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500ug
| 产品编号 | bs-14544P |
| 英文名称 | EIF3I Antibody Blocking Peptide |
| 中文名称 | eIF3β蛋白封闭多肽 |
| 英文别名 | eIF-3-beta; eIF3 beta; eIF3 p36; eIF3-beta; eIF3-p36; eIF3i; EIF3I_HUMAN; EIF3S2; EIF3S2, formerly; Eukaryotic translation initiation factor 3 subunit 2; Eukaryotic translation initiation factor 3 subunit 2 beta; Eukaryotic translation initiation factor 3 subunit I; eukaryotic translation initiation factor 3, subunit 2 (beta, 36kD; eukaryotic translation initiation factor 3, subunit 2 beta, 36kDa; eukaryotic translation initiation factor 3, subunit 2, formerly; eukaryotic translation initiation factor 3, subunit I; Predicted protein of HQ2242; PRO2242; TGF beta receptor interacting protein 1; TGF-beta receptor-interacting protein 1; TGFbeta receptor interacting protein 1; TGFbeta receptor-interacting protein 1; TRIP 1; TRIP-1; TRIP1. |
| 纯化方法 | HPLC |
| 研究领域 | Epigenetics and Nuclear Signaling > DNA / RNA > Translation > Regulation Epigenetics and Nuclear Signaling > RNAi > Eukaryotic Initiation factors (eIF's) |
| 亚细胞定位 | Cytoplasm. |
| 翻译后修饰 | Phosphorylated by TGF-beta type II receptor. |
| 相似性 | Belongs to the eIF-3 subunit I family. Contains 5 WD repeats. |
| 功能 | Component of the eukaryotic translation initiation factor 3 (eIF-3) complex, which is required for several steps in the initiation of protein synthesis. The eIF-3 complex associates with the 40S ribosome and facilitates the recruitment of eIF-1, eIF-1A, eIF-2:GTP:methionyl-tRNAi and eIF-5 to form the 43S preinitiation complex (43S PIC). The eIF-3 complex stimulates mRNA recruitment to the 43S PIC and scanning of the mRNA for AUG recognition. The eIF-3 complex is also required for disassembly and recycling of post-termination ribosomal complexes and subsequently prevents premature joining of the 40S and 60S ribosomal subunits prior to initiation. |
| 保存条件 | Shipped at 4℃. Stored at -20℃ for one year. Avoid repeated freeze/thaw cycles. |
| 注意事项 | This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications. |
| 背景资料 | The initiation of protein synthesis in eukaryotic cells is regulated by interactions between protein initiation factors and RNA molecules. Eukaryotic initiation factors (eIFs) are utilized in a sequence of reactions that lead to 80S ribosomal assembly and, ultimately, translation. The eukaryotic initiation factor-3 (eIF3) scaffolding structure is the largest of the eIF complexes and includes eIF3 alpha, eIF3 beta, eIF3 gamma, eIF3 delta, eIF3 epsilon, eIF3 omega, eIF3 eta, all of which function to control the assembly of the 40S ribosomal subunit. Association of eIF3 proteins with the 40S ribosomal subunit stabilizes eIF2-GTP-Met-tRNAiMet complex association and mRNA binding, and promotes dissociation of 80S ribosomes into 40S and 60S subunits, thereby promoting the assembly of the pre-initiation complex. Overexpression of eIF3 proteins is common in several cancers, suggesting a role for eIF3 proteins in tumorigenesis. |
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文献和实验or from the literature are missing. In this article, processing parameters for DNA, peptide, antibody, and carbohydrate microarrays are outlined. The applicability of the model experiments is demonstrated and described in detail on the example of short oligonucleotides.
Synthesis and Probing of Membrane-bound Peptide Arrays
the stringency of the blocking conditions and make sure that the primary binding partner and detection reagent (e.g., antibody) are of high purity and are used in the highest possible dilution. Stage
Mapping Protein‐Protein Interactions with Phage‐Displayed Combinatorial Peptide Libraries
. Fack, F., Deroo, S., Kreis, S., and Muller, C.P. 2000. Heteroduplex mobility assay (HMA) pre‐screening: An improved strategy for the rapid identification of inserts selected from phage‐displayed peptide
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