Protein detail
SCEL
Sciellin
Entry name SCEL | UniProt ID | EVMP confidence score 0.72 |
Supporting publications (n) 20 | Transmembrane count | Protein classification Plasma proteinsPredicted intracellular proteins |
EVMP confidence score
Annotation confidence score; open for threshold definitions.
Extremely high >= 0.85High >= 0.70Medium >= 0.55Low >= 0.40Basic Information11
Protein Names
Sciellin
Protein Class (2)
Plasma proteinsPredicted intracellular proteins
Protein Function
Predicted intracellular proteins
Ensembl
Entrez Gene Symbol
Gene Synonym (2)
FLJ21667MGC22531
Gene Description
Sciellin
Chromosome
13
Position
77535674-77645263
Supporting publications (n)
20
EVMP confidence score
0.72
Fluorescence & Localization3
Tissue SpecificbrainCell SpecificCytotrophoblasts
Function & Pathway5
Protein Function
Predicted intracellular proteins
Cellular Component (4)
Molecular Function (2)
Biological Process (3)
Mediation Categories
Receptor-signaling mediation
Relations & Evidence10
Ligand-Receptor Signaling (8)
8 records.
| Category | Parent | Database | Transmitter | Receiver | Secreted | Plasma Membrane (Transmembrane) | Plasma Membrane (Peripheral) |
|---|---|---|---|---|---|---|---|
| intracellular | intracellular | ComPPI | No | No | Yes | No | No |
| intracellular | intracellular | GO_Intercell | No | No | Yes | No | No |
| intracellular | intracellular | UniProt_location | No | No | Yes | No | No |
| intracellular | intracellular | OmniPath | No | No | Yes | No | No |
| secreted | secreted | Cellinker | No | No | Yes | No | No |
| secreted | secreted | OmniPath | No | No | Yes | No | No |
| ligand | ligand | Cellinker | Yes | No | Yes | No | No |
| ligand | ligand | OmniPath | Yes | No | Yes | No | No |
Protein Complex Composition (1)
Isolation & Detection Technology (1)
1 record.
| EV Isolation Method | Detection Method | Number of References | References |
|---|---|---|---|
| Differential Ultracentrifugation | Mass spectrometry | 1 | 32002171 |
Sequence, Structure & Domains9
Sequences
Length
688
Mass
77,552
Sequence
MSNVTLRKMSPTGNEMKSTTQGTTRKQQDFHEVNKRRTFLQDNSWIKKRPEEEKDENYGRVVLNRHNSHDALDRKVNERDVPKATISRYSSDDTLDRISDRNDAAKTYKANTLDNQLTNRSMSMFRSLEVTKLQPGGSLNANTSNTIASTSATTPVKKKRQSWFPPPPPGYNASSSTGTRRREPGVHPPIPPKPSSPVSSPNQLRQDNRQIHPPKPGVYTETNRSAERNIRSQDLDNIVKVATSLQRSDKGEELDNLIKMNKSLNRNQGLDSLFRANPKVEEREKRAKSLESLIYMSTRTDKDGKGIQSLGSPIKVNQRTDKNEKGRQNLESVAKVNARMNKTSRRSEDLDNATEVNPKGHENTTGKKDLDGLIKVDPETNKNITRGQSLDNLIKVTPEVKRSNQGSKDLNNFIKVYPGTEKSTEGGQSLDSLIKVTPERNRTNQGNQDLENLIKVIPSANKSSEQGLDEHINVSPKAVKNTDGKQDLDKLIKVNPEIFTNNQRNQDLANLIKVNPAVIRNNQSQDLDNLIKVKPSALRNTNRDQNLENLIEVNSHVSENKNGSSNTGAKQAGPQDTVVYTRTYVENSKSPKDGYQENISGKYIQTVYSTSDRSVIERDMCTYCRKPLGVETKMILDELQICCHSTCFKCEICKQPLENLQAGDSIWIYRQTIHCEPCYSKIMAKWIP
Alternative Products
Event=Alternative splicing; Named isoforms=3; Name=1; IsoId=O95171-1; Sequence=Displayed; Name=2; IsoId=O95171-2; Sequence=VSP_035980; Name=3; IsoId=O95171-3; Sequence=VSP_045288, VSP_045289
Alternative Sequence
160..181; Missing (in isoform 3); 231..251; RSQDLDNIVKVATSLQRSDKG -> S (in isoform 2); 367..386; Missing (in isoform 3)
Domain & Motif Annotations
Compositional Bias
1..25; Polar residues; 140..154; Low complexity; 186..195; Pro residues; 358..373; Basic and acidic residues
Repeat
251..266; 1; 267..286; 2; 287..306; 3; 307..326; 4; 327..346; 5; 347..366; 6; 367..386; 7; 387..406; 8; 407..426; 9; 427..446; 10; 447..465; 11; 466..484; 12; 485..504; 13; 505..523; 14; 524..543; 15; 544..563; 16
Domain (FT)
619..685; LIM zinc-binding
Region
1..29; Disordered; 134..231; Disordered; 251..563; 16 X approximate tandem repeats; 340..373; Disordered
Supporting Publications20
| PMID | Title | Abstract |
|---|---|---|
| 37968711 | Human umbilical cord mesenchymal stem cell-derived exosomes promote microcirculation in aged diabetic mice by TGF-β1 signaling pathway. | The mechanism may be associated with exosomes rich in TGF-β1, which is likely to promote endothelial cell proliferation and improve permeability through binding to the endothelial CD105/TβR-II receptor complex, while promoting angiogenesis and protecting skeletal muscle cells from apoptosis. Therefore, this study verified the changes of CD105 in the exosome group, and it was used as the mechanism study of this study. Western blot analysis showed that the expression of CD105 protein in lower limb muscle tissue of exosome group was significantly increased compared with that of PBS group. Western blot showed positive expression of specific proteins CD9, CD81 and TSG101 on exosomes.2. |
