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Catalog Number: (10452-442)
Supplier: Bioss
Description: SNARE that may be involved in targeting and fusion of Golgi-derived retrograde transport vesicles with the ER. Required for maintenance of ER network. Implicated in the suppression of cell death.Tissue specificity: Isoform 1 is highly expressed in heart, brain, liver skeletal muscle and pancreas. Isoform 3 is moderately expressed in placenta, lung and kidney. Isoform 4 is highly expressed in testis and small intestine.


Catalog Number: (10090-592)
Supplier: Proteintech
Description: mu Crystallin(thiomorpholine-carboxylate dehydrogenase) is also named as THBP, CRYM, ketimine reductase and belongs to the ornithine cyclodeaminase family. This protein catalyzes the reduction of imine bonds in brain substrates that may include cystathionine ketimine (CysK) and lanthionine ketimine (LK). It is also involved in the regulation of the free intracellular concentration of triiodothyronine and access to its nuclear receptor.


Catalog Number: (89359-492)
Supplier: Genetex
Description: Chemokine receptor D6 expression has been documented in human skin, small intestine, large intestine, appendix, lymph node, vessels, tonsil, spleen, as well as from rat brain tissues. ESTs have been isolated from cancerous human lung, uterus, cervix, placenta, blood, and from normal human placenta libraries.


Catalog Number: (76195-048)
Supplier: Prosci
Description: UCHL1/PGP9.5 is a member of a gene family whose products hydrolyze small C-terminal adducts of ubiquitin to generate the ubiquitin monomer. Expression of PGP9.5 is highly specific to neurons and to cells of the diffuse neuroendocrine system and their tumors. It is abundantly present in all neurons (accounts for 1-2% of total brain protein), expressed specifically in neurons and testis/ovary. [Wiki]


Catalog Number: (10281-346)
Supplier: Bioss
Description: Heme oxygenase cleaves the heme ring at the alpha methene bridge to form biliverdin. Biliverdin is subsequently converted to bilirubin by biliverdin reductase. Under physiological conditions, the activity of heme oxygenase is highest in the spleen, where senescent erythrocytes are sequestrated and destroyed. Heme oxygenase 2 could be implicated in the production of carbon monoxide in brain where it could act as a neurotransmitter.


Catalog Number: (10432-306)
Supplier: Bioss
Description: Rab proteins belong to the Ras small GTPase superfamily. The GTP-binding Rab3 subfamily has four known isoforms: 3A, 3B, 3C and 3D. These proteins are expressed in the highest concentration in the brain and endocrine tissues and are involved in regulated exocytosis of hormones and neurotransmitters. Specifically Rab3's are thought to play a role in presynaptic vesicle trafficking and priming.


Catalog Number: (10432-310)
Supplier: Bioss
Description: Rab proteins belong to the Ras small GTPase superfamily. The GTP-binding Rab3 subfamily has four known isoforms: 3A, 3B, 3C and 3D. These proteins are expressed in the highest concentration in the brain and endocrine tissues and are involved in regulated exocytosis of hormones and neurotransmitters. Specifically Rab3's are thought to play a role in presynaptic vesicle trafficking and priming.


Catalog Number: (89161-760)
Supplier: Enzo Life Sciences
Description: Sequence is calcineurin (CaN) autoinhibitory domain (rat brain CaN aa 457-482). It inhibits calcineurin with an IC50 of 10 µM using [32P]myosin light chain as substrate. Inhibits Mn2+-stimulated calcineurin activity but has no effect on Ni2+-stimulated activity. Ki=4.4 µM with radiolabeled [Ala97]-RII (81-99) peptide as the phosphatase substrate.


Catalog Number: (76101-626)
Supplier: Bioss
Description: Methamphetamine (METH) is closely related chemically to amphetamine (AMPH). METH is a potent central nervous system stimulant with additional peripheral sympathomimetic effects. METH and AMPH have been used clinically in the treatment of obesity, minimal brain dysfunction, narcolepsy, depression and to counter fatigue. They are also subjected to widespread abuse. METH is an indirect agonists. It causes the release of newly synthesized norepinephrine and dopamine and it blocks the re uptake of these transmitters from the synapse. This can lead to an increase in the concentration of catecholamines in the synapse as well as an overall increase in catecholaminergic activity in the brain. The mechanism of METH induced neurotoxicity for all monoaminergic cell types may lie primarily with the dopaminergic system in the striatum. It may also lie with the interaction between METH induced release of dopamine and its ability to inhibit monoamine oxidase.


