_esterase 2. Bioorg Chem. 2020 Dec;105:104367.

8: Liu TT, Huo XK, Tian XG, Liang JH, Yi J, Zhang XY, Zhang S, Feng L, Ning J,
Zhang BJ, Sun CP, Ma XC. Demethylbellidifolin isolated from Swertia bimaculate
against human carboxylesterase 2: Kinetics and interaction mechanism merged with
docking simulations. Bioorg Chem. 2019 Sep;90:103101.

9: Tsugoshi Y, Watanabe Y, Tanikawa Y, Inoue C, Sugihara K, Kojima H, Kitamura
S. Inhibitory effects of organophosphate esters on carboxylesterase activity of
rat liver microsomes. Chem Biol Interact. 2020 Aug 25;327:109148
10: Ruby MA, Massart J, Hunerdosse DM, Schönke M, Correia JC, Louie SM, Ruas JL,
Näslund E, Nomura DK, Zierath JR. Human Carboxylesterase 2 Reverses Obesity-
Induced Diacylglycerol Accumulation and Glucose Intolerance. Cell Rep. 2017 Jan

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