Gene Information gene info

GENE:LIPT1

GeneInfo:

GeneAttribute GeneDescription
GeneSymbol LIPT1
FullNmae lipoyltransferase 1
LocusType gene with protein product
Status Approved
HGNC_id HGNC:29569
EnsembleID ENSG00000144182
Uniprot Q9Y234

Protein Structure:

Gene Description in Publicaton:

GeneSymbol CellDeathType PMID Description GeneType
LIPT1 cuproptosis 39198615 Here, we identified lipoyltransferase 1 (LIPT1), a key gene related to cuproptosis, was downregulated in bladder cancer (BLCA) and was associated with unfavorable patient prognosis. retulator signature
LIPT1 cuproptosis 36341760 The PCD-related genes contained the key regulatory genes of twelve PCD patterns which is mentioned above. Genes were collected from GSEA gene sets, KEGG, review articles, and manual collation [10]. The ultimate gene list was the concatenation regulatory genes of twelve PCD patterns. regulator signature
LIPT1 cuproptosis 37864891 LIPT1 refers to fatty acid transferase 1, primarily found in mitochondria and involved in protein modification and lipid metabolism. It functions as a modification enzyme for ketoate dehydrogenase, playing a critical role in glycolysis, amino acid metabolism, and the tricarboxylic acid cycle. The expression of this protein is closely associated with copper-induced cell death. Driver
LIPT1 cuproptosis 37864891 The knockout of seven genes, including FDX1 and the six genes encoding the lipoic acid pathway(LIPT1, LIAS, DLD) and lipid acylation protein targets, rescued the cytotoxic effect of these two compounds. Additionally, individual gene knockout studies confirmed that the deletion of FDX1 and LIAS rendered cells resistant to cupric-induced cell death, suggesting that FDX1 and protein lipid acylation are critical regulatory factors in cupric ion carrier-induced cell death. Driver
LIPT1 cuproptosis 37864891 The knockout of seven genes, including FDX1 and the six genes encoding the lipoic acid pathway(LIPT1, LIAS, DLD) and lipid acylation protein targets, rescued the cytotoxic effect of these two compounds. Additionally, individual gene knockout studies confirmed that the deletion of FDX1 and LIAS rendered cells resistant to cupric-induced cell death, suggesting that FDX1 and protein lipid acylation are critical regulatory factors in cupric ion carrier-induced cell death. Driver
LIPT1 cuproptosis 36882769 Knockout of seven of which could lead to the rescue of copper ionophores. These seven genes can be divided into three groups, FDX1, LA pathway-related genes (LIAS and LIPT1) and genes encoding components of pyruvate dehydrogenase complex (PDC) which play a crucial role in mitochondrial respiration (DLAT, DLD, PDHA1 and PDHB), all of which were correlated with LA pathway. regulator
LIPT1 cuproptosis 38168558 Among the CRGs in our study, 7 genes were pro-cuproptosis genes (FDX1, LIPT1, LIAS, DLD, PDHA1, DLAT and PDHB), 3 genes were anti-cuproptosis genes (MTF1, CDKN2A and GLS), and 2 genes were copper transporters (SLC31A1 and ATP7B). driver
LIPT1 cuproptosis 38495196 Cuproptosis-related genes were manually curated, and differentially expressed cuproptosis-related genes (DECuGs) were identified.Then, the 16 DECuGs were obtained by the intersection of the 5018 DEGs and 63 cuproptosis-related genes. 63 cuproptosis-related genes
LIPT1 cuproptosis 37983626 NFE2L2, NLRP3, GLS, LIPT1, and MTF1 were identified as potential cuproptosis predictors, thus shedding new light on ischemic stroke pathogenesis and heterogeneity. predictior
LIPT1 cuproptosis 38348451 Lipid metabolism genes. Changes in lipid metabolism can impact cell survival and may contribute to cell death processes. CRGs in the cuproptosis pathway
LIPT1 cuproptosis 36313717 The details of ninety-six candidate cuproptosis-related genes involved in the copper homeostasis regulatory pathway, copper metabolism diseases, mitochondrial respiratory, and iron-sulfur cluster proteins were exhibited in聽Table S1. Cuproptosis genes related mitochondrial respiration
LIPT1 cuproptosis 36353226 Given that cuproptosis is triggered by lipoylated TCA cycle proteins, the protein lipoylation-related genes (GCSH,聽LIAS,聽LIPT1,聽LIPT2,聽NDUFAB1, and聽NNAT) among the different risk groups were analyzed. driver
LIPT1 cuproptosis 36010978 Derived from the genome-wide CRISPR-Cas9 loss-of-function test reported in previous literature, 347 potential cuproptosis-related genes (FDR < 0.05) were identified, and for a detailed list of genes, see聽Supplementary Table S1. Cuproptosis-related genes
LIPT1 cuproptosis 36341328 In addition, the knockout of nine genes (FDX1, LIAS, LIPT1, DLD, DLAT, PDHA1, PDHB, GCSH, and DBT) conferred resistance to cuproptosis driver
LIPT1 cuproptosis 36118866 LA pathway cuproptosis gene
LIPT1 cuproptosis 36685880 A total of 43 CRGs were manually identified and used to investigate the effects of cuproptosis in HNSC in current study. cuproptosis-related genes
LIPT1 cuproptosis 36568423 Additionally, 41 cuproptosis regulators were obtained from the previous publications. cuproptosis-related genes
LIPT1 cuproptosis 36505872 A total of 44 cuproptosis-related genes were extracted from known literature. cuproptosis-related genes
LIPT1 autosis 38538696 The 18 RCD signatures collected from previous studies. Supplementary Table of Figures.xlsx (https://github.com/zwxiangya/RCDscore) retulator signature

Go Annotation:

GeneSymbol Go id
LIPT1 GO:0005515,GO:0005737,GO:0005739,GO:0005759,GO:0006629,GO:0009249,GO:0016746,GO:0017118,GO:0019752,GO:0036211

KEGG Annotation:

GeneSymbol GeneID Pathway Pathway Name
LIPT1 hsa:51601 path:hsa00785 Lipoic acid metabolism - Homo sapiens (human)
LIPT1 hsa:51601 path:hsa01100 Metabolic pathways - Homo sapiens (human)
LIPT1 hsa:51601 path:hsa01240 Biosynthesis of cofactors - Homo sapiens (human)

Protein-Protein Interaction(String):

Gene-Drug Network:

Signalink 3.0 modificators

Source Target Pmid Interactiontype Methods Database
ETS1 LIPT1 20019798 trascriptional regulation,stimulation chromatin immunoprecipitation assay TFlink

Source Target Pmid Interactiontype Methods Database
SUFU LIPT1 25348397 N/A physical interaction ComPPI
STAT2 LIPT1 25348397 N/A physical interaction ComPPI
TPI1 LIPT1 14525934 16169070 24234451 25348397 physical association two hybrid,two hybrid pooling approach,two hybrid fragment pooling approach,two hybrid ComPPI,HPRD,IntAct
PALS2 LIPT1 25348397 N/A physical interaction ComPPI
UBR1 LIPT1 25348397 N/A physical interaction ComPPI
LIPT1 APP 25348397 N/A physical interaction ComPPI
LIPT1 DBT 25348397 N/A physical interaction ComPPI

Visualization