产品: | MLN51/CASC3 抗体 |
货号: | DF12660 |
描述: | Rabbit polyclonal antibody to MLN51/CASC3 |
应用: | WB |
反应: | Human, Mouse, Rat |
预测: | Pig, Bovine, Horse, Sheep, Rabbit, Dog, Chicken |
分子量: | 120 kDa; 76kD(Calculated). |
蛋白号: | O15234 |
RRID: | AB_2845622 |
产品描述
*The optimal dilutions should be determined by the end user.
*Tips:
WB: 适用于变性蛋白样本的免疫印迹检测. IHC: 适用于组织样本的石蜡(IHC-p)或冰冻(IHC-f)切片样本的免疫组化/荧光检测. IF/ICC: 适用于细胞样本的荧光检测. ELISA(peptide): 适用于抗原肽的ELISA检测.
引用格式: Affinity Biosciences Cat# DF12660, RRID:AB_2845622.
展开/折叠
Barentsz; Barentsz protein; Btz; Cancer susceptibility candidate 3; Cancer susceptibility candidate gene 3 protein; CASC3; CASC3_HUMAN; Metastatic lymph node 51; Metastatic lymph node gene 51 protein; Metastatic lymph node protein 51; MLN 51; MLN 51 protein; MLN51; Protein barentsz; Protein CASC3; Protein MLN 51;
抗原和靶标
Widely expressed. Overexpressed in breast cancers and metastasis, as well as in gastric cancers.
- O15234 CASC3_HUMAN:
- Protein BLAST With
- NCBI/
- ExPASy/
- Uniprot
MADRRRQRASQDTEDEESGASGSDSGGSPLRGGGSCSGSAGGGGSGSLPSQRGGRTGALHLRRVESGGAKSAEESECESEDGIEGDAVLSDYESAEDSEGEEGEYSEEENSKVELKSEANDAVNSSTKEEKGEEKPDTKSTVTGERQSGDGQESTEPVENKVGKKGPKHLDDDEDRKNPAYIPRKGLFFEHDLRGQTQEEEVRPKGRQRKLWKDEGRWEHDKFREDEQAPKSRQELIALYGYDIRSAHNPDDIKPRRIRKPRYGSPPQRDPNWNGERLNKSHRHQGLGGTLPPRTFINRNAAGTGRMSAPRNYSRSGGFKEGRAGFRPVEAGGQHGGRSGETVKHEISYRSRRLEQTSVRDPSPEADAPVLGSPEKEEAASEPPAAAPDAAPPPPDRPIEKKSYSRARRTRTKVGDAVKLAEEVPPPPEGLIPAPPVPETTPTPPTKTGTWEAPVDSSTSGLEQDVAQLNIAEQNWSPGQPSFLQPRELRGMPNHIHMGAGPPPQFNRMEEMGVQGGRAKRYSSQRQRPVPEPPAPPVHISIMEGHYYDPLQFQGPIYTHGDSPAPLPPQGMLVQPGMNLPHPGLHPHQTPAPLPNPGLYPPPVSMSPGQPPPQQLLAPTYFSAPGVMNFGNPSYPYAPGALPPPPPPHLYPNTQAPSQVYGGVTYYNPAQQQVQPKPSPPRRTPQPVTIKPPPPEVVSRGSS
种属预测
score>80的预测可信度较高,可尝试用于WB检测。*预测模型主要基于免疫原序列比对,结果仅作参考,不作为质保凭据。
High(score>80) Medium(80>score>50) Low(score<50) No confidence
翻译修饰 - O15234 作为底物
Site | PTM Type | Enzyme | Source |
---|---|---|---|
S28 | Phosphorylation | Uniprot | |
S35 | Phosphorylation | Uniprot | |
S37 | Phosphorylation | Uniprot | |
S39 | Phosphorylation | Uniprot | |
S45 | Phosphorylation | Uniprot | |
S47 | Phosphorylation | Uniprot | |
R52 | Methylation | Uniprot | |
R55 | Methylation | Uniprot | |
S66 | Phosphorylation | Uniprot | |
S117 | Phosphorylation | Uniprot | |
S125 | Phosphorylation | Uniprot | |
K128 | Ubiquitination | Uniprot | |
K139 | Ubiquitination | Uniprot | |
T141 | Phosphorylation | Uniprot | |
T143 | Phosphorylation | Uniprot | |
S148 | Phosphorylation | Uniprot | |
S154 | Phosphorylation | Uniprot | |
T155 | Phosphorylation | Uniprot | |
K161 | Ubiquitination | Uniprot | |
K164 | Ubiquitination | Uniprot | |
K168 | Ubiquitination | Uniprot | |
K177 | Ubiquitination | Uniprot | |
Y181 | Phosphorylation | Uniprot | |
K185 | Ubiquitination | Uniprot | |
R194 | Methylation | Uniprot | |
T197 | Phosphorylation | Uniprot | |
K205 | Ubiquitination | Uniprot | |
K213 | Ubiquitination | Uniprot | |
Y240 | Phosphorylation | Uniprot | |
K254 | Ubiquitination | Uniprot | |
Y263 | Phosphorylation | Uniprot | |
S265 | Phosphorylation | Uniprot | |
T304 | Phosphorylation | Uniprot | |
R306 | Methylation | Uniprot | |
S308 | Phosphorylation | Uniprot | |
R323 | Methylation | Uniprot | |
K344 | Ubiquitination | Uniprot | |
S348 | Phosphorylation | Uniprot | |
Y349 | Phosphorylation | Uniprot | |
T357 | Phosphorylation | Uniprot | |
S358 | Phosphorylation | Uniprot | |
S363 | Phosphorylation | Uniprot | |
S373 | Phosphorylation | Uniprot | |
S381 | Phosphorylation | Uniprot | |
T441 | Phosphorylation | Uniprot | |
