General Information of the Ferroptosis Regulator (ID: REG10416)
Regulator Name Frizzled-3 (FZD3)
Gene Name FZD3
Gene ID 7976
Regulator Type Protein coding
Uniprot ID Q9NPG1
Sequence
MAMTWIVFSLWPLTVFMGHIGGHSLFSCEPITLRMCQDLPYNTTFMPNLLNHYDQQTAAL
AMEPFHPMVNLDCSRDFRPFLCALYAPICMEYGRVTLPCRRLCQRAYSECSKLMEMFGVP
WPEDMECSRFPDCDEPYPRLVDLNLAGEPTEGAPVAVQRDYGFWCPRELKIDPDLGYSFL
HVRDCSPPCPNMYFRREELSFARYFIGLISIICLSATLFTFLTFLIDVTRFRYPERPIIF
YAVCYMMVSLIFFIGFLLEDRVACNASIPAQYKASTVTQGSHNKACTMLFMILYFFTMAG
SVWWVILTITWFLAAVPKWGSEAIEKKALLFHASAWGIPGTLTIILLAMNKIEGDNISGV
CFVGLYDVDALRYFVLAPLCLYVVVGVSLLLAGIISLNRVRIEIPLEKENQDKLVKFMIR
IGVFSILYLVPLLVVIGCYFYEQAYRGIWETTWIQERCREYHIPCPYQVTQMSRPDLILF
LMKYLMALIVGIPSVFWVGSKKTCFEWASFFHGRRKKEIVNESRQVLQEPDFAQSLLRDP
NTPIIRKSRGTSTQGTSTHASSTQLAMVDDQRSKAGSIHSKVSSYHGSLHRSRDGRYTPC
SYRGMEERLPHGSMSRLTDHSRHSSSHRLNEQSRHSSIRDLSNNPMTHITHGTSMNRVIE
EDGTSA

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Family G-protein coupled receptor Fz/Smo family
Function
Receptor for Wnt proteins. Most of frizzled receptors are coupled to the beta-catenin canonical signaling pathway, which leads to the activation of disheveled proteins, inhibition of GSK-3 kinase, nuclear accumulation of beta-catenin and activation of Wnt target genes. A second signaling pathway involving PKC and calcium fluxes has been seen for some family members, but it is not yet clear if it represents a distinct pathway or if it can be integrated in the canonical pathway, as PKC seems to be required for Wnt-mediated inactivation of GSK-3 kinase. Both pathways seem to involve interactions with G-proteins. Activation by Wnt5A stimulates PKC activity via a G-protein-dependent mechanism. Involved in transduction and intercellular transmission of polarity information during tissue morphogenesis and/or in differentiated tissues. Plays a role in controlling early axon growth and guidance processes necessary for the formation of a subset of central and peripheral major fiber tracts. Required for the development of major fiber tracts in the central nervous system, including: the anterior commissure, the corpus callosum, the thalamocortical, corticothalamic and nigrostriatal tracts, the corticospinal tract, the fasciculus retroflexus, the mammillothalamic tract, the medial lemniscus, and ascending fiber tracts from the spinal cord to the brain. In the peripheral nervous system, controls axon growth in distinct populations of cranial and spinal motor neurons, including the facial branchimotor nerve, the hypoglossal nerve, the phrenic nerve, and motor nerves innervating dorsal limbs. Involved in the migration of cranial neural crest cells. May also be implicated in the transmission of sensory information from the trunk and limbs to the brain. Controls commissural sensory axons guidance after midline crossing along the anterior-posterior axis in the developing spinal cord in a Wnt-dependent signaling pathway. Together with FZD6, is involved in the neural tube closure and plays a role in the regulation of the establishment of planar cell polarity (PCP), particularly in the orientation of asymmetric bundles of stereocilia on the apical faces of a subset of auditory and vestibular sensory cells located in the inner ear. Promotes neurogenesis by maintaining sympathetic neuroblasts within the cell cycle in a beta- catenin-dependent manner (By similarity).

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HGNC ID
HGNC:4041
KEGG ID hsa:7976
Full List of the Ferroptosis Target of This Regulator and Corresponding Disease/Drug Response(s)
FZD3 can regulate the following target(s), and cause disease/drug response(s). You can browse detail information of target(s) or disease/drug response(s).
Browse Target
Browse Disease
Phospholipid hydroperoxide glutathione peroxidase (GPX4) [Suppressor]
In total 1 item(s) under this target
Experiment 1 Reporting the Ferroptosis Target of This Regulator [1]
Target for Ferroptosis Suppressor
Responsed Disease Oesophageal cancer ICD-11: 2B70
Pathway Response Wnt signaling pathway hsa04310
Fatty acid metabolism hsa01212
Cell Process Cell ferroptosis
Cell proliferation
Cell invasion
In Vitro Model
EC9706 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_E307
KYSE-70 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_1356
hEECs (Human esophageal epithelial cells)
In Vivo Model
BALB/c nude male mice of 4 weeks old were purchased from the Model Animal Research Center of Nanjing University (Nanjing, China). After one week of adaptive feeding, EC9706 cells (3 x 106) stably expressing sh-NC and sh-circPVT1, sh-NC + 5-FU and sh-circPVT1 + 5-FU were subcutaneously were injected into the right flank of the nude mice in a serum-free DMEM medium.

