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January 1, 1994Circulation Research37 citationsOpen Access

Molecular basis of cardiac troponin T isoform heterogeneity in rabbit heart.

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AGA. S. GreigYHYulia HirschbergPAPage A.W. Anderson

Key Result

In the rabbit heart, multiple cardiac troponin T isoforms arise from alternative splicing involving the variable inclusion of an 18- and a 30-nucleotide sequence.

Structured PICO

P
Population
Rabbit heart (genomic DNA and newborn rabbit heart cDNAs)
I
Intervention
Molecular analysis including restriction-digest analysis, cDNA cloning, RT-PCR, and in vitro transcription/translation
O
Outcome
Molecular basis of cardiac troponin T isoform diversity

The study identifies the molecular basis of cardiac troponin T isoform heterogeneity in rabbit hearts as alternative splicing of specific nucleotide sequences.

Abstract

In the rabbit heart, multiple isoforms of cardiac troponin T (cTnT1 through cTnT5, from largest in size to smallest), a protein essential for calcium-regulated myofibrillar ATPase activity, have been identified, and a correlation has been found between these isoforms and myofilament sensitivity to calcium. We have sought to establish the molecular basis of this diversity. Restriction-digest analysis of genomic DNA has indicated that the rabbit cTnT gene is a single-copy gene. cTnT cDNA clones were isolated from cDNA libraries, yielding a consensus sequence for the protein. Newborn rabbit heart cDNAs, obtained using the reverse-transcriptase polymerase chain reaction (RT-PCR), were amplified using primers derived from this cDNA. Three full-length cDNAs that differed by the inclusion or exclusion of three short nucleotide sequences within the cDNAs were obtained. Amplification in the 5' half of the cDNAs confirmed that multiple cTnT products arose because of the variable inclusion of an 18- and a 30-nt sequence. The 30-nt sequence has homology with previously described alternatively spliced exons in rat and chicken cTnT, whereas the 18-nt sequence has not been described previously. RT-PCR in the 3' half of the cDNAs confirmed an additional region of heterogeneity: the presence, in part or in full, or absence of a 9-nt region, which matches the alternatively spliced exon 12 described for rat cTnT. In vitro transcription and translation of four cDNA clones containing both the 18- and 30-nt sequences, the 30-nt sequence, the 18-nt sequence, or neither generated protein isoforms that comigrated with cTnT1, cTnT2, cTnT3, and cTnT4, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

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Cite This Study

Greig et al. (1994) studied Cardiac troponin T isoform heterogeneity. In the rabbit heart, multiple cardiac troponin T isoforms arise from alternative splicing involving the variable inclusion of an 18- and a 30-nucleotide sequence.

synapsesocial.com/papers/6a26b94daa29af69e67971afhttps://doi.org/10.1161/01.res.74.1.41
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Also Consider

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

  1. 1Thin Filament Proteins and Thin Filament-Linked Regulation of Vertebrate Muscle Contractio1984 · 408 citations
  2. 2Troponin T switching in the developing rat heart.1988 · 92 citations
  3. 3A cardiac troponin T epitope conserved across phyla.1992 · 55 citations
  4. 4Isolation and functional comparison of bovine cardiac troponin T isoforms.1987 · 165 citations
  5. 5Deletion of the first 45 NH2-terminal residues of rabbit skeletal troponin T strengthens binding of troponin to immobilized tropomyosin1991 · 66 citations