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MLXIPL Produkte

(MLX Interacting Protein-Like (MLXIPL))

Kategorien

This gene encodes a basic helix-loop-helix leucine zipper transcription factor of the Myc/Max/Mad superfamily. This protein forms a heterodimeric complex and binds and activates, in a glucose-dependent manner, carbohydrate response element (ChoRE) motifs in the promoters of triglyceride synthesis genes. The gene is deleted in Williams-Beuren syndrome, a multisystem developmental disorder caused by the deletion of contiguous genes at chromosome 7q11.23. [provided by RefSeq, Jul 2008].

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Ausgewählte MLXIPL Kategorien

MLXIPL Antikörper

High quality antibodies with extensive validation data.

MLXIPL Proteine

Proteins for various applications incl. WB, ELISA, IF etc.

Empfohlene MLXIPL Antikörper

Produkt
Reaktivität
Applikation
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Applikation WB, ELISA, ICC
Validierungen
  • (2)
  • (4)
Kat. Nr. ABIN1724913
Menge 100 μL
Datenblatt Datenblatt
Reaktivität Human, Mouse
Applikation WB, IHC (p)
Validierungen
  • (3)
Kat. Nr. ABIN656493
Menge 400 μL
Datenblatt Datenblatt
Reaktivität Cow, Guinea Pig, Human, Pig
Applikation WB, IHC, IHC (p)
Validierungen
  • (2)
Kat. Nr. ABIN203213
Menge 100 μL
Datenblatt Datenblatt

Empfohlene MLXIPL ELISA Kits

Produkt
Reaktivität
Analytical Method
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Analytical Method Quantitative Sandwich ELISA
Validierungen
Kat. Nr. ABIN6226988
Menge 96 tests
Datenblatt Datenblatt

Empfohlene MLXIPL Proteine

Produkt
Reaktivität
Source
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Source Wheat germ
Validierungen
  • (1)
Kat. Nr. ABIN1311033
Menge 10 μg
Datenblatt Datenblatt
Reaktivität Mouse
Source Tobacco (Nicotiana tabacum)
Validierungen
Kat. Nr. ABIN3128085
Menge 1 mg
Datenblatt Datenblatt
Reaktivität Human
Source Tobacco (Nicotiana tabacum)
Validierungen
Kat. Nr. ABIN3083754
Menge 1 mg
Datenblatt Datenblatt

Neueste Publikationen zu unseren MLXIPL Produkten

Van der Werf, Walter, Bietiger, Seyfritz, Mura, Peronet, Legrandois, Werner, Ennahar, Digel, Maillard-Pedracini, Pinget, Jeandidier, Marchioni, Sigrist, Dal: "Beneficial effects of cherry consumption as a dietary intervention for metabolic, hepatic and vascular complications in type 2 diabetic rats." in: Cardiovascular diabetology, Vol. 17, Issue 1, pp. 104, (2019) (PubMed).

Ly, Maekawa, Yoshida, Liu, Muratani, Ishii: "RNA-Sequencing Analysis of Paternal Low-Protein Diet-Induced Gene Expression Change in Mouse Offspring Adipocytes." in: G3 (Bethesda, Md.), Vol. 9, Issue 7, pp. 2161-2170, (2019) (PubMed).

Fan, Nørgaard, Bindesbøll, Lucas, Dalen, Babaie, Itkonen, Matthews, Nebb, Grønning-Wang: "LXRα Regulates Hepatic ChREBPα Activity and Lipogenesis upon Glucose, but Not Fructose Feeding in Mice." in: Nutrients, Vol. 9, Issue 7, (2018) (PubMed).

Kim, Kim, Choi, Lee, Roh, Kim, Kang, Cho, Park, Kim, Yoo, Choi: "Aralia elata (Miq) Seem Extract Decreases O-GlcNAc Transferase Expression and Retinal Cell Death in Diabetic Mice." in: Journal of medicinal food, Vol. 20, Issue 10, pp. 989-1001, (2018) (PubMed).

Kim, Astapova, Flier, Hannou, Doridot, Sargsyan, Kou, Fowler, Liang, Herman: "Intestinal, but not hepatic, ChREBP is required for fructose tolerance." in: JCI insight, Vol. 2, Issue 24, (2018) (PubMed).

Kwon, Lee, Cho, Kim, Anduaga, Starost, Mansfield, Chou: "Liver-directed gene therapy for murine glycogen storage disease type Ib." in: Human molecular genetics, Vol. 26, Issue 22, pp. 4395-4405, (2018) (PubMed).

Linden, Li, Choi, Fang, Fukasawa, Uyeda, Hammer, Horton, Engelking, Liang: "Interplay between ChREBP and SREBP-1c coordinates postprandial glycolysis and lipogenesis in livers of mice." in: Journal of lipid research, Vol. 59, Issue 3, pp. 475-487, (2018) (PubMed).

Singh, Kim, Hahm, Pore, Jacobs, Singh: "Prostate cancer chemoprevention by sulforaphane in a preclinical mouse model is associated with inhibition of fatty acid metabolism." in: Carcinogenesis, Vol. 39, Issue 6, pp. 826-837, (2018) (PubMed).

Kumar, Katz, Schulz, Kim, Honig, Li, Davenport, Homann, Garcia-Ocaña, Herman, Haynes, Chipuk, Scott: "Activation of Nrf2 Is Required for Normal and ChREBPα-Augmented Glucose-Stimulated β-Cell Proliferation." in: Diabetes, Vol. 67, Issue 8, pp. 1561-1575, (2018) (PubMed).

Bricambert, Alves-Guerra, Esteves, Prip-Buus, Bertrand-Michel, Guillou, Chang, Vander Wal, Canonne-Hergaux, Mathurin, Raverdy, Pattou, Girard, Postic, Dentin: "The histone demethylase Phf2 acts as a molecular checkpoint to prevent NAFLD progression during obesity." in: Nature communications, Vol. 9, Issue 1, pp. 2092, (2018) (PubMed).

Synonyme und alternative Namen zu MLXIPL

MLX interacting protein-like (MLXIPL), MLX interacting protein like (MLXIPL), MLX interacting protein-like (Mlxipl), bHLHd14, ChREBP, CHREBP, MIO, MLXIPL, MONDOB, WBSCR14, Wbscr14, WS-bHLH

Bezeichner auf Proteinebene für MLXIPL

  • MLX interacting protein-like
  • carbohydrate response element binding protein variant 1
  • carbohydrate response element binding protein variant 2
  • Williams-Beuren syndrome chromosomal region 14 protein homolog
  • carbohydrate responsive element binding protein
  • williams-Beuren syndrome chromosomal region 14 protein homolog
  • MLX-interacting protein-like
  • Mlx interactor
  • WS basic-helix-loop-helix leucine zipper protein
  • Williams Beuren syndrome chromosome region 14
  • Williams-Beuren syndrome chromosome region 14 protein 1
  • Williams-Beuren syndrome chromosome region 14 protein 2
  • carbohydrate response element binding protein
  • carbohydrate-responsive element-binding protein
  • class D basic helix-loop-helix protein 14
  • williams-Beuren syndrome chromosomal region 14 protein
  • MLX interacting protein-like beta
  • MLX interactor
  • Williams-Beuren syndrome chromosome region 14 homolog
  • putative hepatic transcription factor
  • WBSCR14 protein-like
  • Williams-Beuren syndrome chromosomal region 14 protein
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