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Response regulation CircPVT1 regulated the chemosensitivity of esophageal squamous cell carcinoma cells through ROS and Wnt/-catenin pathwaysviamiR-30a-5p/FZD3. Knockdown of circPVT1 promoted chemosensitivity in ESCC by increasing ferroptosis via downregulating GPX4 and SLC7A11.
Cystine/glutamate transporter (SLC7A11) [Driver; Suppressor]
In total 1 item(s) under this target
Experiment 1 Reporting the Ferroptosis Target of This Regulator [1]
Target for Ferroptosis Suppressor
Responsed Disease Oesophageal cancer ICD-11: 2B70
Pathway Response Wnt signaling pathway hsa04310
Fatty acid metabolism hsa01212
Cell Process Cell ferroptosis
Cell proliferation
Cell invasion
In Vitro Model
EC9706 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_E307
KYSE-70 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_1356
hEECs (Human esophageal epithelial cells)
In Vivo Model
BALB/c nude male mice of 4 weeks old were purchased from the Model Animal Research Center of Nanjing University (Nanjing, China). After one week of adaptive feeding, EC9706 cells (3 x 106) stably expressing sh-NC and sh-circPVT1, sh-NC + 5-FU and sh-circPVT1 + 5-FU were subcutaneously were injected into the right flank of the nude mice in a serum-free DMEM medium.

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Response regulation CircPVT1 regulated the chemosensitivity of esophageal squamous cell carcinoma cells through ROS and Wnt/-catenin pathwaysviamiR-30a-5p/FZD3. Knockdown of circPVT1 promoted chemosensitivity in ESCC by increasing ferroptosis via downregulating GPX4 and SLC7A11.
Oesophageal cancer [ICD-11: 2B70]
In total 2 item(s) under this disease
Experiment 1 Reporting the Ferroptosis-centered Disease Response [1]
Target Regulator Frizzled-3 (FZD3) Protein coding
Pathway Response Wnt signaling pathway hsa04310
Fatty acid metabolism hsa01212
Cell Process Cell ferroptosis
Cell proliferation
Cell invasion
In Vitro Model
EC9706 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_E307
KYSE-70 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_1356
hEECs (Human esophageal epithelial cells)
In Vivo Model
BALB/c nude male mice of 4 weeks old were purchased from the Model Animal Research Center of Nanjing University (Nanjing, China). After one week of adaptive feeding, EC9706 cells (3 x 106) stably expressing sh-NC and sh-circPVT1, sh-NC + 5-FU and sh-circPVT1 + 5-FU were subcutaneously were injected into the right flank of the nude mice in a serum-free DMEM medium.

    Click to Show/Hide
Response regulation CircPVT1 regulated the chemosensitivity of esophageal squamous cell carcinoma cells through ROS and Wnt/-catenin pathwaysviamiR-30a-5p/FZD3. Knockdown of circPVT1 promoted chemosensitivity in ESCC by increasing ferroptosis via downregulating GPX4 and SLC7A11.
Experiment 2 Reporting the Ferroptosis-centered Disease Response [1]
Target Regulator Frizzled-3 (FZD3) Protein coding
Pathway Response Wnt signaling pathway hsa04310
Fatty acid metabolism hsa01212
Cell Process Cell ferroptosis
Cell proliferation
Cell invasion
In Vitro Model
EC9706 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_E307
KYSE-70 cells Esophageal squamous cell carcinoma Homo sapiens CVCL_1356
hEECs (Human esophageal epithelial cells)
In Vivo Model
BALB/c nude male mice of 4 weeks old were purchased from the Model Animal Research Center of Nanjing University (Nanjing, China). After one week of adaptive feeding, EC9706 cells (3 x 106) stably expressing sh-NC and sh-circPVT1, sh-NC + 5-FU and sh-circPVT1 + 5-FU were subcutaneously were injected into the right flank of the nude mice in a serum-free DMEM medium.

    Click to Show/Hide
Response regulation CircPVT1 regulated the chemosensitivity of esophageal squamous cell carcinoma cells through ROS and Wnt/-catenin pathwaysviamiR-30a-5p/FZD3. Knockdown of circPVT1 promoted chemosensitivity in ESCC by increasing ferroptosis via downregulating GPX4 and SLC7A11.
References
Ref 1 Circular RNA CircPVT1 Inhibits 5-Fluorouracil Chemosensitivity by Regulating Ferroptosis Through MiR-30a-5p/FZD3 Axis in Esophageal Cancer Cells. Front Oncol. 2021 Dec 13;11:780938. doi: 10.3389/fonc.2021.780938. eCollection 2021.