| 37981065 | Extracellular vesicles of iPS cells highly capable of producing HGF and TGF-β1 can attenuate Sjögren's syndrome via innate immunity regulation. | No abstract available |
| 38117249 | The Regulation of Fatty Acid Synthase by Exosomal miR-143-5p and miR-342-5p in Idiopathic Pulmonary Fibrosis. | Furthermore, fibroblast treatment with exosomes obtained from naive patients with IPF increased SMAD3, CTGF, COL3A1, and TGFβ1 expression. However, exosomes isolated from patients with IPF taking nintedanib or pirfenidone increased FASN expression in ATII cells compared with naive patients with IPF. miR-143-5p and miR-342-5p overexpression or ATII cell treatment with IPF-derived exosomes containing these miRNAs lowered FASN and ACSL-4 levels. |
| 38649419 | miR-451a was selectively sorted into exosomes and promoted the progression of esophageal squamous cell carcinoma through CAB39. | Furthermore, miRNA pull-down assays and combined exosomes proteomic data showed that miR-451a interacts with YWHAE. In summary, YWHAE selectively sorted miR-451a into exosomes and it can weaken antitumor immunity promotes tumor progression through CAB39. Over-expression of YWHAE leads to miR-451a accumulation in the exosomes instead of the donor cells. |
| 38664722 | The incorporation of acetylated LAP-TGF-β1 proteins into exosomes promotes TNBC cell dissemination in lung micro-metastasis. | Mechanistically, under the aegis of the acetyltransferase TIP60, a non-canonical KFERQ-like sequence in LAP-TGF-β1 undergoes acetylation at the K304 site, promoting its interaction with HSP90A and subsequent transport into exosomes. This study demonstrates that in lung metastatic sites, LAP-TGF-β1 within exosomes can remarkably reconfigure the pulmonary vascular niche at lower doses, bolstering the extravasation and colonization of TNBC cells in the lungs. |
| 38699039 | Glioma-derived exosome Lncrna Agap2-As1 promotes glioma proliferation and metastasis by mediating Tgf-β1 secretion of myeloid-derived suppressor cells. | No abstract available |
| 38811625 | TGF-β1 induces formation of TSG-6-enriched extracellular vesicles in fibroblasts which can prevent myofibroblast transformation by modulating Erk1/2 phosphorylation. | TGF-β1 treatment elicited a range of responses from the myofibroblasts: (i) they secreted extracellular vesicles (EVs) that were more numerous and differed in size and shape from those secreted by fibroblasts, (ii) these EVs prevented TGF-β1-induced transformation of fibroblasts in a manner that was dependent on vesicle uptake and (iii) they prevented phosphorylation of Erk1/2, a critical component in modulating fibrogenic phenotypic responses, but did not affect TGF-β1-induced Smad-signalling. |
| 38963761 | Lipid-associated macrophages reshape BAT cell identity in obesity. | LAMs participate in this scenario by capturing extracellular vesicles carrying damaged lipids and mitochondria released from metabolically stressed brown adipocytes. |
| 39044233 | Nebulized milk exosomes loaded with siTGF-β1 ameliorate pulmonary fibrosis by inhibiting EMT pathway and enhancing collagen permeability. | Herein, an inhalable system was first developed using milk exosomes (M-Exos) encapsulating siRNA against TGF-β1 (MsiTGF-β1), and their therapeutic potential for bleomycin (BLM)-induced PF was investigated. |
| 39174921 | VEGFA contributes to tumor property of glioblastoma cells by promoting differentiation of myeloid-derived suppressor cells. | VEGFA expression was upregulated in GBM tissues, GBM cells, and exosomes from GBM patients and GBM cells. VEGFA promoted MDSC differentiation and TGF-β1 secretion by MDSCs by being packaged into exosomes. |
Page 2 of 2Previous