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R C Karn

Publications and source records attributed to R C Karn.

51 records · Page 3Linked to original sources

Immunological relationships and a genetic interpretation of major and minor acidic proteins in human parotid saliva.

Isoelectric focusing was performed on parotid salivas selected for their electrophoretic phenotypes of proline-rich acidic salivary proteins. Fractions encompassing narrow pH regions were pooled and examined by polyacrylamide gel electrophoresis. Isoelectric focusing yielded partial purification of major and minor acidic proline-rich proteins which were subsequently compared by immunoelectrophoresis and double immunodiffusion against goat anti-human parotid saliva. Cross-reactivity without spurring between all fractions containing major Pr proteins in both immunoelectrophoresis and double immunodiffusion suggests that these proteins are immunologically very similar or identical.

Alleles↗

An evaluation of the usefulness of amylase isozyme differentiation in patients with hyperamylasemia.

Amylase assays measure total activity without differentiating the relative contributions of pancreatic- and salivary-type amylase isozymes. Since polyacrylamide electrophoresis allows identification of salivary-and pancreatic-type isoxymes and their respective variants, serum and urine specimens from patients with the clinical diagnoses of mumps (4), pancreatitis (16), or undiagnosed hyperamylasemias (5) were compared with specimens from control subjects. Patients with mumps had elevations of salivary-type isozymes, while those with pancreatitis had elevations of pancreatic-type isozymes. Elevation of salivary-type isozymes was identified in the five patients who had undiagnosed hyperamylasemias; among these, the isozymes of two originated in neoplastic ovarian tissue and those of three, probably in the salivary glands. Amylase isozyme differentiation cannot unamibiguously identify the tissue source of hyperamylasemia. However, in patients whose hyperamylasemia is of unknown etiology or who respond atypically to therapy, amylase electrophoresis provides identification of the elevated isozyme type, thus providing the basis for the rational selection of further diagnostic procedures.

Aged↗

Differential expression of salivary (Amy1) and pancreatic (Amy2) human amylase loci in prenatal and postnatal development.

The age-dependent development of alpha-amylase expression in utero and during the first two years of life is reported. Separation of salivary and pancreatic amylase isozymes in a discontinuous buffered sheet polyacrylamide electrophoretic system, with subsequent densitometry, provides a reliable semiquantitative method of estimating the proportions of salivary and pancreatic amylases in urine and amniotic fluid samples. In the newborn the predominant amylase isozymes seen in the urine are of salivary origin. As the child ages the level of amylase in the urine rises and an increase in the proportion of pancreatic amylase isozymes occurs. Amniotic fluids of late first and early second trimester pregnancies contain salivary isozymes. None of the amniotic fluid samples examined has pancreatic amylase isozymes. These data reflect a differential development of the expression of the two amylase approaches adult levels by 16 months of age. Conversely, the salivary (Amy1) locus is expressed as early as 18 weeks of gestation and remains relatively constant with but a small increase in salivary amylase (units/ml) activity during early development, as the total amylase activity approaches adult values.

Age Factors↗

The microevolution of mouse salivary androgen-binding protein (ABP) paralleled subspeciation of Mus musculus.

Mouse salivary androgen-binding protein (ABP) is a major secretory product of the submaxillary glands. Although it is a common salivary protein among rodents generally, the function of ABP has yet to be determined. Here we report a comparison of the DNA coding sequences and putative amino acid sequences they determine for the three common alleles of the Alpha subunit gene (Abpa), alleles that appear to be diagnostic for the three subspecies of Mus musculus. Three other unique sequences were found in the species M. caroli, M. spretus, and M. spicilegus. Comparison of the six sequences shows that 8 of the 20 base substitution sites produce a high degree of variability in amino acids 32, 33, 36, and 39, a variability that creates unique sequence combinations in each species and subspecies. We compare the possibilities that selection or genetic drift caused this unusual microevolution and argue that selection is the more likely explanation. We speculate on the potential significance of this with respect to the proposal that ABP is involved in assortive mate kin selection.

Alleles↗

Salivary androgen-binding protein variation in Mus and other rodents.

We have searched for genetic variation in the expression of salivary androgen-binding protein (ABP) in a wide variety of mice and other rodents. ABP was present in the salivas of mice of all species and subspecies studied. Genetic studies have identified three common variants of the ABP Alpha subunit (Abpaa, Abpab, and Abpac) in Mus musculus populations with distributions that correspond roughly to those of the subspecies studied (domesticus, musculus, and castaneus, respectively). It appears that the ABP a and b polymorphisms conform to the hybrid zone between the domesticus and musculus subspecies characterized by others. Our studies suggest that the presence of Abpab in inbred strains may be due to a M. m. musculus contribution, perhaps via oriental fancy mice bred to European mice in the early lines leading to the common inbred strains. The relatively common occurrence of the ABP a type in other Mus species leads us to conclude that it is the ancestral type in mice. Further, the observation of what amounts to unique alleles in the three different subspecies indicates that microevolution of the protein has occurred. In a broader survey, ABP was also found in the salivas of Murid and Cricetid rodents generally. These findings suggest that ABP has an important functional role in rodent salivas.

Alleles↗