chr7-75954143-AAAG-A
Variant names:
Variant summary
Our verdict is Likely benign. The variant received -1 ACMG points: 1P and 2B. PM4_SupportingBP6_Moderate
The NM_001395413.1(POR):c.149_151delAAG(p.Glu50del) variant causes a disruptive inframe deletion change. The variant allele was found at a frequency of 0.000126 in 1,612,868 control chromosomes in the GnomAD database, including 1 homozygotes. Variant has been reported in ClinVar as Likely benign (★).
Frequency
Genomes: 𝑓 0.00014 ( 0 hom., cov: 32)
Exomes 𝑓: 0.00012 ( 1 hom. )
Consequence
POR
NM_001395413.1 disruptive_inframe_deletion
NM_001395413.1 disruptive_inframe_deletion
Scores
Not classified
Clinical Significance
Conservation
PhyloP100: 7.10
Publications
2 publications found
Genes affected
POR (HGNC:9208): (cytochrome p450 oxidoreductase) This gene encodes an endoplasmic reticulum membrane oxidoreductase that is essential for multiple metabolic processes, including reactions catalyzed by cytochrome P450 proteins for metabolism of steroid hormones, drugs and xenobiotics. The encoded protein has a flavin adenine dinucleotide (FAD)-binding domain and a flavodoxin-like domain which bind two cofactors, FAD and FMN, that allow it to donate electrons directly from NADPH to all microsomal P450 enzymes. Mutations in this gene cause a complex set of disorders, including apparent combined P450C17 and P450C21 deficiency, amenorrhea and disordered steroidogenesis, congenital adrenal hyperplasia and Antley-Bixler syndrome, that resemble those caused by defects in steroid metabolizing enzymes such as aromatase, 21-hydroxylase, and 17 alpha-hydroxylase. [provided by RefSeq, Aug 2020]
POR Gene-Disease associations (from GenCC):
- Antley-Bixler syndrome with genital anomalies and disordered steroidogenesisInheritance: AR Classification: DEFINITIVE, STRONG Submitted by: ClinGen, PanelApp Australia, Ambry Genetics
- congenital adrenal hyperplasia due to cytochrome P450 oxidoreductase deficiencyInheritance: AR Classification: STRONG, SUPPORTIVE Submitted by: Labcorp Genetics (formerly Invitae), Orphanet
- Antley-Bixler syndromeInheritance: AD Classification: SUPPORTIVE Submitted by: Orphanet
Genome browser will be placed here
ACMG classification
Classification was made for transcript
Our verdict: Likely_benign. The variant received -1 ACMG points.
PM4
Nonframeshift variant in NON repetitive region in NM_001395413.1. Strenght limited to Supporting due to length of the change: 1aa.
BP6
Variant 7-75954143-AAAG-A is Benign according to our data. Variant chr7-75954143-AAAG-A is described in ClinVar as Likely_benign. ClinVar VariationId is 790736.Status of the report is criteria_provided_single_submitter, 1 stars.
