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GeneQ17862004· pop 6· linked from 3 articles

Also known as SMTCK, creatine kinase, mitochondrial 2

Creatine kinase S-type, mitochondrial is an enzyme that in humans is encoded by the CKMT2 gene.

Gene data

CKMT2
Name
creatine kinase, mitochondrial 2
Type
protein-coding
Aliases
SMTCK

Mitochondrial creatine kinase (MtCK) is responsible for the transfer of high energy phosphate from mitochondria to the cytosolic carrier, creatine. It belongs to the creatine kinase isoenzyme family. It exists as two isoenzymes, sarcomeric MtCK and ubiquitous MtCK, encoded by separate genes. Mitochondrial creatine kinase occurs in two different oligomeric forms: dimers and octamers, in contrast to the exclusively dimeric cytosolic creatine kinase isoenzymes. Sarcomeric mitochondrial creatine kinase has 80% homology with the coding exons of ubiquitous mitochondrial creatine kinase. This gene contains sequences homologous to several motifs that are shared among some nuclear genes encoding mitochondrial proteins and thus may be essential for the coordinated activation of these genes during mitochondrial biogenesis. Three transcript variants encoding the same protein have been found for this gene. [provided by RefSeq, Jul 2008].

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Gene · Ensembl

creatine kinase, mitochondrial 2

Symbol
CKMT2
Biotype
Protein coding
Organism
Homo sapiens
Location
5:81,232,673-81,266,400
Strand
Forward (+)
Assembly
GRCh38
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via Ensembl · EMBL-EBI

Wikidata facts

Image
Protein CKMT2 PDB 2gl6.png
Show 5 more facts
HomoloGene ID
68206
genomic start
81233320
genomic end
81266398
cytogenetic location
5q14.1
Sources (4)

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Article

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Contents
  • References
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Creatine kinase S-type, mitochondrial is an enzyme that in humans is encoded by the CKMT2 gene.

Mitochondrial creatine kinase (MtCK) is responsible for the transfer of high energy phosphate from mitochondria to the cytosolic carrier, creatine. The "energy-rich" gamma-phosphate group of ATP that is generated by oxidative phosphorylation inside mitochondria is trans-phosphorylated to creatine (Cr) to give phospho-creatine (PCr), which then is exported from the mitochondria into the cytosol, where it is made available to cytosolic creatine kinases (CK) for in situ regeneration of the ATP that has been used for cellular work. Cr then is returning to the mitochondria where it stimulates mitochondrial respiration and again is charged-up by mitochondrial ATP via MtCK. This process is termed the PCr/Cr-shuttle or circuit. MtCK belongs to the creatine kinase (CK) isoenzyme family. It exists as two isoenzymes, sarcomeric MtCK and ubiquitous MtCK, encoded by separate genes. Mitochondrial creatine kinase occurs in two different oligomeric forms: dimers and octamers, in contrast to the exclusively dimeric cytosolic creatine kinase isoenzymes. Sarcomeric mitochondrial creatine kinase has 80% homology with the coding exons of ubiquitous mitochondrial creatine kinase. This gene contains sequences homologous to several motifs that are shared among some nuclear genes encoding mitochondrial proteins and thus may be essential for the coordinated activation of these genes during mitochondrial biogenesis.

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