STIM1 Antibody - #DF8095
製品: | STIM1 Antibody |
カタログ: | DF8095 |
タンパク質の説明: | Rabbit polyclonal antibody to STIM1 |
アプリケーション: | WB IHC |
反応性: | Human |
予測: | Horse, Dog, Chicken |
分子量: | 77 kDa; 77kD(Calculated). |
ユニプロット: | Q13586 |
RRID: | AB_2841442 |
製品説明
*The optimal dilutions should be determined by the end user.
*Tips:
WB: For western blot detection of denatured protein samples. IHC: For immunohistochemical detection of paraffin sections (IHC-p) or frozen sections (IHC-f) of tissue samples. IF/ICC: For immunofluorescence detection of cell samples. ELISA(peptide): For ELISA detection of antigenic peptide.
引用形式: Affinity Biosciences Cat# DF8095, RRID:AB_2841442.
折りたたみ/展開
D11S4896E; GOK; OTTHUMP00000164512; OTTHUMP00000229140; OTTHUMP00000230742; SIM; STIM 1; STIM1; Stim1 stromal interaction molecule 1; STIM1_HUMAN; STIM1L; Stromal interaction molecule 1;
免疫原
- Q13586 STIM1_HUMAN:
- Protein BLAST With
- NCBI/
- ExPASy/
- Uniprot
MDVCVRLALWLLWGLLLHQGQSLSHSHSEKATGTSSGANSEESTAAEFCRIDKPLCHSEDEKLSFEAVRNIHKLMDDDANGDVDVEESDEFLREDLNYHDPTVKHSTFHGEDKLISVEDLWKAWKSSEVYNWTVDEVVQWLITYVELPQYEETFRKLQLSGHAMPRLAVTNTTMTGTVLKMTDRSHRQKLQLKALDTVLFGPPLLTRHNHLKDFMLVVSIVIGVGGCWFAYIQNRYSKEHMKKMMKDLEGLHRAEQSLHDLQERLHKAQEEHRTVEVEKVHLEKKLRDEINLAKQEAQRLKELREGTENERSRQKYAEEELEQVREALRKAEKELESHSSWYAPEALQKWLQLTHEVEVQYYNIKKQNAEKQLLVAKEGAEKIKKKRNTLFGTFHVAHSSSLDDVDHKILTAKQALSEVTAALRERLHRWQQIEILCGFQIVNNPGIHSLVAALNIDPSWMGSTRPNPAHFIMTDDVDDMDEEIVSPLSMQSPSLQSSVRQRLTEPQHGLGSQRDLTHSDSESSLHMSDRQRVAPKPPQMSRAADEALNAMTSNGSHRLIEGVHPGSLVEKLPDSPALAKKALLALNHGLDKAHSLMELSPSAPPGGSPHLDSSRSHSPSSPDPDTPSPVGDSRALQASRNTRIPHLAGKKAVAEEDNGSIGEETDSSPGRKKFPLKIFKKPLKK
種類予測
Score>80(red) has high confidence and is suggested to be used for WB detection. *The prediction model is mainly based on the alignment of immunogen sequences, the results are for reference only, not as the basis of quality assurance.
High(score>80) Medium(80>score>50) Low(score<50) No confidence
PTMs - Q13586 基板として
Site | PTM Type | Enzyme | Source |
---|---|---|---|
S40 | Phosphorylation | Uniprot | |
C49 | S-Nitrosylation | Uniprot | |
N131 | N-Glycosylation | Uniprot | |
K156 | Ubiquitination | Uniprot | |
N171 | N-Glycosylation | Uniprot | |
Y236 | Phosphorylation | Uniprot | |
K246 | Ubiquitination | Uniprot | |
S257 | Phosphorylation | Uniprot | |
K267 | Ubiquitination | Uniprot | |
K279 | Ubiquitination | Uniprot | |
K285 | Ubiquitination | Uniprot | |
K294 | Ubiquitination | Uniprot | |
K315 | Ubiquitination | Uniprot | |
Y316 | Phosphorylation | Uniprot | |
K333 | Ubiquitination | Uniprot | |
Y361 | Phosphorylation | Uniprot | |
K371 | Ubiquitination | Uniprot | |
T389 | Phosphorylation | Uniprot | |
T393 | Phosphorylation | Uniprot | |
K413 | Ubiquitination | Uniprot | |
T420 | Phosphorylation | Uniprot | |
S486 | Phosphorylation | Uniprot | |
S492 | Phosphorylation | Uniprot | |
S498 | Phosphorylation | Uniprot | |
S512 | Phosphorylation | Uniprot | |
T517 | Phosphorylation | Uniprot | |
S519 | Phosphorylation | Uniprot | |
S521 | Phosphorylation | Uniprot | |
S523 | Phosphorylation | Uniprot | |
S524 | Phosphorylation | Uniprot | |
S528 | Phosphorylation | Uniprot | |
S553 | Phosphorylation | Uniprot | |
S556 | Phosphorylation | Uniprot | |
S567 | Phosphorylation | Uniprot | |
S575 | Phosphorylation | P28482 (MAPK1) , P27361 (MAPK3) | Uniprot |
K581 | Ubiquitination | Uniprot | |
S595 | Phosphorylation | Uniprot | |
S600 | Phosphorylation | Uniprot | |
S602 | Phosphorylation | Uniprot | |
S608 | Phosphorylation | P28482 (MAPK1) , P27361 (MAPK3) | Uniprot |
S616 | Phosphorylation | Uniprot | |
S618 | Phosphorylation | Uniprot | |
S620 | Phosphorylation | Uniprot | |
S621 | Phosphorylation | P27361 (MAPK3) , P28482 (MAPK1) | Uniprot |
T626 | Phosphorylation | Uniprot | |