Transcripts
RefSeq
| Gene | Transcript | HGVSc | HGVSp | Effect | Exon rank | MANE | Protein | UniProt |
|---|---|---|---|---|---|---|---|---|
| POR | NM_001395413.1 | c.149_151delAAG | p.Glu50del | disruptive_inframe_deletion | Exon 2 of 16 | ENST00000461988.6 | NP_001382342.1 |
Ensembl
Frequencies
GnomAD3 genomes AF: 0.000145 AC: 22AN: 152194Hom.: 0 Cov.: 32 show subpopulations
GnomAD3 genomes
AF:
AC:
22
AN:
152194
Hom.:
Cov.:
32
Gnomad AFR
AF:
Gnomad AMI
AF:
Gnomad AMR
AF:
Gnomad ASJ
AF:
Gnomad EAS
AF:
Gnomad SAS
AF:
Gnomad FIN
AF:
Gnomad MID
AF:
Gnomad NFE
AF:
Gnomad OTH
AF:
GnomAD2 exomes AF: 0.000321 AC: 79AN: 246266 AF XY: 0.000359 show subpopulations
GnomAD2 exomes
AF:
AC:
79
AN:
246266
AF XY:
Gnomad AFR exome
AF:
Gnomad AMR exome
AF:
Gnomad ASJ exome
AF:
Gnomad EAS exome
AF:
Gnomad FIN exome
AF:
Gnomad NFE exome
AF:
Gnomad OTH exome
AF:
GnomAD4 exome AF: 0.000124 AC: 181AN: 1460556Hom.: 1 AF XY: 0.000151 AC XY: 110AN XY: 726450 show subpopulations
GnomAD4 exome
AF:
AC:
181
AN:
1460556
Hom.:
AF XY:
AC XY:
110
AN XY:
726450
show subpopulations
African (AFR)
AF:
AC:
2
AN:
33464
American (AMR)
AF:
AC:
2
AN:
44572
Ashkenazi Jewish (ASJ)
AF:
AC:
0
AN:
26094
East Asian (EAS)
AF:
AC:
54
AN:
39678
South Asian (SAS)
AF:
AC:
67
AN:
85910
European-Finnish (FIN)
AF:
AC:
0
AN:
53342
Middle Eastern (MID)
AF:
AC:
4
AN:
5766
European-Non Finnish (NFE)
AF:
AC:
44
AN:
1111370
Other (OTH)
AF:
AC:
8
AN:
60360
Allele Balance Distribution
Red line indicates average allele balance
Average allele balance: 0.494
Heterozygous variant carriers
0
11
22
34
45
56
0.00
0.20
0.40
0.60
0.80
0.95
Allele balance
Age Distribution
Exome Het
Exome Hom
Variant carriers
0
4
8
12
16
20
<30
30-35
35-40
40-45
45-50
50-55
55-60
60-65
65-70
70-75
75-80
>80
Age
GnomAD4 genome AF: 0.000144 AC: 22AN: 152312Hom.: 0 Cov.: 32 AF XY: 0.000188 AC XY: 14AN XY: 74482 show subpopulations
GnomAD4 genome
AF:
AC:
22
AN:
152312
Hom.:
Cov.:
32
AF XY:
AC XY:
14
AN XY:
74482
show subpopulations
African (AFR)
AF:
AC:
3
AN:
41564
American (AMR)
AF:
AC:
0
AN:
15298
Ashkenazi Jewish (ASJ)
AF:
AC:
0
AN:
3472
East Asian (EAS)
AF:
AC:
12
AN:
5178
South Asian (SAS)
AF:
AC:
5
AN:
4822
European-Finnish (FIN)
AF:
AC:
0
AN:
10622
Middle Eastern (MID)
AF:
AC:
0
AN:
294
European-Non Finnish (NFE)
AF:
AC:
2
AN:
68034
Other (OTH)
AF:
AC:
0
AN:
2116
Allele Balance Distribution
Red line indicates average allele balance
Average allele balance: 0.502
Heterozygous variant carriers
0
1
2
4
5
6
0.00
0.20
0.40
0.60
0.80
0.95
Allele balance
Age Distribution
Genome Het
Variant carriers
0
2
4
6
8
10
<30
30-35
35-40
40-45
45-50
50-55
55-60
60-65
65-70
70-75
75-80
>80
Age
Alfa
AF:
Hom.:
Bravo
AF:
Asia WGS
AF:
AC:
1
AN:
3478
ClinVar
Significance: Likely benign
Submissions summary: Benign:1
Revision: criteria provided, single submitter
LINK: link
Submissions by phenotype
Congenital adrenal hyperplasia due to cytochrome P450 oxidoreductase deficiency Benign:1
Dec 24, 2024
Labcorp Genetics (formerly Invitae), Labcorp
Significance:Likely benign
Review Status:criteria provided, single submitter
Collection Method:clinical testing
- -
Computational scores
Source:
Name
Calibrated prediction
Score
Prediction
PhyloP100
Splicing
Name
Calibrated prediction
Score
Prediction
SpliceAI score (max)
Details are displayed if max score is > 0.2
Find out detailed SpliceAI scores and Pangolin per-transcript scores at
Publications
You must be logged in to view publications. This limit was set because tens of millions (!) of queries from AI bots are generated daily.