Human Leucine Rich Repeat Containing 29 (LRRC29) ELISA Kit

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Description
Human Leucine Rich Repeat Containing 29 (LRRC29) ELISA Kit is an ELISA Kit for the in vitro quantitative measurement of Human LRRC29 concentrations in serum, plasma and other biological fluids.
Documents del producto
Product specifications
Category | ELISA Kits |
Immunogen Target | Leucine Rich Repeat Containing 29 (LRRC29) |
Reactivity | Human |
Detection Method | Colorimetric |
Assay Data | Quantitative |
Assay Type | Sandwich |
Test Range | 0.313 ng/ml - 20 ng/ml |
Sensitivity | < 0.188 ng/ml |
Recommended Dilution | Optimal dilutions/concentrations should be determined by the end user. |
Size 1 | 96 tests |
Form | Lyophilized |
Tested Applications | ELISA |
Sample Type | Serum, plasma and other biological fluids. |
Availability | Shipped within 5-12 working days. The validity for this kit is 6 months. |
Storage | Shipped at 4 °C. Upon receipt, store the kit according to the storage instruction in the kit's manual. |
Dry Ice | No |
UniProt ID | Q8WV35 |
Gene ID | 26231 |
Alias | F-box and leucine rich repeat protein,FBL9,FBXL9,LRRC29 |
Background | Elisa kits for FBXL9P |
Status | RUO |
Note | Validity: The validity for this kit is 6 months. This product is for research use only. The range and sensitivity is subject to change. Please contact us for the latest product information. For accurate results, sample concentrations must be diluted to mid-range of the kit. If you require a specific range, please contact us in advance or write your request in your order comments. Please note that our ELISA and CLIA kits are optimised for detection of native samples, rather than recombinant proteins. We are unable to guarantee detection of recombinant proteins, as they may have different sequences or tertiary structures to the native protein. |
Descripción
FBXL9P is a pseudogene of the F-box and leucine-rich repeat protein family, which typically participates in protein degradation through the ubiquitin-proteasome system. F-box proteins act as substrate recognition components of SCF (Skp1-Cullin-F-box) E3 ubiquitin ligase complexes, tagging proteins for proteasomal degradation to regulate processes like cell cycle progression, signal transduction, and apoptosis. Although FBXL9P lacks protein-coding capacity, pseudogenes like FBXL9P can exert regulatory functions by influencing the expression of their parental genes or interacting with non-coding RNAs to modulate gene transcription and translation. FBXL9P may have roles in fine-tuning protein turnover and maintaining cellular homeostasis through indirect regulatory mechanisms. Dysregulation of pseudogenes, including FBXL9P, is increasingly recognized in cancers and metabolic diseases, where they contribute to altered protein regulation and signaling network disruptions. Further studies are needed to define its specific regulatory roles and impact on cellular processes.
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