2-Amino-5-bromo-4-methoxybenzoic+acid
Artikel-Nr:
(BOSSBS-13046R-A680)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-13046R-A680
Lokale Artikelnummer::
BOSSBS-13046R-A680
Beschreibung:
Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-13046R-A488)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-13046R-A488
Lokale Artikelnummer::
BOSSBS-13046R-A488
Beschreibung:
Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-13046R-A350)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-13046R-A350
Lokale Artikelnummer::
BOSSBS-13046R-A350
Beschreibung:
Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-13205R-A350)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-13205R-A350
Lokale Artikelnummer::
BOSSBS-13205R-A350
Beschreibung:
The forkhead domain-containing gene family (Fox) comprises over 20 members in mammals and is defined by a conserved 110 amino-acid motif containing a winged helix structure DNA-binding domain. The members of this gene family have been implicated as key regulators of embryogenesis, cell cycling, cell lineage restriction and cancer. As such, FOXN2 contains a domain with homology to the forkhead DNA binding domain. FOXN2, or Human T-cell leukemia virus enhancer factor, is a 341 amino acid protein mapping to human gene FOXN2, which has been localized to human chromosome 2p16-p22. This protein, encoded by a 1239-bp cDNA isolated from the Jurkat cDNA library, is capable of binding to a region of the human T-cell leukemia virus long terminal repeat (HTLV-I LTR) located between amino acids 155 and 117. This purine-rich region is important in the regulation of gene expression by the Ets family of transcription factors. FOXN2 is a unique cellular gene that may function in the transcriptional regulation of HTLV-I LTR.
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-13205R-HRP)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-13205R-HRP
Lokale Artikelnummer::
BOSSBS-13205R-HRP
Beschreibung:
The forkhead domain-containing gene family (Fox) comprises over 20 members in mammals and is defined by a conserved 110 amino-acid motif containing a winged helix structure DNA-binding domain. The members of this gene family have been implicated as key regulators of embryogenesis, cell cycling, cell lineage restriction and cancer. As such, FOXN2 contains a domain with homology to the forkhead DNA binding domain. FOXN2, or Human T-cell leukemia virus enhancer factor, is a 341 amino acid protein mapping to human gene FOXN2, which has been localized to human chromosome 2p16-p22. This protein, encoded by a 1239-bp cDNA isolated from the Jurkat cDNA library, is capable of binding to a region of the human T-cell leukemia virus long terminal repeat (HTLV-I LTR) located between amino acids 155 and 117. This purine-rich region is important in the regulation of gene expression by the Ets family of transcription factors. FOXN2 is a unique cellular gene that may function in the transcriptional regulation of HTLV-I LTR.
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-5119R-CY3)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-5119R-CY3
Lokale Artikelnummer::
BOSSBS-5119R-CY3
Beschreibung:
This gene encodes a fatty acid amide hydrolase that shares a conserved protein motif with the amidase signature family of enzymes. The encoded enzyme is able to catalyze the hydrolysis of a broad range of bioactive lipids, including those from the three main classes of fatty acid amides; N-acylethanolamines, fatty acid primary amides and N-acyl amino acids. This enzyme has a preference for monounsaturated acyl chains as a substrate.[provided by RefSeq, Sep 2009]
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-5119R-HRP)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-5119R-HRP
Lokale Artikelnummer::
BOSSBS-5119R-HRP
Beschreibung:
This gene encodes a fatty acid amide hydrolase that shares a conserved protein motif with the amidase signature family of enzymes. The encoded enzyme is able to catalyze the hydrolysis of a broad range of bioactive lipids, including those from the three main classes of fatty acid amides; N-acylethanolamines, fatty acid primary amides and N-acyl amino acids. This enzyme has a preference for monounsaturated acyl chains as a substrate.[provided by RefSeq, Sep 2009]
VE:
1 * 100 µl
Lieferant:
COMBI-BLOCKS
Beschreibung:
5-Brom-2-methoxyphenylboronsäure
Artikel-Nr:
(BOSSBS-4568M)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-4568M
Lokale Artikelnummer::
BOSSBS-4568M
Beschreibung:
Epidermal growth factor (EGF) is an acid- and heat-stable 53 amino acid protein originally found in rodents and humans. It has been shown to be a potent mitogen for a variety of cell types both in vivo and in vitro. EGF binds to the EGF receptor on the surface of cells and mediates intrinsic phosphorylation of the receptor on tyrosine residues. It has been detected in nearly all body fluids, such as urine (urogastrone), saliva, milk and platelet-rich plasma. EGF, TGF?and vaccinia virus growth factor exhibit 30-40% amino acid homology. Several additional members of the EGF/TGF family have been described; these include Cripto, Amphiregulin and the heparin-binding EGF-like growth factor. Amphiregulin and the heparin-binding EGF-like growth factor both bind to the EGF receptor.
VE:
1 * 100 µl
Artikel-Nr:
(BC19)
Lieferant:
G-Biosciences
Hersteller-Artikelnummer::
BC19
Lokale Artikelnummer::
GENOBC19
Beschreibung:
N-Succinimidyl(4-iodoacetyl)aminobenzoate Heterobifunctional Cross Linkers.
VE:
1 * 100 mg
Artikel-Nr:
(FLUO018293-5G)
Lieferant:
FLUOROCHEM
Hersteller-Artikelnummer::
018293-5G
Lokale Artikelnummer::
FLUO018293-5G
Beschreibung:
2-Brom-p-toluylsäure
VE:
1 * 5 g
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Lieferant:
COMBI-BLOCKS
Beschreibung:
4-Brom-3-methoxyphenylboronsäure
Lieferant:
COMBI-BLOCKS
Beschreibung:
2-Brom-5-chlorphenylboronsäure
Artikel-Nr:
(BOSSBS-11389R-CY3)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-11389R-CY3
Lokale Artikelnummer::
BOSSBS-11389R-CY3
Beschreibung:
This protein functions in trans to edit the amino acid moiety from incorrectly charged tRNA(Ala) (by similariy). There are 2 isoforms produced by alternative splicing.
VE:
1 * 100 µl
Artikel-Nr:
(BOSSBS-11014R-A750)
Lieferant:
Bioss
Hersteller-Artikelnummer::
BS-11014R-A750
Lokale Artikelnummer::
BOSSBS-11014R-A750
Beschreibung:
ILVBL is a 632 amino acid single-pass membrane protein that belongs to the TPP enzyme family. Expressed in the majority of tissues, ILVBL has the highest level of expression in heart, pancreas and placenta. ILVBL is highly homologous to several bacterial enzymes, including the B isozyme of the large catalytic subunit of E. coli acetohydroxy-acid synthase (AHAS) and the oxalyl-coA decarboxylase of O. formigenes, that utilize thiamine pyrophosphate as a cofactor. ILVBL binds one magnesium ion and one thiamine pyrophosphate per subunit, and may catalyse the initial step in branched-chain amino acid biosynthesis. The gene encoding ILVBL maps to human chromosome 19p13.12 and mouse chromosome 10 C1.
VE:
1 * 100 µl
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