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K J Andersen

Publications and source records attributed to K J Andersen.

At least 37 records · Page 2Linked to original sources

Subcellular distribution of renal tripeptide-releasing exopeptidases active on collagen-like sequences.

The rat kidney cortex was found to contain two N-terminal exopeptidases of the tripeptidyl peptidase (TPP) class. Each required a free N-terminus to catalyze the release of collagen-related (Gly-Pro-X) "triplets." In accordance with their apparent pH optima, activities were routinely determined fluorimetrically at pH 4.0 (TPP 4) and at pH 7.0 (TPP 7) on Gly-Pro-Met-2-naphthylamide. The specific activity in both the homogenate and the classical subfractions was much greater at pH 7 than at pH 4. Subfractionation of the microsomal fraction by equilibrium banding in sucrose did not separate the TPP 4 and TPP 7 activities. The banding density (1.18 g/ml) and the distribution patterns for TPP 7 in the microsomal subfractions, and also in the subfractions of the small lysosomes in the mitochondrial-lysosomal (ML) fraction, demonstrate that TPP 7 is associated with smooth membranes. The TPP 4 and TPP 7 activities were clearly separated during subfractionation of the ML fraction. Rate sedimentation demonstrated that TPP 4 was present in the large, fast-sedimenting lysosomes (protein droplets) and in a heterogeneous broad band of smaller lysosomes. Equilibrium banding of the small lysosomes gave two distinct TPP 4-containing populations at densities 1.20 and 1.235 g/ml. Notably, dipeptidyl peptidase II (DPP II) gave identical banding densities and showed distributions very similar to TPP 4.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminopeptidases↗

Presence and possible role of a renal brush-border Gly-Pro-X-releasing exopeptidase.

Differential pelleting of a rat renal cortical homogenate clearly demonstrated the microsomal localization of an N-terminal exopeptidase of the tripeptidyl peptidase (TPP) class that typically requires a free N-terminus to catalyze the release of collagen-related (Gly-Pro-X) "triplets" at pH 7.0 (TPP 7). Once fractionated by differential pelleting, microsomal populations of different size were subfractionated by equilibrium banding in sucrose gradients for the purpose of comparing the distribution profiles and the isopycnic banding densities of TPP 7 to those for known marker enzymes. This analytical approach permitted the localization of these enzymes to specific membrane domains in the renal cortex and provided evidence for the brush-border location of TPP 7. Notably, dipeptidyl peptidase IV (DPP IV), an established plasma membrane exopeptidase with a prolyl-bond specificity, gave banding densities and distributions that were consistent with the presence of both TPP 7 and DPP IV in the same membrane compartment. Because triplets of the Gly-Pro-X type released by TPP 7 would be ideal substrates for DPP IV, a coupled TPP 7-DPP IV exopeptidase mechanism at the luminal surface (brush border) of proximal tubule cells could therefore make a major contribution to the renal degradation and reabsorption of filtered collagen fragments.

Aminopeptidases↗

Changes in lysosome populations in the rat kidney cortex induced by passive Heymann glomerulonephritis.

Acute passive Heymann glomerulonephritis in rats induced heavy proteinuria and highly increased urinary activity of N-acetyl-beta-D-glucosaminidase, acid beta-galactosidase and acid phosphatase. The cortical activity of these acid hydrolases was increased essentially in the large lysosomes as demonstrated by subfractionation of the lysosome-rich mitochondrial-lysosomal fraction, by rate zonal centrifugation. Banding density of small lysosomes shifted or reduced to slightly lower value (1.225 g/ml), which is between the banding densities of small 'light' (1.20 g/ml) and small 'dense' lysosomes (1.235 g/ml) in normal rat kidney cortex. Labelled protein reabsorbed in the proximal tubule is recovered in these populations of small lysosomes as well as in the large lysosomes or 'protein droplets'. Glomerulonephritis also induced a new population of small 'light' lysosomes (density 1.185-1.195 g/ml) enriched in cathepsin D. The previously demonstrated morphological, biochemical, and physiological heterogeneity of renal lysosomes was confirmed and emphasized in the kidney cortex of glomerulonephritic rats. The main changes in the lysosomal populations appear to reflect the increased protein reabsorption as confirmed by the proteinuria.

Acetylglucosaminidase↗

Intestinal epithelial function and villus surface area in rats with bile fistulae.

We have previously found reduced absorption of vitamin B12 in rats with choledochocolic fistulae. To investigate whether the reduction is caused by epithelial dysfunction or mucosal hypoplasia, choledochocolic fistulae were made in 11 rats, whereas 10 rats were sham-operated. The epithelial function was evaluated 9 days later by measuring the uptake of 57CoB12 and glucose in perfused intestinal segments and by determining the activities of 11 mucosal enzymes. Hypoplasia was investigated by performing morphometric measurements of the villus surface area and by measuring the weight, protein, and DNA in mucosal scrapings. The results suggest that choledochocolic fistulae in rats do not impair the epithelial function or cause mucosal hypoplasia. The urinary excretion of indican was increased in the fistula-operated rats, but further studies are needed to establish the significance of this observation.

Animals↗

Analytical study of kallikrein and kallikrein-like esterase activity in subfractions from rat kidney cortex microsomes and isolated subcellular membranes.