Catalog Number: (10237-642)
Supplier: Bioss
Description: CDK5 is serine/threonine kinase involved in synaptic regulation and neuronal development; phosphorylates synaptic protein Pctaire1; regulates acetylcholine receptor expression.CDK5 is a member of the cyclindependent kinase family of serine/threonine kinases. It is present in numerous mammalian tissues including kidney, testes, and ovary. Its activity is detected almost exclusively in brain extracts. Neuronal and muscle cells contain the highest amount of this protein. Similar to other Cdks, monomeric Cdk5 displays no enzymatic activity, but Cdk5 is not activated by cyclins. Instead, the p35 protein, which is expressed solely in the brain, activates Cdk5. Cdk5 interacts with D1 and D3 type G1 cyclins and can phosphorylate histone H1, TAU, MAP2 and NF-H and NF-M. Cdk5 activity is involved in terminal differentiation of neurons and muscle cells.


Catalog Number: (10493-176)
Supplier: Bioss
Description: DIP2A, also known as DIP2, is a 1571 amino acid nuclear protein. It is one of three human homologs (DIP2A, DIP2B and DIP2C) of the Drosophila dip2 (disconnected-interacting protein 2) protein. In Drosophila, dip2 interacts with disco, a protein required for neuronal connections in the visual systems of larvae and adults. The closest vertebrate homologs to disco are the basonuclin genes. In mice, DIP2 homologs show restricted expression to the brain. This suggests that, similar to the function of Drosophila dip2, vertebrate DIP2 homologs may play a role in the development of the nervous system. Expressed ubiquitously with highest expression in the brain, DIP2A is thought to function in signaling throughout the central nervous system by providing positional clues for axon patterning and pathfinding. Four isoforms of DIP2A exist due to alternative splicing events.


Catalog Number: (10493-170)
Supplier: Bioss
Description: DIP2A, also known as DIP2, is a 1571 amino acid nuclear protein. It is one of three human homologs (DIP2A, DIP2B and DIP2C) of the Drosophila dip2 (disconnected-interacting protein 2) protein. In Drosophila, dip2 interacts with disco, a protein required for neuronal connections in the visual systems of larvae and adults. The closest vertebrate homologs to disco are the basonuclin genes. In mice, DIP2 homologs show restricted expression to the brain. This suggests that, similar to the function of Drosophila dip2, vertebrate DIP2 homologs may play a role in the development of the nervous system. Expressed ubiquitously with highest expression in the brain, DIP2A is thought to function in signaling throughout the central nervous system by providing positional clues for axon patterning and pathfinding. Four isoforms of DIP2A exist due to alternative splicing events.


Catalog Number: (10493-168)
Supplier: Bioss
Description: DIP2A, also known as DIP2, is a 1571 amino acid nuclear protein. It is one of three human homologs (DIP2A, DIP2B and DIP2C) of the Drosophila dip2 (disconnected-interacting protein 2) protein. In Drosophila, dip2 interacts with disco, a protein required for neuronal connections in the visual systems of larvae and adults. The closest vertebrate homologs to disco are the basonuclin genes. In mice, DIP2 homologs show restricted expression to the brain. This suggests that, similar to the function of Drosophila dip2, vertebrate DIP2 homologs may play a role in the development of the nervous system. Expressed ubiquitously with highest expression in the brain, DIP2A is thought to function in signaling throughout the central nervous system by providing positional clues for axon patterning and pathfinding. Four isoforms of DIP2A exist due to alternative splicing events.


Catalog Number: (10245-496)
Supplier: Bioss
Description: Natriuretic peptides comprise a family of 3 structurally related molecules: atrial natriuretic peptide (ANP; MIM 108780), brain natriuretic peptide (BNP; MIM 600295), and C-type natriuretic peptide, CNP, encoded by a gene symbolized NPPC. These peptides possess potent natriuretic, diuretic, and vasodilating activities and are implicated in body fluid homeostasis and blood pressure control.


Catalog Number: (10240-792)
Supplier: Bioss
Description: Plays an important role in the regulation of embryonic development, cell proliferation, cell differentiation and cell migration. Required for normal brain, eye, ear and limb development during embryogenesis. Required for normal development of the gonadotropin-releasing hormone (GnRH) neuronal system (By similarity). Cooperates with Wnt-1 in mouse mammary tumor virus-induced murine mammary tumorigenesis.


Catalog Number: (76084-380)
Supplier: Bioss
Description: Pin1 is a Peptidyl-prolyl isomerases (PPIase). Peptidyl-prolyl isomerases (PPIase) facilitate the cis-trans interconversion of the peptidyl-prolyl bond thereby affecting protein folding. Pin1 is a PPIase which specifically recognizes phosphorylated S/T-P bonds. Pin1 has been implicated in tau pathologies that underlie Alzheimer's Disease. Pin1 binds to tau phosphorylated specifically on the Thr231-Pro site and induces conformational changes in tau. Such conformational changes can directly restore the ability of phosphorylated Tau to bind microtubules and promote microtubule assembly and/or facilitate tau dephosphorylation. Pin1 expression inversely correlates with the predicted neuronal vulnerability in normally aged brain and also with actual neurofibrillary degeneration in AD brain. Pin1 could be pivotal for maintainance of normal neuronal function and preventing age-dependent neurodegeneration.


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