CRYGD

Crystallin gamma D P07320 CRGD_HUMAN
Protein Coding Chr 2 2q33.3 Swiss-Prot reviewed Entrez 1421
Mutations
124
CL 29 · Tissue 93
Samples
123
CL 29 · Tissue 92
Peptides
88
unique mutant peptides
Transcripts
2
isoforms mutated

Stats by Source

Total, split by cell line (COSMIC CL / DepMap / PubMed) vs tissue (COSMIC primary tissue)

How the counts split by source
Stats by Source

Total = all mutations for this gene across every source.

Cell line = COSMIC Cell Lines Project + DepMap + PubMed.

Tissue = COSMIC primary-tissue (patient tumour) samples.

Total can exceed cell line + tissue: COSMIC tissue-derived models sit only in global, and a peptide can be shared across both.

TotalCell lineTissue
Mutations1242993
Samples1232992
Peptides881972

Function

CRYGD · Crystallin gamma D

Crystallins are separated into two classes: taxon-specific, or enzyme, and ubiquitous. The latter class constitutes the major proteins of vertebrate eye lens and maintains the transparency and refractive index of the lens. Since lens central fiber cells lose their nuclei during development, these crystallins are made and then retained throughout life, making them extremely stable proteins. Mammalian lens crystallins are divided into alpha, beta, and gamma families; beta and gamma crystallins are also considered as a superfamily. Alpha and beta families are further divided into acidic and basic groups. Seven protein regions exist in crystallins: four homologous motifs, a connecting peptide, and N- and C-terminal extensions. Gamma-crystallins are a homogeneous group of highly symmetrical, monomeric proteins typically lacking connecting peptides and terminal extensions. They are differentially regulated after early development. Four gamma-crystallin genes (gamma-A through gamma-D) and three pseudogenes (gamma-E, gamma-F, gamma-G) are tandemly organized in a genomic segment as a gene cluster. Whether due to aging or mutations in specific genes, gamma-crystallins have been involved in cataract formation. [provided by RefSeq, Jul 2008].

Isoforms & Proteins

2 transcripts · UniProt mapping is sequence-verified (AA-safe)

About the isoform mapping
Isoforms & Proteins

Each Ensembl transcript (ENST) this gene is mutated on, with its matched UniProt accession.

The mapping is sequence-verified: the UniProt sequence is identical to the transcript translation, so amino-acid positions line up exactly. A * marks an unreviewed (TrEMBL) entry.

Counts are mutations and unique mutant peptides on each transcript.

TranscriptUniProtMutationsPeptides
ENST00000264376 P07320 123 88
ENST00000644920 P07320 1 1

Gene Properties

Type
Protein Coding
Chromosome
2
Cytoband
2q33.3
Entrez ID
Aliases
CACACCA3CCPCRYG4CTRCT4PCC

Recurrent Mutations

All 88 amino-acid changes on canonical ENST00000264376 · needle height = samples · drag the mini-map to zoom

What this lollipop shows
Recurrent Mutations

A lollipop / needle plot – the standard way to show recurrent mutations along a protein (as used by cBioPortal and MutationMapper).

X-axis = amino-acid position in the protein.

Needle height & head size = how often that exact amino-acid change was observed (its recurrence). Tall/large heads are mutational hotspots.

The most recurrent changes are labelled; hover any needle for the change, position and counts.

Mutation frequency across cancer types

% of samples with a missense/complex mutation in CRYGD · cell line vs tissue

How this frequency is counted
Cancer-type mutation frequency

For each cancer type, the fraction of samples that carry at least one missense/complex mutation anywhere in CRYGD – counted as distinct samples (a sample counts once no matter how many mutations it has).

Split into cell line and tissue; each cell shows mutated / total and the percentage. Cohorts with <20 samples are omitted. Ordered by combined frequency.

Cancer typeCell linesTissue samples
Chronic Myelogenous Leukemia
1/25 4%
0/0 0%
Glioblastoma
1/98 1%
0/0 0%
Endometrial Carcinoma
2/42 5%
4/612 1%
Melanoma
1/210 0%
14/1899 1%
Thyroid Gland Carcinoma
0/45 0%
10/1592 1%
Neuroendocrine Tumour
1/154 1%
3/577 1%
Non-Small Cell Lung Carcinoma
3/304 1%
6/1390 0%
Colorectal Carcinoma
7/143 5%
9/3239 0%
Ovarian Carcinoma
2/109 2%
3/998 0%
Burkitts Lymphoma
1/32 3%
0/196 0%
Esophageal Carcinoma
0/23 0%
3/769 0%
Squamous Cell Lung Carcinoma
0/57 0%
3/810 0%
Bladder Carcinoma
0/58 0%
3/956 0%
Plasma Cell Myeloma
0/44 0%
1/305 0%
Gastric Carcinoma
0/74 0%
5/1809 0%
Other Sarcomas
2/69 3%
0/699 0%
Head and Neck Carcinoma
0/85 0%
4/1574 0%
Breast Carcinoma
4/144 3%
4/3264 0%
Cervical Carcinoma
0/35 0%
1/422 0%
Other Solid Cancers
0/94 0%
3/1515 0%
B-Cell Non-Hodgkins Lymphoma
2/88 2%
3/2534 0%
Esophageal Squamous Cell Carcinoma
1/51 2%
3/2550 0%
Other Blood Cancers
1/61 2%
3/2725 0%
Glioma
0/52 0%
2/2127 0%
Prostate Carcinoma
0/13 0%
2/2105 0%
Hepatocellular Carcinoma
0/46 0%
2/2210 0%
Neuroblastoma
0/87 0%
1/1331 0%
Kidney Carcinoma
0/85 0%
1/1862 0%
B-Lymphoblastic Leukemia
0/55 0%
1/2640 0%

Mutation Distribution

Where CRYGD is mutated · all tissues, split by cell line vs tissue

Mutation counts by tissue
Mutation Distribution

How many mutations in CRYGD were found in each tissue, across the whole database.

Each bar is a tissue (cell-line and tissue names are merged to the standard tissue), split into cell line and tissue (patient tumour) contributions.

This shows the cancer-context where this gene is recurrently altered.

GTEx Expression

Median TPM across 20 healthy tissues

GTEx Portal ↗
About the expression data
GTEx Expression

Median gene expression (TPM) in normal, non-cancer human tissues from the GTEx project.

Useful for judging tumour specificity – a strong neoantigen target ideally comes from a gene with low expression in healthy tissues.

Scroll or drag the mini-axis below the chart to browse all tissues.

Mutations

All 124 mutations in CRYGD

About the mutation list
Mutations

Every mutation record for this gene, across all samples and sources.

The Sample column links to the cell line (cell-line samples) or the tissue type (tissue samples).

Use the Type / Source filters, the search box, and column sorting to explore; each CAN-IMMUNE ID opens the full mutation & peptide view.

IDSampleTranscriptAA Change CDSTypeSourceMutant PeptideWild-type Peptide