Human CTDSPL Protein
Catalog Number: B2012065 (100 µg)
Human CTDSPL Protein is a high quality recombinant human CTDSPL protein His tagged and expressed in E.coli. This product has been used as molecular tool for various biochemical applications. It has also been used in a wide array of other chemical and immunological applications. Custom bulk amounts of this product are available upon request.
Live enquiry about this product via Text/SMS: 1-858-900-3210.
Human CTDSPL Protein
Catalog number: B2012065
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 100 µg
Molecular Weight or Concentration: 500 µg/mL
Supplied as: Solution
Applications: molecular tool for various biochemical applications
Storage: -20 °C
Keywords: RBSP3 protein, PSR1 protein, HYA22 protein, CTD small phosphatase like protein, CTD small phosphatase-like protein, SCP3 protein
Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity >18 MΩ-cm) and are filtered through 0.22 um.
1: Beniaminov AD, Krasnov GS, Dmitriev AA, Puzanov GA, Snopok BA, Senchenko VN, Kashuba VI. [Interaction of two tumor suppressors: Phosphatase CTDSPL and Rb protein] Mol Biol (Mosk). 2016 May-Jun;50(3):504-8.
2: Puzanov GA, Senchenko VN. [SCP Phosphatases and Oncogenesis] Mol Biol (Mosk). 2021 Jul-Aug;55(4):531-542.
3: Kandi R, Gutti U, Undi R, Sahu I, Gutti RK. Understanding thrombocytopenia: physiological role of microRNA in survival of neonatal megakaryocytes J Thromb Thrombolysis. 2015 Oct;40(3):310-6.
4: Zhang L, He X, Li F, Pan H, Huang X, Wen X, Zhang H, Li B, Ge S, Xu X, Jia R, Fan X. The miR-181 family promotes cell cycle by targeting CTDSPL, a phosphatase-like tumor suppressor in uveal melanoma J Exp Clin Cancer Res. 2018 Jan 30;37(1):15.
5: Koga K, Yokoi H, Mori K, Kasahara M, Kuwabara T, Imamaki H, Ishii A, Mori KP, Kato Y, Ohno S, Toda N, Saleem MA, Sugawara A, Nakao K, Yanagita M, Mukoyama M. MicroRNA-26a inhibits TGF-β-induced extracellular matrix protein expression in podocytes by targeting CTGF and is downregulated in diabetic nephropathy Diabetologia. 2015 Sep;58(9):2169-80.
6: Krasnov GS, Puzanov GA, Afanasyeva MA, Dashinimaev EB, Vishnyakova KS, Beniaminov AD, Adzhubei AA, Kondratieva TT, Yegorov YE, Senchenko VN. Tumor suppressor properties of the small C-terminal domain phosphatases in non-small cell lung cancer Biosci Rep. 2019 Dec 20;39(12):BSR20193094.
7: Dmitriev AA, Rudenko EE, Kudryavtseva AV, Krasnov GS, Gordiyuk VV, Melnikova NV, Stakhovsky EO, Kononenko OA, Pavlova LS, Kondratieva TT, Alekseev BY, Braga EA, Senchenko VN, Kashuba VI. Epigenetic alterations of chromosome 3 revealed by NotI-microarrays in clear cell renal cell carcinoma Biomed Res Int. 2014;2014:735292.
8: Chen D, Chen Z, Jin Y, Dragas D, Zhang L, Adjei BS, Wang A, Dai Y, Zhou X. MicroRNA-99 family members suppress Homeobox A1 expression in epithelial cells PLoS One. 2013 Dec 3;8(12):e80625.
9: Kashuba VI, Pavlova TV, Grigorieva EV, Kutsenko A, Yenamandra SP, Li J, Wang F, Protopopov AI, Zabarovska VI, Senchenko V, Haraldson K, Eshchenko T, Kobliakova J, Vorontsova O, Kuzmin I, Braga E, Blinov VM, Kisselev LL, Zeng YX, Ernberg I, Lerman MI, Klein G, Zabarovsky ER. High mutability of the tumor suppressor genes RASSF1 and RBSP3 (CTDSPL) in cancer PLoS One. 2009 May 29;4(5):e5231.
10: Lou H, Li S, Yang Y, Kang L, Zhang X, Jin W, Wu B, Jin L, Xu S. A map of copy number variations in Chinese populations PLoS One. 2011;6(11):e27341.
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|Dimensions||8 × 8 × 8 in|
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