S628 | Phosphorylation | Uniprot | |
S660 | Phosphorylation | Uniprot | |
T665 | Phosphorylation | Uniprot | |
S667 | Phosphorylation | Uniprot | |
S668 | Phosphorylation | P06493 (CDK1) | Uniprot |
K677 | Ubiquitination | Uniprot | |
K680 | Acetylation | Uniprot | |
K681 | Acetylation | Uniprot |
研究背景
Plays a role in mediating store-operated Ca(2+) entry (SOCE), a Ca(2+) influx following depletion of intracellular Ca(2+) stores. Acts as Ca(2+) sensor in the endoplasmic reticulum via its EF-hand domain. Upon Ca(2+) depletion, translocates from the endoplasmic reticulum to the plasma membrane where it activates the Ca(2+) release-activated Ca(2+) (CRAC) channel subunit ORAI1. Involved in enamel formation. Activated following interaction with STIMATE, leading to promote STIM1 conformational switch.
Glycosylation is required for cell surface expression.
Phosphorylated predominantly on Ser residues.
Cell membrane>Single-pass type I membrane protein. Endoplasmic reticulum membrane>Single-pass type I membrane protein. Cytoplasm>Cytoskeleton. Sarcoplasmic reticulum.
Note: Translocates from the endoplasmic reticulum to the cell membrane in response to a depletion of intracellular calcium and is detected at punctae corresponding to junctions between the endoplasmic reticulum and the cell membrane (PubMed:19249086, PubMed:16005298, PubMed:16208375, PubMed:18854159). Associated with the microtubule network at the growing distal tip of microtubules (PubMed:19632184). Colocalizes with ORAI1 at the cell membrane (PubMed:27185316). Colocalizes preferentially with CASQ1 at endoplasmic reticulum in response to a depletion of intracellular calcium (PubMed:27185316).
Ubiquitously expressed in various human primary cells and tumor cell lines.
Monomer in the presence of Ca(2+); it oligomerizes in absence of Ca(2+). Forms homooligomers and heterooligomers with STIM2. Interacts (via the transmembrane region and the SOAR/CAD domain) with SPPL3; the interaction promotes the binding of STIM1 to ORAI1. Interacts with ORAI1. Interacts with MAPRE1; probably required for targeting to the growing microtubule plus ends. Interacts with CRACR2A/EFCAB4B; the interaction is direct and takes place in absence of Ca(2+). Forms a complex with CRACR2A/EFCAB4B and ORAI1 at low concentration of Ca(2+), the complex dissociates at elevated Ca(2+) concentrations. Interacts with SARAF, promoting a slow inactivation of STIM1-dependent SOCE activity, possibly by facilitating the deoligomerization of STIM1. Interacts with EFHB; the interaction takes place upon Ca(2+)-store depletion and inhibits the association with SARAF. Interacts with ASPH (isoform 8). Interacts with SLC35G1; intracellular Ca(2+)-dependent. May interact with ATP1A1, ATP2A2, ATP2B1, ATP2B4, KPNB1 and XPO1; through SLC35G1. Interacts with TMEM203. Interacts with STIMATE, promoting STIM1 conformational switch. Interacts with TMEM178A (By similarity). Interacts with CASQ1 (via C-terminal end and preferentially with the monomeric form); this interaction increases in response to a depletion of intracellular Ca(2+), decreases both STIM1 aggregation and clustering, interaction of STIM1 with ORAI1 and store-operated Ca(2+) entry (SOCE) activity. Interacts with ADCY8.
The microtubule tip localization signal (MtLS) motif; mediates interaction with MAPRE1 and targeting to the growing microtubule plus ends.
The STIM1 Orai1-activating region/CRAC-activating domain (SOAR/CAD) mediates interaction with ORAI1 to activate the channel.
研究領域
· Environmental Information Processing > Signal transduction > Calcium signaling pathway. (View pathway)
· Organismal Systems > Immune system > Platelet activation. (View pathway)
参考文献
Application: WB Species: Human Sample: HCAECs
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