GRIK1: Target/Biomarker Introduction, products summarized (antibody/ADC/bispecific/antigen/ORF vector/VLP) and disease/indication/condition/MOA for drug discovery and IVD

It’s the GeneMedi’s summary page for Target/Biomarker Introduction of GRIK1. The page also collects GeneMedi’s different modalities and formats products for GRIK1 in therapeutics/drug discovery and IVD diagnostics, which is including antibody, ADC, bispecific, antigen, ORF vector, VLP, etc. With GeneMedi’s target-insight database-GM ITD database, the GRIK1 target is also connected to human indications/diseases/conditions/MOA.

Target sublocation: Transmembrane Protein.

Glutamate receptors are the predominant excitatory neurotransmitter receptors in the mammalian brain and are activated in a variety of normal neurophysiologic processes. This gene product belongs to the kainate family of glutamate receptors, which are composed of four subunits and function as ligand-activated ion channels. The subunit encoded by this gene is subject to RNA editing (CAG->CGG; Q->R) within the second transmembrane domain, which is thought to alter the properties of ion flow. Alternative splicing, resulting in transcript variants encoding different isoforms, has been noted for this gene. [provided by RefSeq, Jul 2008]

Target ID

GM-T73495

Target Name

GRIK1

Gene ID

2897

Gene Official Name

GRIK1

Gene Alias

EAA3, EEA3, GLR5, GLUR5, GluK1, gluR-5

Protein Sub-location

Transmembrane Protein

Category

Therapeutics Target

Anti-GRIK1/ EAA3/ EEA3 antibody for FACS & in-vivo assay| GMab

Pre-made anti-GRIK1 benchmark inhibitory monoclonal antibody(mab, blocking antibody inhibitor) is expressed by mammalian cell line as a benchmark antibody for cell culture, FACS, ELISA or other affinity binding assay or functional assay development, animal model development, PK/PD model development (Pharmacokinetics & Pharmacodynamic). The anti-GRIK1 mab is expressed and produced by mammalian cell line as a benchmark reference therapeutic antibody for biological drug discovery items including cell culture, assay development, animal model development, PK/PD model development (Pharmacokinetics & Pharmacodynamic) and mechanism of action (MOA) research.


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