IL-1 RAPL1/IL-1 R8 Antibody (1C10) Summary
| Immunogen |
IL1RAPL1 (NP_055086, 151 a.a. ~ 251 a.a) partial recombinant protein with GST tag.FEKAELSKSKEISCRDIEDFLLPTREPEILWYKECRTKTWRPSIVFKRDTLLIREVREDDIGNYTCELKYGGFVVRRTTELTVTAPLTDKPPKLLYPMES
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| Specificity |
IL1RAPL1 (1C10)
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| Isotype |
IgG2a Kappa
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| Clonality |
Monoclonal
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| Host |
Mouse
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| Gene |
IL1RAPL1
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| Purity |
IgG purified
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Applications/Dilutions
| Dilutions |
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| Application Notes |
Antibody reactive against recombinant protein with GST tag on ELISA and Western Blot. GST tag alone is used as a negative control.
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| Publications |
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Reactivity Notes
Human. Other species not tested.
Packaging, Storage & Formulations
| Storage |
Aliquot and store at -20C or -80C. Avoid freeze-thaw cycles.
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| Buffer |
PBS (pH 7.4)
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| Preservative |
No Preservative
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| Purity |
IgG purified
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Notes
This product is produced by and distributed for Abnova, a company based in Taiwan.
Alternate Names for IL-1 RAPL1/IL-1 R8 Antibody (1C10)
- IL-1 R8
- IL-1 RAPL1
- IL1R8IL1RAPL
- IL1RAPL1
- IL-1RAPL1
- IL-1-RAPL-1
- IL-1RAPL-1
- IL1RAPL-1
- interleukin 1 receptor accessory protein-like 1
- interleukin 1 receptor-8
- interleukin-1 receptor accessory protein-like 1
- mental retardation, X-linked 10
- MRX10
- MRX21
- MRX34
- oligophrenin-4
- OPHN4mental retardation, X-linked 21
- Three immunoglobulin domain-containing IL-1 receptor-related 2
- TIGIRR-2
- TIGIRR-2mental retardation, X-linked 34
- X-linked interleukin-1 receptor accessory protein-like 1
Background
The protein encoded by this gene is a member of the interleukin 1 receptor family and is similar to the interleukin 1 accessory proteins. It is most closely related to interleukin 1 receptor accessory protein-like 2 (IL1RAPL2). This gene and IL1RAPL2 are located at a region on chromosome X that is associated with X-linked non-syndromic mental retardation. Deletions and mutations in this gene were found in patients with mental retardation. This gene is expressed at a high level in post-natal brain structures involved in the hippocampal memory system, which suggests a specialized role in the physiological processes underlying memory and learning abilities.