Tag Content
SG ID
SG00009369 
UniProt Accession
Theoretical PI
8.97  
Molecular Weight
58720 Da  
Genbank Nucleotide ID
Genbank Protein ID
Gene Name
Cyp4a14 
Gene Synonyms/Alias
 
Protein Name
Cytochrome P450 4A14 
Protein Synonyms/Alias
CYPIVA14; Cytochrome P450-LA-omega 3; Lauric acid omega-hydroxylase 3;EC=1.14.15.3Flags: Precursor 
Organism
Mus musculus (Mouse) 
NCBI Taxonomy ID
10090 
Chromosome Location
chr:4;115158805-115168747;-1
View in Ensembl genome browser  
Function in Stage
Uncertain 
Function in Cell Type
Uncertain 
Probability (GAS) of Function in Spermatogenesis
0.181049401 
The probability was calculated by GAS algorithm, ranging from 0 to 1. The closer it is to 1, the more possibly it functions in spermatogenesis.
Description
Temporarily unavailable 
Abstract of related literatures
1. Genomic clones for Cyp4a12 and a novel member of the murine Cyp4a gene family were isolated. The novel gene, designated Cyp4a14, has a GC rich sequence immediately 5' of the transcription start site, and is similar to the rat CYP4A2 and CYP4A3 genes. The Cyp4a14 gene spans approximately 13 kb, and contains 12 exons; sequence similarity to the rat CYP4A2 gene sequence falls off 300 bp upstream from the start site. In view of the known sex-specific expression of the rat CYP4A2 gene, the expression and inducibility of Cyp4a14 was examined. The gene was highly inducible in the liver when mice were treated with the peroxisome proliferator, methylclofenapate; induction levels were low in control animals and no sex differences in expression were observed. By contrast, the Cyp4a12 RNA was highly expressed in liver and kidney of control male mice but was expressed at very low levels in liver and kidney of female mice. Testosterone treatment increased the level of this RNA in female liver slightly, and to a greater extent in the kidney of female mice. In agreement with studies on the cognate RNA, expression of Cyp4a12 protein was male-specific in the liver of control mice and extremely high inducibility of Cyp4a10 protein, with no sex differences, was also demonstrated. In view of the overlapping patterns of inducibility of the three Cyp4a genes, we investigated whether the three genes were co-localized in the genome. Two overlapping yeast artificial chromosome (YAC) clones were isolated, and the three Cyp4a genes were shown to be present on a single YAC of 220 kb. The Cyp4a genes are adjacent to the Cyp4b1 gene, with Cyp4a12 most distant from Cyp4b1. The clustering of these two gene subfamilies in the mouse was replicated in the human, where the CYPA411 and CYP4B1 genes were present in a single YAC clone of 440 kb. However, the human CYP4F2 gene was mapped to chromosome 19. Phylogenetic analysis of the CYP4 gene families demonstrated that CYP4A and CYP4B are more closely related than CYP4F. PMID: [9271096] 

2. This study describes comprehensive polling of transcription start and termination sites and analysis of previously unidentified full-length complementary DNAs derived from the mouse genome. We identify the 5' and 3' boundaries of 181,047 transcripts with extensive variation in transcripts arising from alternative promoter usage, splicing, and polyadenylation. There are 16,247 new mouse protein-coding transcripts, including 5154 encoding previously unidentified proteins. Genomic mapping of the transcriptome reveals transcriptional forests, with overlapping transcription on both strands, separated by deserts in which few transcripts are observed. The data provide a comprehensive platform for the comparative analysis of mammalian transcriptional regulation in differentiation and development. PMID: [16141072] 

