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Human pancreatitis-associated protein. Messenger RNA cloning and expression in pancreatic diseases
B Orelle1, V Keim, L Masciotra
1U.315 Institut National de la Santé et de la Recherche Médicale, Marseille, France.
Insights
Researchers identified a novel human pancreatitis-associated protein (PAP-H) that is overexpressed during pancreatitis. Elevated PAP-H levels in serum suggest its potential as a diagnostic marker for acute pancreatitis.
Area of Science:
- Biochemistry
- Molecular Biology
- Gastroenterology
Background:
- Pancreatitis-associated protein (PAP) is a secretory protein implicated in pancreatic inflammation.
- Understanding the human homolog of PAP is crucial for diagnosing and managing pancreatitis.
Purpose of the Study:
- To identify and characterize the human homolog of rat pancreatitis-associated protein (PAP).
- To investigate the expression patterns of the human protein during pancreatitis.
- To evaluate its potential as a biomarker for acute pancreatitis.
Main Methods:
- Screening a human pancreatic cDNA library using rat PAP cDNA.
- Sequence analysis and homology comparison.
- Western blot and immunohistochemistry for protein detection and localization.
- Development of an immunoassay for serum quantification.
Main Results:
- A human secretory protein, named PAP-H, was identified with 71% amino acid identity to rat PAP.
- PAP-H expression is low in normal pancreas but significantly upregulated during acute pancreatitis.
- Elevated PAP-H serum levels were detected in patients with acute and chronic pancreatitis, but not in healthy individuals or those with other abdominal diseases.
Conclusions:
- Human pancreatitis-associated protein (PAP-H) is structurally and functionally related to rat PAP.
- PAP-H is overexpressed in pancreatic tissue during inflammation.
- PAP-H shows promise as a specific serum biomarker for diagnosing acute pancreatitis.
Abstract:
A human pancreatic cDNA library was screened with the cDNA encoding rat "pancreatitis-associated protein" (PAP). The selected clone encoded a secretory protein structurally related to rat PAP. The protein had the same size as rat PAP and showed 71% amino acid identity, the six half-cystines being in identical positions. Domains of the proteins showing homologies with calcium-dependent lectins were also conserved. In addition, expression in pancreas of the genes encoding the human protein and rat PAP showed similar characteristics: both were expressed at very low levels in control tissue and overexpressed during the acute phase of pancreatitis, contrary to most secretory products. The human protein was therefore named human pancreatitis-associated protein (PAP-H). Antibodies raised to a synthetic peptide of PAP-H detected a single band with an M(r) compatible with PAP-H in Western blot analysis of proteins extracted from a pancreas presenting with acute pancreatitis. In that tissue, the protein could be immunolocalized to the apical regions of acinar cells. An immunoassay was also constructed to quantify the protein in serum. Elevated PAP-H levels were observed in patients with acute pancreatitis and in some patients with chronic pancreatitis. Values were close to background in healthy subjects and in patients with other abdominal diseases. These results confirm that PAP-H synthesis increases during inflammation and suggest a possible use of the protein as biological marker of acute pancreatitis.
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