General Information of the Ferroptosis Regulator (ID: REG10216)
Regulator Name Metal regulatory transcription factor 1 (MTF1)
Synonyms
MRE-binding transcription factor; Transcription factor MTF-1
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Gene Name MTF1
Gene ID 4520
Regulator Type Protein coding
Uniprot ID Q14872
Sequence
MGEHSPDNNIIYFEAEEDELTPDDKMLRFVDKNGLVPSSSGTVYDRTTVLIEQDPGTLED
EDDDGQCGEHLPFLVGGEEGFHLIDHEAMSQGYVQHIISPDQIHLTINPGSTPMPRNIEG
ATLTLQSECPETKRKEVKRYQCTFEGCPRTYSTAGNLRTHQKTHRGEYTFVCNQEGCGKA
FLTSYSLRIHVRVHTKEKPFECDVQGCEKAFNTLYRLKAHQRLHTGKTFNCESEGCSKYF
TTLSDLRKHIRTHTGEKPFRCDHDGCGKAFAASHHLKTHVRTHTGERPFFCPSNGCEKTF
STQYSLKSHMKGHDNKGHSYNALPQHNGSEDTNHSLCLSDLSLLSTDSELRENSSTTQGQ
DLSTISPAIIFESMFQNSDDTAIQEDPQQTASLTESFNGDAESVSDVPPSTGNSASLSLP
LVLQPGLSEPPQPLLPASAPSAPPPAPSLGPGSQQAAFGNPPALLQPPEVPVPHSTQFAA
NHQEFLPHPQAPQPIVPGLSVVAGASASAAAVASAVAAPAPPQSTTEPLPAMVQTLPLGA
NSVLTNNPTITITPTPNTAILQSSLVMGEQNLQWILNGATSSPQNQEQIQQASKVEKVFF
TTAVPVASSPGSSVQQIGLSVPVIIIKQEEACQCQCACRDSAKERASSRRKGCSSPPPPE
PSPQAPDGPSLQLPAQTFSSAPVPGSSSSTLPSSCEQSRQAETPSDPQTETLSAMDVSEF
LSLQSLDTPSNLIPIEALLQGEEEMGLTSSFSK

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Function
Zinc-dependent transcriptional regulator of cellular adaption to conditions of exposure to heavy metals. Binds to metal responsive elements (MRE) in promoters and activates the transcription of metallothionein genes like metallothionein-2/MT2A. Also regulates the expression of metalloproteases in response to intracellular zinc and functions as a catabolic regulator of cartilages.

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HGNC ID
HGNC:7428
KEGG ID hsa:4520
Full List of the Ferroptosis Target of This Regulator and Corresponding Disease/Drug Response(s)
MTF1 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
Solute carrier family 40 member 1 (SLC40A1) [Suppressor; Marker]
In total 1 item(s) under this target
Experiment 1 Reporting the Ferroptosis Target of This Regulator [1]
Target for Ferroptosis Marker/Suppressor
Responsed Disease Breast cancer ICD-11: 2C60
Pathway Response Fatty acid metabolism hsa01212
Ferroptosis hsa04216
Cell Process Cell ferroptosis
In Vitro Model
MDA-MB-231 cells Breast adenocarcinoma Homo sapiens CVCL_0062
RCC4 cells Clear cell renal cell carcinoma Homo sapiens CVCL_0498
HEK-293T cells Normal Homo sapiens CVCL_0063
HT-1080 cells Fibrosarcoma Homo sapiens CVCL_0317
Response regulation ATM inhibition enhanced the nuclear translocation of metal-regulatory transcription factor 1 (MTF1), responsible for regulating expression of Ferritin/FPN1 and ferroptosis protection in breast adenocarcinoma.
Breast cancer [ICD-11: 2C60]
In total 1 item(s) under this disease
Experiment 1 Reporting the Ferroptosis-centered Disease Response [1]
Target Regulator Metal regulatory transcription factor 1 (MTF1) Protein coding
Pathway Response Fatty acid metabolism hsa01212
Ferroptosis hsa04216
Cell Process Cell ferroptosis
In Vitro Model
MDA-MB-231 cells Breast adenocarcinoma Homo sapiens CVCL_0062
RCC4 cells Clear cell renal cell carcinoma Homo sapiens CVCL_0498
HEK-293T cells Normal Homo sapiens CVCL_0063
HT-1080 cells Fibrosarcoma Homo sapiens CVCL_0317
Response regulation ATM inhibition enhanced the nuclear translocation of metal-regulatory transcription factor 1 (MTF1), responsible for regulating expression of Ferritin/FPN1 and ferroptosis protection in breast adenocarcinoma.
References
Ref 1 Kinome screen of ferroptosis reveals a novel role of ATM in regulating iron metabolism. Cell Death Differ. 2020 Mar;27(3):1008-1022. doi: 10.1038/s41418-019-0393-7. Epub 2019 Jul 18.