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Gene Information

Gene symbol: SNX17

Gene name: sorting nexin 17

HGNC ID: 14979

Synonyms: KIAA0064

Related Genes

# Gene Symbol Number of hits
1 SERPINE2 1 hits
2 STAB1 1 hits

Related Sentences

# PMID Sentence
1 20226821 Adaptor protein sorting nexin 17 interacts with the scavenger receptor FEEL-1/stabilin-1 and modulates its expression on the cell surface.
2 20226821 In the current study, we have identified the phox-homology domain containing protein SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
3 20226821 SNX17 directly interacts with FEEL-1/stabilin-1 and regulates its trafficking.
4 20226821 Studies using the cytoplasmic domain of truncated or mutant FEEL-1/stabilin-1 suggest that the NPxF motif of the FEEL-1/stabilin-1 cytoplasmic tail is required for its interaction with SNX17.
5 20226821 By transfecting cells with small interfering RNA targeting SNX17, total cellular FEEL-1/stabilin-1 expression and FEEL-1/stabilin-1-mediated ligand uptake were significantly decreased due to the enhancement of FEEL-1/stabilin-1 protein degradation.
6 20226821 Our results identify SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
7 20226821 Adaptor protein sorting nexin 17 interacts with the scavenger receptor FEEL-1/stabilin-1 and modulates its expression on the cell surface.
8 20226821 In the current study, we have identified the phox-homology domain containing protein SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
9 20226821 SNX17 directly interacts with FEEL-1/stabilin-1 and regulates its trafficking.
10 20226821 Studies using the cytoplasmic domain of truncated or mutant FEEL-1/stabilin-1 suggest that the NPxF motif of the FEEL-1/stabilin-1 cytoplasmic tail is required for its interaction with SNX17.
11 20226821 By transfecting cells with small interfering RNA targeting SNX17, total cellular FEEL-1/stabilin-1 expression and FEEL-1/stabilin-1-mediated ligand uptake were significantly decreased due to the enhancement of FEEL-1/stabilin-1 protein degradation.
12 20226821 Our results identify SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
13 20226821 Adaptor protein sorting nexin 17 interacts with the scavenger receptor FEEL-1/stabilin-1 and modulates its expression on the cell surface.
14 20226821 In the current study, we have identified the phox-homology domain containing protein SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
15 20226821 SNX17 directly interacts with FEEL-1/stabilin-1 and regulates its trafficking.
16 20226821 Studies using the cytoplasmic domain of truncated or mutant FEEL-1/stabilin-1 suggest that the NPxF motif of the FEEL-1/stabilin-1 cytoplasmic tail is required for its interaction with SNX17.
17 20226821 By transfecting cells with small interfering RNA targeting SNX17, total cellular FEEL-1/stabilin-1 expression and FEEL-1/stabilin-1-mediated ligand uptake were significantly decreased due to the enhancement of FEEL-1/stabilin-1 protein degradation.
18 20226821 Our results identify SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
19 20226821 Adaptor protein sorting nexin 17 interacts with the scavenger receptor FEEL-1/stabilin-1 and modulates its expression on the cell surface.
20 20226821 In the current study, we have identified the phox-homology domain containing protein SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
21 20226821 SNX17 directly interacts with FEEL-1/stabilin-1 and regulates its trafficking.
22 20226821 Studies using the cytoplasmic domain of truncated or mutant FEEL-1/stabilin-1 suggest that the NPxF motif of the FEEL-1/stabilin-1 cytoplasmic tail is required for its interaction with SNX17.
23 20226821 By transfecting cells with small interfering RNA targeting SNX17, total cellular FEEL-1/stabilin-1 expression and FEEL-1/stabilin-1-mediated ligand uptake were significantly decreased due to the enhancement of FEEL-1/stabilin-1 protein degradation.
24 20226821 Our results identify SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
25 20226821 Adaptor protein sorting nexin 17 interacts with the scavenger receptor FEEL-1/stabilin-1 and modulates its expression on the cell surface.
26 20226821 In the current study, we have identified the phox-homology domain containing protein SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
27 20226821 SNX17 directly interacts with FEEL-1/stabilin-1 and regulates its trafficking.
28 20226821 Studies using the cytoplasmic domain of truncated or mutant FEEL-1/stabilin-1 suggest that the NPxF motif of the FEEL-1/stabilin-1 cytoplasmic tail is required for its interaction with SNX17.
29 20226821 By transfecting cells with small interfering RNA targeting SNX17, total cellular FEEL-1/stabilin-1 expression and FEEL-1/stabilin-1-mediated ligand uptake were significantly decreased due to the enhancement of FEEL-1/stabilin-1 protein degradation.
30 20226821 Our results identify SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
31 20226821 Adaptor protein sorting nexin 17 interacts with the scavenger receptor FEEL-1/stabilin-1 and modulates its expression on the cell surface.
32 20226821 In the current study, we have identified the phox-homology domain containing protein SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.
33 20226821 SNX17 directly interacts with FEEL-1/stabilin-1 and regulates its trafficking.
34 20226821 Studies using the cytoplasmic domain of truncated or mutant FEEL-1/stabilin-1 suggest that the NPxF motif of the FEEL-1/stabilin-1 cytoplasmic tail is required for its interaction with SNX17.
35 20226821 By transfecting cells with small interfering RNA targeting SNX17, total cellular FEEL-1/stabilin-1 expression and FEEL-1/stabilin-1-mediated ligand uptake were significantly decreased due to the enhancement of FEEL-1/stabilin-1 protein degradation.
36 20226821 Our results identify SNX17 as a novel interaction partner of FEEL-1/stabilin-1 in endothelial cells.