IGFLR1

Last updated
IGFLR1
Identifiers
Aliases IGFLR1 , TMEM149, U2AF1L4, IGF like family receptor 1
External IDs MGI: 3655979 HomoloGene: 49779 GeneCards: IGFLR1
Gene location (Human)
Ideogram human chromosome 19.svg
Chr. Chromosome 19 (human) [1]
Human chromosome 19 ideogram.svg
HSR 1996 II 3.5e.svg
Red rectangle 2x18.png
Band 19q13.12Start35,738,801 bp [1]
End35,742,453 bp [1]
Orthologs
SpeciesHumanMouse
Entrez
Ensembl
UniProt
RefSeq (mRNA)

NM_001346003
NM_001346004
NM_001346005
NM_001346006
NM_024660

NM_145580

RefSeq (protein)

NP_001332932
NP_001332933
NP_001332934
NP_001332935
NP_078936

NP_663555

Location (UCSC) Chr 19: 35.74 – 35.74 Mb Chr 7: 30.57 – 30.57 Mb
PubMed search [3] [4]
Wikidata
View/Edit Human View/Edit Mouse

IGF like family receptor 1 is a protein that in humans is encoded by the IGFLR1 gene. [5]

Protein biological molecule consisting of chains of amino acid residues

Proteins are large biomolecules, or macromolecules, consisting of one or more long chains of amino acid residues. Proteins perform a vast array of functions within organisms, including catalysing metabolic reactions, DNA replication, responding to stimuli, providing structure to cells and organisms, and transporting molecules from one location to another. Proteins differ from one another primarily in their sequence of amino acids, which is dictated by the nucleotide sequence of their genes, and which usually results in protein folding into a specific three-dimensional structure that determines its activity.

Gene basic physical and functional unit of heredity

In biology, a gene is a sequence of nucleotides in DNA or RNA that codes for a molecule that has a function. During gene expression, the DNA is first copied into RNA. The RNA can be directly functional or be the intermediate template for a protein that performs a function. The transmission of genes to an organism's offspring is the basis of the inheritance of phenotypic trait. These genes make up different DNA sequences called genotypes. Genotypes along with environmental and developmental factors determine what the phenotypes will be. Most biological traits are under the influence of polygenes as well as gene–environment interactions. Some genetic traits are instantly visible, such as eye color or number of limbs, and some are not, such as blood type, risk for specific diseases, or the thousands of basic biochemical processes that constitute life.


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References

Further reading