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Anti-Human UFL1 Polyclonal Antibody (HF662014)

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概述
货号HF662014
品牌abinScience
种属反应性Human
应用ELISA, IHC, WB
宿主Rabbit
克隆类型Polyclonal
同种型IgG
免疫原E. coli - derived recombinant Human UFL1 (Gly276-Lys417).
靶标Multiple alpha-helix protein located at ER, KIAA0776, Regulator of C53/LZAP and DDRGK1, Novel LZAP-binding protein, E3 UFM1-protein ligase 1, NLBP, RCAD, MAXER, E3 UFM1-protein transferase 1, UFL1
纯化方式Purified by antigen affinity column.
Accession号O94874
状态Liquid
保存溶液 0.01M PBS, pH 7.4, 50% Glycerol, 0.05% Proclin 300.

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

产品使用信息
应用方法 稀释比例
ELISA 1:5000-1:20000
IHC 1:50-1:500
WB 1:500-1:2000
稳定性和存储Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt.
背景

E3 UFM1-protein ligase 1 (UFL1) is a ~89 kDa protein. E3 protein ligase that mediates ufmylation, the covalent attachment of the ubiquitin-like modifier UFM1 to lysine residues on target proteins, and which plays a key role in various processes, such as ribosome recycling, response to DNA damage, interferon response or reticulophagy (also called ER-phagy). Catalyzes ufmylation of many protein, such as CD274/PD-L1, CDK5RAP3, CYB5R3, DDRGK1, EIF6, histone H4, MRE11, P4HB, PDCD1/PD-1, TRIP4, RPN1, RPS20/uS10, RPL10/uL16, RPL26/uL24, SYVN1/HRD1 and TP53/p53. As part of the UREL complex, plays a key role in ribosome recycling by catalyzing mono-ufmylation of RPL26/uL24 subunit of the 60S ribosome. Ufmylation of RPL26/uL24 occurs on free 60S ribosomes following ribosome dissociation: it weakens the junction between post-termination 60S subunits and SEC61 translocons, promoting release and recycling of the large ribosomal subunit from the endoplasmic reticulum membrane. Ufmylation of RPL26/uL24 and subsequent 60S ribosome recycling either take place after normal termination of translation or after ribosome stalling during cotranslational translocation at the endoplasmic reticulum.

1. Tatsumi, K. et al. (2010) The Journal of biological chemistry 285, 5417-27. PMID: 20018847
2. Kwon, J. et al. (2010) The Journal of biological chemistry 285, 12232-40. PMID: 20164180
3. Wu, J. et al. (2010) The Journal of biological chemistry 285, 15126-15136. PMID: 20228063
4. Yoo, HM. et al. (2014) Molecular cell 56, 261-274. PMID: 25219498
5. DeJesus, R. et al. (2016) eLife 5. PMID: 27351204
6. Walczak, CP. et al. (2019) Proceedings of the National Academy of Sciences of the United States of America 116, 1299-1308. PMID: 30626644
7. Wang, Z. et al. (2019) Nucleic acids research 47, 4124-4135. PMID: 30783677
8. Liang, JR. et al. (2020) Cell 180, 1160-1177.e20. PMID: 32160526
9. Liu, J. et al. (2020) Nature cell biology 22, 1056-1063. PMID: 32807901
10. Snider, DL. et al. (2022) Proceedings of the National Academy of Sciences of the United States of America 119, e2119531119. PMID: 35394863
NoteFor research use only.
图片
参考文献
公式
质量 (g) = 浓度 (mol/L) × 体积 (L) × 分子量 (g/mol)
填写 质量、浓度、体积中的任意 2 项 + 分子量,自动计算未知值。
质量
=
浓度
×
体积
分子量 *
g/mol
公式
C₁ × V₁ = C₂ × V₂
填写 4 项中的任意 3 项,自动计算未知值。
母液
C₁ (起始浓度)
×
V₁ (起始体积)
=
工作液
C₂ (终浓度)
×
V₂ (终体积)

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