T443 | Phosphorylation | Uniprot | |
S477 | Phosphorylation | Uniprot | |
R490 | Methylation | Uniprot | |
R518 | Methylation | Uniprot | |
T684 | Phosphorylation | Uniprot | |
S699 | Phosphorylation | Uniprot |
研究背景
Required for pre-mRNA splicing as component of the spliceosome. Core component of the splicing-dependent multiprotein exon junction complex (EJC) deposited at splice junctions on mRNAs. The EJC is a dynamic structure consisting of core proteins and several peripheral nuclear and cytoplasmic associated factors that join the complex only transiently either during EJC assembly or during subsequent mRNA metabolism. The EJC marks the position of the exon-exon junction in the mature mRNA for the gene expression machinery and the core components remain bound to spliced mRNAs throughout all stages of mRNA metabolism thereby influencing downstream processes including nuclear mRNA export, subcellular mRNA localization, translation efficiency and nonsense-mediated mRNA decay (NMD). Stimulates the ATPase and RNA-helicase activities of EIF4A3. Plays a role in the stress response by participating in cytoplasmic stress granules assembly and by favoring cell recovery following stress. Component of the dendritic ribonucleoprotein particles (RNPs) in hippocampal neurons. May play a role in mRNA transport. Binds spliced mRNA in sequence-independent manner, 20-24 nucleotides upstream of mRNA exon-exon junctions. Binds poly(G) and poly(U) RNA homopolymer.
ADP-ribosylated by tankyrase TNKS and TNKS2. Poly-ADP-ribosylated protein is recognized by RNF146, followed by ubiquitination.
Ubiquitinated by RNF146 when poly-ADP-ribosylated, leading to its degradation.
Cytoplasm. Cytoplasm>Perinuclear region. Nucleus. Nucleus speckle. Cytoplasm>Stress granule. Cytoplasm>Cytoplasmic ribonucleoprotein granule. Cell projection>Dendrite.
Note: Shuttles between the nucleus and the cytoplasm in a XPO1/CRM1-dependent manner. Transported to the cytoplasm as part of the exon junction complex (EJC) bound to mRNA (PubMed:15166247). In nuclear speckles, colocalizes with MAGOH. Under stress conditions, colocalizes with FMR1 and TIA1, but not MAGOH and RBM8A EJC core factors, in cytoplasmic stress granules (PubMed:17652158). In the dendrites of hippocampal neurons, localizes to dendritic ribonucleoprotein granules (By similarity).
Widely expressed. Overexpressed in breast cancers and metastasis, as well as in gastric cancers.
Identified in the spliceosome C complex. Component of the mRNA splicing-dependent exon junction complex (EJC), which contains at least CASC3, EIF4A3, MAGOH, NXF1 and RBM8A/Y14. Identified in a complex composed of the EJC core, UPF3B and UPF2. The EJC core can also interact with UPF3A (in vitro). Forms homooligomers (By similarity). Interacts with STAU in an RNA-dependent manner (By similarity).
The coiled coil domain may be involved in oligomerization.
Belongs to the CASC3 family.
研究领域
· Genetic Information Processing > Translation > RNA transport.
· Genetic Information Processing > Translation > mRNA surveillance pathway.
限制条款
产品的规格、报价、验证数据请以官网为准,官网链接:www.affbiotech.com | www.affbiotech.cn(简体中文)| www.affbiotech.jp(日本語)产品的数据信息为Affinity所有,未经授权不得收集Affinity官网数据或资料用于商业用途,对抄袭产品数据的行为我们将保留诉诸法律的权利。
产品相关数据会因产品批次、产品检测情况随时调整,如您已订购该产品,请以订购时随货说明书为准,否则请以官网内容为准,官网内容有改动时恕不另行通知。
Affinity保证所销售产品均经过严格质量检测。如您购买的商品在规定时间内出现问题需要售后时,请您在Affinity官方渠道提交售后申请。产品仅供科学研究使用。不用于诊断和治疗。
产品未经授权不得转售。
Affinity Biosciences将不会对在使用我们的产品时可能发生的专利侵权或其他侵权行为负责。Affinity Biosciences, Affinity Biosciences标志和所有其他商标所有权归Affinity Biosciences LTD.