Recombinant Human RAB3IL1 protein is a Human Full Length protein, in the 1 to 382 aa range, expressed in Escherichia coli, with >90% purity and suitable for SDS-PAGE, MS.
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Application SDS-PAGE | Reactivity Reacts | Dilution info - | Notes - |
Application MS | Reactivity Reacts | Dilution info - | Notes - |
Guanine nucleotide exchange factor (GEF) which may activate RAB3A, a GTPase that regulates synaptic vesicle exocytosis. Promotes the exchange of GDP to GTP, converting inactive GDP-bound Rab proteins into their active GTP-bound form. May also activate RAB8A and RAB8B.
Guanine nucleotide exchange factor for Rab-3A, Rab-3A-interacting-like protein 1, Rabin3-like 1, Rab3A-interacting-like protein 1, RAB3IL1
Recombinant Human RAB3IL1 protein is a Human Full Length protein, in the 1 to 382 aa range, expressed in Escherichia coli, with >90% purity and suitable for SDS-PAGE, MS.
pH: 7.4
Constituents: 50% Glycerol (glycerin, glycerine), 50% PBS
ab187619 was purified using conventional chromatography techniques.
Guanine nucleotide exchange factor (GEF) which may activate RAB3A, a GTPase that regulates synaptic vesicle exocytosis. Promotes the exchange of GDP to GTP, converting inactive GDP-bound Rab proteins into their active GTP-bound form. May also activate RAB8A and RAB8B.
Belongs to the SEC2 family.
RAB3IL1 also known as RAB3A Interacting Protein Like 1 or GRAB functions mechanically as a guanine nucleotide exchange factor (GEF) that activates Rab proteins. It has a molecular weight of approximately 49 kDa. RAB3IL1 is expressed in various tissues including the brain kidney and the pancreas. It consists of domains that mediate interactions with other proteins facilitating its role in vesicle trafficking associated with exocytosis.
RAB3IL1 participates in the regulation of intracellular vesicle transport and secretion processes. It interacts with Rab3 proteins impacting synaptic vesicle cycle and neurotransmitter release. Although not forming a stable complex it temporarily associates with its target Rab proteins during activation. The protein influences cellular secretion linking vesicle transport to signal transduction pathways critical for cellular communication.
Vesicle-mediated trafficking and synaptic vesicle cycle are important to understanding RAB3IL1's role. It operates within pathways that regulate neurotransmitter release connecting with proteins like synaptotagmin I and UNC-18. These interactions enable accurate timing and regulation of vesicular transport and fusion highlighting RAB3IL1’s importance in neuronal communication.
RAB3IL1 has associations with neurological conditions and metabolic syndromes. It's linked to synaptic dysfunctions contributing to neurodegenerative disorders such as Alzheimer's disease. Furthermore its role in insulin secretion connects it to diabetes-related studies where it may interact with proteins like insulin receptor substrates influencing glucose homeostasis. These associations suggest that alterations in RAB3IL1 activity could impact the pathophysiology of these conditions.
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15% SDS-PAGE analysis of ab187619 (3 μg).
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