antibodies

680 entries

Ten ERK-related proteins in three distinct classes associate with AP-1 proteins and/or AP-1 DNA

Kumar NV, Bernstein LR (2001) Ten ERK-related proteins in three distinct classes associate with AP-1 proteins and/or AP-1 DNA. J Biol Chem 276(34):32362-32372. doi: 10.1074/jbc.M103677200 PMID: 11431474

Related Products: Antibody to MAP Kinase 1/Erk2 (1B3-B9-E4) (Cat. #AB-V86)

Immunohistochemical localization of AT-1A and AT-1B angiotensin II receptor subtypes in the rat adrenal

Speth RC, Grove KL, Brownfield MS (2001) Immunohistochemical localization of AT-1A and AT-1B angiotensin II receptor subtypes in the rat adrenal. Endocrine Society ENDO 2001 – 83rd Annual Meeting of the Endocrine Society, Denver, Colorado. PMID: 909090

Related Products: Angiotensin II receptor (AT-1AR) Rabbit Polyclonal, affinity-purified (Cat. #AB-N25AP)

The lac operator-repressor system is functional in the mouse

Cronin CA, Gluba W, Scrable H (2001) The lac operator-repressor system is functional in the mouse. Genes Dev 15(12):1506-1517. doi: 10.1101/gad.892001 PMID: 11410531

Related Products: Antibody to LacI (9A5) (Cat. #AB-V79)

Assessment of protein gene product 9.5 as a marker of neural crest-derived precursor cells in the developing enteric nervous system.

Sidebotham EL, Woodward MN, Kenny SE, Lloyd DA, Vaillant CR, Edgar DH (2001) Assessment of protein gene product 9.5 as a marker of neural crest-derived precursor cells in the developing enteric nervous system. Pediatr Surg Int 17:304-307. doi: 10.1007/s003830100599 PMID: 11409167

Related Products: Antibody to NGFR (Cat. #AB-N02)

Mesenchymal cell precursors of peritubular smooth muscle cells of the mouse testis can be identified by the presence of the p75 neurotrophin receptor.

Campagnolo L, Russo MA, Puglianiello A, Favale A, Siracusa G (2001) Mesenchymal cell precursors of peritubular smooth muscle cells of the mouse testis can be identified by the presence of the p75 neurotrophin receptor. Biol Reprod 64(2):464-472. doi: 10.1095/biolreprod64.2.464 PMID: 11159348

Related Products: NGFr (mu p75) Rabbit Polyclonal (Cat. #AB-N01)

Acetylcholine receptor-reactive antibody induces nitric oxide production by a rat skeletal muscle cell line: influence of cytokine environment.

Garcia YR, May JJ, Green AM, Krolick KA (2001) Acetylcholine receptor-reactive antibody induces nitric oxide production by a rat skeletal muscle cell line: influence of cytokine environment. J Neuroimmunol 120(1-2):103-111. doi: 10.1016/s0165-5728(01)00414-3 PMID: 11694325

Related Products: Nicotinic Acetylcholine Receptor alpha 1 (mAb 35) Rat Monoclonal (Cat. #AB-N36)

Localization of glutamate in the nervous system of the fly drosophila melanogaster: An immunocytochemical study

Sinakevitch-Pean I, Geffard M, Plotnikova SI (2001) Localization of glutamate in the nervous system of the fly drosophila melanogaster: An immunocytochemical study. Zh Evol Biokhim Fiziol 37(1):64-68. doi: 10.1023/A:1017574120553 PMID: 11424530

Related Products: L-Glutamate Rabbit Polyclonal, Conjugated (Cat. #AB-T08)

Electron microscopic evidence for the assembly of soluble pentameric extracellular domains of the nicotinic acetylcholine receptor.

Tierney ML, Unwin N (2000) Electron microscopic evidence for the assembly of soluble pentameric extracellular domains of the nicotinic acetylcholine receptor. J Mol Biol 303(2):185-196. doi: 10.1006/jmbi.2000.4137 PMID: 11023785

Related Products: Nicotinic Acetylcholine Receptor alpha 1 (mAb 35) Rat Monoclonal (Cat. #AB-N36)

Expression and channel properties of alpha-bungarotoxin-sensitive acetylcholine receptors on chick ciliary and choroid neurons.

McNerney ME, Pardi D, Pugh PC, Nai Q, Margiotta JF (2000) Expression and channel properties of alpha-bungarotoxin-sensitive acetylcholine receptors on chick ciliary and choroid neurons. J Neurophysiol 84(3):1314-1329. doi: 10.1152/jn.2000.84.3.1314 PMID: 10980005

Related Products: Nicotinic Acetylcholine Receptor alpha 1 (mAb 35) Rat Monoclonal (Cat. #AB-N36)

Early migratory rat neural crest cells express functional gap junctions: Evidence that neural crest cell survival requires gap junction function.

Bannerman P, Nichols W, Puhalla S, Oliver T, Berman M, Pleasure D (2000) Early migratory rat neural crest cells express functional gap junctions: Evidence that neural crest cell survival requires gap junction function. J Neurosci Res 61:605-615. doi: 10.1002/1097-4547(20000915)61:6<605::AID-JNR4>3.0.CO;2-U PMID: 10972957

Summary: Gap junctions are vital for intercellular communication, especially during development. Neural crest cells develop into several types of neural cells, often migrating as a mass of cells to their final destinations. Bannerman et al. use the anti-p75 antibody (Cat. #AB-N01) to confirm the presence of p75 in neural crest cells. The authors examine how crucial survival signals are communicated during migration and demonstrate that interfering with gap junction formation causes death of neural crest cells.

Related Products: NGFr (mu p75) Rabbit Polyclonal (Cat. #AB-N01)

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