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December 1, 1985Proceedings of the National Academy of Sciences55 citationsOpen Access

Complete nucleotide sequence of dog heart creatine kinase mRNA: conservation of amino acid sequence within and among species.

DRD G RomanJBJoseph J. BilladelloJGJeffrey I. Gordon

Key Points

  • This research aims to characterize the canine creatine kinase isoenzymes and understand regulation of their expression.
  • Isolated CK cDNA clones from dog myocardium.
  • Determined the structure of myocardial CK mRNA and its 5' and 3' nontranslated regions.
  • Compared partial protein sequences of dog muscle and brain CK subunits with those from other species.
  • Dog myocardial CK mRNA predicts a protein of 381 amino acids.
  • M CK subunits among different species exhibit 83-96% sequence identity.
  • Dog M and B subunits show 74% sequence identity, indicating significant conservation.

Abstract

Creatine kinase (CK; EC 2.7.3.2) plays an important role in energy metabolism in brain and muscle. Expression of CK isoenzymes is regulated during development and is tissue specific. To define the structures of canine CK isoenzymes and to elucidate the mechanism of regulation in their expression, CK cDNA clones from dog myocardium were isolated. Myocardial CK mRNA is predicted to encode a protein of 381 amino acids. The nontranslated regions of the mRNA comprise at least 38 bases at the 5' end and exactly 345 bases before the poly(A) tail. Partial protein sequences of dog muscle (M) CK and brain (B) CK subunits were determined and compared with the derived amino acid sequence of the myocardial enzyme and of M CK subunits of other species. The M CK subunits from different species share a very high degree (83-96%) of sequence identity. Dog M and B subunits share extensive sequence identity (74%), a degree of similarity not previously suspected. Southern blot analysis suggests that a CK gene family exists. These observations imply that evolutionary changes in the M CK subunit structure are constrained by the need for preservation of functional properties other than the kinase activity. This conservation is consistent with the possibility that the M subunit plays a structural role in cardiac and skeletal muscle.

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Cite This Study

Roman et al. (1985) studied this question.

synapsesocial.com/papers/6a6542ef1b122b07e7b2e339https://doi.org/10.1073/pnas.82.24.8394
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Molecular cloning and the complete nucleotide sequence of the creatine kinase-M cDNA from chicken1984 · 33 citations
  2. 2Immunocytochemical localization of creatine kinase M in canine myocardial cells: most creatine kinase M is distributed in the A-band.1989 · 18 citations
  3. 3Different regulatory sequences control creatine kinase-M gene expression in directly injected skeletal and cardiac muscle.1993 · 49 citations
  4. 4Different Regulatory Sequences Control Creatine Kinase-M Gene Expression in Directly Injected Skeletal and Cardiac Muscle1993 · 91 citations
  5. 5Muscle creatine kinase sequence elements regulating skeletal and cardiac muscle expression in transgenic mice.1989 · 115 citations