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Artikel-Nr: (BOSSBS-12397R-A750)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-A750
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans. The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster. In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells. The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies. Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1. Mam1 is an essential component of the transcriptional apparatus of Notch Signalling. The gene which encodes Mam1 maps to human chromosome 5.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-CY3)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-CY3
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


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Artikel-Nr: (BOSSBS-12397R-CY5)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-CY5
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-CY7)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-CY7
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-A680)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-A680
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans. The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster. In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells. The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies. Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1. Mam1 is an essential component of the transcriptional apparatus of Notch Signalling. The gene which encodes Mam1 maps to human chromosome 5.
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-HRP)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-HRP
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-A350)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-A350
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-A488)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-A488
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-A555)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-A555
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-FITC)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-FITC
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (BOSSBS-12397R-A647)
Lieferant: Bioss
Hersteller Artikel Nummer : BS-12397R-A647
Beschreibung: Notch receptors are involved in cell-fate determination in organisms as diverse as flies, frogs, and humans (1). The 'mastermind' gene has been identified in multiple genetic screens for modifiers of Notch mutations in Drosophila melanogaster (2). In Drosophila, loss-of-function mutations of Notch produce a 'neurogenic' phenotype in which cells destined to become epidermis switch fate and differentiate to neural cells (2). The human homolog, mastermind-like 1 (Mam1), localizes to nuclear bodies (2-4). Mam1 binds to the ankyrin repeat domain of all four mammalian Notch receptors, forms a DNA-binding complex with ICN and RBP-Jk, and amplifies Notch-induced transcription of Hes1 (2). Mam1 is an essential component of the transcriptional apparatus of Notch signaling (5). The gene which encodes Mam1 maps to human chromosome 5 (4).
UOM: 1 * 100 µl


Artikel-Nr: (ICNA0216000380)
Lieferant: MP Biomedicals
Hersteller Artikel Nummer : 0216000380
Beschreibung: A copolymer of sucrose and epichlorohydrin. Component used to make density gradients for lymphocyte separation.
UOM: 1 * 100 g


Artikel-Nr: (81201-500MG)
Lieferant: Merck
Hersteller Artikel Nummer : 81201-500MG
Beschreibung: Poly(ethylene glycol) is the most widely used non-ionic, hydrophilic polymer, which can find wide applications in biomedical industry such as in drug delivery systems.
UOM: 1 * 500 mg


Lieferant: MP Biomedicals
Beschreibung: Casamino acids is supplemented to microbiological growth media.

Lieferant: MP Biomedicals
Beschreibung: Rich medium for the growth of <i>E. coli</i> and certified for plasmid and other bacterial cultures in liquid medium.

Artikel-Nr: (ICNA091012017)
Lieferant: MP Biomedicals
Hersteller Artikel Nummer : 091012017
Beschreibung: This dehydrated medium is used for molecular biology applications.
UOM: 1 * 500 g


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