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December 1, 1993Proceedings of the National Academy of Sciences1,476 citationsOpen Access

Molecular cloning of cDNA encoding an unrecognized component of amyloid in Alzheimer disease.

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KUKazumitsu UedaHFHideto FukushimaEMEliezer Masliah

Key Points

  • This study aims to identify previously unrecognized components of amyloid in Alzheimer's disease.
  • Analyzed amino acid sequences of amyloid preparation to identify unknown peptides.
  • Raised antibodies against synthetic peptides to study immunostaining in brain tissues.
  • Isolated cDNA encoding a 140-amino-acid protein associated with amyloid fibrils.
  • Identified and named NAC as a 35-amino acid peptide, a new component alongside A beta.
  • Confirmed NAC's tendency to form beta-structures, aligning with its role in amyloid formation.
  • Detected NACP predominantly in the brain, suggesting a specific functional role in Alzheimer's pathology.

Abstract

A neuropathological hallmark of Alzheimer disease (AD) is a widespread amyloid deposition. We analyzed the entire amino acid sequences in an amyloid preparation and found, in addition to the major beta/A4-protein (A beta) fragment, two unknown peptides. We raised antibodies against synthetic peptides using subsequences of these peptides. These antibodies immunostained amyloid in neuritic and diffuse plaques as well as vascular amyloid. Electron microscopic analysis demonstrated that the immunostaining was localized on amyloid fibrils. We have isolated an apparently full-length cDNA encoding a 140-amino-acid protein within which two previously unreported amyloid sequences are encoded in tandem in the most hydrophobic domain. We tentatively named this 35-amino acid peptide NAC (non-A beta component of AD amyloid) and its precursor NACP. NAC is the second component, after A beta, identified chemically in the purified AD amyloid preparation. Secondary structure predictions indicate that the NAC peptide sequence has a strong tendency to form beta-structures consistent with its association with amyloid. NACP is detected as a M(r) 19,000 protein in the cytosolic fraction of brain homogenates and comigrates on immunoblots with NACP synthesized in Escherichia coli from NACP cDNA. NACP mRNA is expressed principally in brain but is also expressed in low concentrations in all tissues examined except in liver, suggesting its ubiquitous and brain-specific functions. The availability of the cDNA encoding full-length NACP should help to elucidate the mechanisms of amyloidosis in AD.

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Cite This Study

Ueda et al. (1993) studied this question.

synapsesocial.com/papers/69d7d52161e2ce1627d182b0https://doi.org/10.1073/pnas.90.23.11282
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