3. The mouse (Mus musculus) is the premier animal model for understanding human disease and development. Here we show that a comprehensive understanding of mouse biology is only possible with the availability of a finished, high-quality genome assembly. The finished clone-based assembly of the mouse strain C57BL/6J reported here has over 175,000 fewer gaps and over 139 Mb more of novel sequence, compared with the earlier MGSCv3 draft genome assembly. In a comprehensive analysis of this revised genome sequence, we are now able to define 20,210 protein-coding genes, over a thousand more than predicted in the human genome (19,042 genes). In addition, we identified 439 long, non-protein-coding RNAs with evidence for transcribed orthologs in human. We analyzed the complex and repetitive landscape of 267 Mb of sequence that was missing or misassembled in the previously published assembly, and we provide insights into the reasons for its resistance to sequencing and assembly by whole-genome shotgun approaches. Duplicated regions within newly assembled sequence tend to be of more recent ancestry than duplicates in the published draft, correcting our initial understanding of recent evolution on the mouse lineage. These duplicates appear to be largely composed of sequence regions containing transposable elements and duplicated protein-coding genes; of these, some may be fixed in the mouse population, but at least 40% of segmentally duplicated sequences are copy number variable even among laboratory mouse strains. Mouse lineage-specific regions contain 3,767 genes drawn mainly from rapidly-changing gene families associated with reproductive functions. The finished mouse genome assembly, therefore, greatly improves our understanding of rodent-specific biology and allows the delineation of ancestral biological functions that are shared with human from derived functions that are not. PMID: [19468303] 

4. The National Institutes of Health's Mammalian Gene Collection (MGC) project was designed to generate and sequence a publicly accessible cDNA resource containing a complete open reading frame (ORF) for every human and mouse gene. The project initially used a random strategy to select clones from a large number of cDNA libraries from diverse tissues. Candidate clones were chosen based on 5'-EST sequences, and then fully sequenced to high accuracy and analyzed by algorithms developed for this project. Currently, more than 11,000 human and 10,000 mouse genes are represented in MGC by at least one clone with a full ORF. The random selection approach is now reaching a saturation point, and a transition to protocols targeted at the missing transcripts is now required to complete the mouse and human collections. Comparison of the sequence of the MGC clones to reference genome sequences reveals that most cDNA clones are of very high sequence quality, although it is likely that some cDNAs may carry missense variants as a consequence of experimental artifact, such as PCR, cloning, or reverse transcriptase errors. Recently, a rat cDNA component was added to the project, and ongoing frog (Xenopus) and zebrafish (Danio) cDNA projects were expanded to take advantage of the high-throughput MGC pipeline. PMID: [15489334] 

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Function
Cytochromes P450 are a group of heme-thiolatemonooxygenases. In liver microsomes, this enzyme is involved in anNADPH-dependent electron transport pathway. It oxidizes a varietyof structurally unrelated compounds, including steroids, fattyacids, and xenobiotics. 
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Subcellular Location
Endoplasmic reticulum membrane; Peripheralmembrane protein. Microsome membrane; Peripheral membrane protein. 
Tissue Specificity
Very low level in liver, kidney and spleen. 
Gene Ontology
GO IDGO termEvidence
GO:0005789 C:endoplasmic reticulum membrane IEA:UniProtKB-SubCell.
GO:0018685 F:alkane 1-monooxygenase activity IEA:EC.
GO:0052869 F:arachidonic acid omega-hydroxylase activity IEA:EC.
GO:0009055 F:electron carrier activity IEA:InterPro.
GO:0020037 F:heme binding IEA:InterPro.
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Interpro
IPR001128;    Cyt_P450.
IPR017972;    Cyt_P450_CS.
IPR002401;    Cyt_P450_E_grp-I.
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Pfam
PF00067;    p450;    1.
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SMART
PROSITE
PS00086;    CYTOCHROME_P450;    1.
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PRINTS
PR00463;    EP450I.;   
PR00385;    P450.;   
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Created Date
18-Oct-2012 
Record Type
GAS predicted 
Sequence Annotation
PROPEP        1      4       Removed in mature form (By similarity).
                             /FTId=PRO_0000046058.
CHAIN         5    507       Cytochrome P450 4A14.
                             /FTId=PRO_0000046059.
METAL       454    454       Iron (heme axial ligand) (By similarity).
BINDING     318    318       Heme (covalent; via 1 link) (By
                             similarity).
MOD_RES     437    437       Phosphoserine (By similarity).
CONFLICT    231    231       N -> D (in Ref. 2; BAE28849).
CONFLICT    278    278       Q -> R (in Ref. 4; BC089609).
CONFLICT    401    401       S -> F (in Ref. 4; BC089609).
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Nucleotide Sequence
Length: 3770 bp   Go to nucleotide: FASTA
Protein Sequence
Length: 507 bp   Go to amino acid: FASTA
The verified Protein-Protein interaction information
UniProt
Gene Symbol Ref Databases
Other Protein-Protein interaction resources
String database  
View Microarray data
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