Heavy and light microsomal fractions were subfractioned using high performance zonal rotors, and assayed for apoprotenin sensitive kallikrein-like amidolytic activity (pH 8.2). The activity profiles for the various substrates assayed show rather complex distribution pattern demonstrating kallikrein-like amidolytic activity in plasma membranes, basolateral membranes, rough endoplasmic reticulum and membranes derived from the Golgi complex.

Aminopeptidases↗

Analytical study on Na-K-ATPase (and cysteine insensitive p-nitrophenylphosphatase) in rat kidney-cortex microsomes subfractioned by zonal centrifugation.

The common use of Na-K-ATPase as a marker enzyme for basolateral membranes in the kidney is based on the microscopic localization of the enzyme by the cytochemical assay of Na-K-ATPase as cysteine insensitive p-nitrophenylphosphatase (Ernst S.A., J. Cell Biol. 66, 586-606, 1975). Rat kidney cortex plasma membranes were therefore fractionated by differential pelleting in isotonic sucrose, followed by equilibrium banding in linear sucrose gradients, to compare the distribution of "biochemical" and "cytochemical" assayed Na-K-ATPase. In all fractions, the distribution of Na-K-stimulated Mg-dependent ATPase differed from the distribution of cysteine insensitive p-nitrophenylphosphatase (alkaline phosphatase). Evidence is presented that this difference is not only due to the separation of plasma membranes from different cell types, but simply reflects different membrane location of the enzymic activities.

4-Nitrophenylphosphatase↗

Intestinal kallikrein activity is reduced in a bypassed segment of the small intestine in the rat.

The possible pancreatic origin of intestinal kallikrein was studied in a jejuno-ileal bypass model in the rat. The bypassed loops were made of variable lengths (2-72 cm) and samples were taken at 10 cm intervals to relate enzyme activities to adaptive changes caused by local and systemic stimulus. The kallikrein activity was dramatically reduced (mean 92.3%) in the bypassed loops while only moderately reduced (mean 35.8%) activities were found in the intestine remaining in continuity. Kallikrein was uniformly distributed throughout the functional small intestine in normal and bypass operated animals. The longitudinal distribution profiles obtained for brush border enzymes in normal animals were almost absent in the bypassed loops, but were apparent in the remaining intestine. The main adaptive growth was observed in the remaining small intestine, Both here and in the loop, the growth depended on the amount of bypassed tissue. Our observations are strongly in favour of a pancreatic origin of the glandular kallikrein activity found in the small intestine in the rat.

Animals↗

Determination of silver in biological samples using graphite furnace atomic absorption spectrometry based on Zeeman effect background correction and matrix modification.

A method for the determination of silver in human body fluids and biological material is described. The silver in an acid digest of biological samples and diluted body fluids is quantified using Zeeman graphite furnace atomic absorption spectrometry (ZGFAAS). The effects of NH4H2PO4 as matrix modifier and standard addition are discussed. Atomization from the graphite tube wall and from the pyrolytical tube with platform is also discussed and the peak height and the peak area are compared. The best results were achieved by using matrix modification, stabilized temperature platform furnace, integrated absorbance and standard addition technique. The calibration was linear up to 15 micrograms X L-1; the between-run precision was 5.9% at 40 micrograms X kg-1 of silver.

Animals↗

Autoregulation of renal blood flow in two-kidney, one-clip hypertensive rats.

Renal blood flow (RBF) autoregulation was examined in the clipped and nonclipped kidneys in two groups of two-kidney, one-clip (2K-1C) hypertensive rats 10 wk after clipping. The arterial pressure distal to the clip and the renin secretion rate (RSR) were also examined. The blood pressure (BP) was 149 +/- 4 and 162 +/- 6 mmHg in the two hypertensive groups vs. 114 +/- 3 mmHg in the controls (P less than 0.02). The RBF (in ml X min-1 X kidney-1) was 4.27 +/- 0.41 in the nonclipped and 2.18 +/- 0.23 in the clipped kidneys (P less than 0.001). The pressure distal to the clip was 104 +/- 7 mmHg. The renal vascular resistance (RVR) (in mmHg X ml-1 X min-1 X g-1) was 25.0 +/- 1.4 in the control kidneys vs. 58.4 +/- 4.5 in the nonclipped (P less than 0.001) and 39.9 +/- 6.6 in the clipped kidneys (P less than 0.01). The RBF autoregulation was well preserved in the nonclipped kidneys but reset to a higher lower pressure limit of autoregulation of 106 +/- 4 mmHg, which was significantly higher than in the normotensive controls (84 +/- 6 mmHg) (P less than 0.01). In the clipped kidneys there was complete loss of RBF autoregulation. RSR decreased with reduction of the perfusion pressure in the clipped kidneys. The increased RVR might have been due to a combination of structural and functional changes in both kidneys.

Animals↗

The lysosomal distribution of cathepsin B in the rat kidney cortex.

Subcellular distribution of cathepsin B following subfractionation of the kidney cortex mitochondrial/lysosomal fraction by rate sedimentation indicates that this enzyme is mainly associated with the large, fast sedimenting lysosomes (protein droplets). A small proportion of cathepsin B is also present in the small lysosomes which cosediment with mitochondria, peroxisomes, and brush border and other large membrane vesicles. Amongst this broad spectrum of small lysosomes the distribution of cathepsin B, together with other acid hydrolases is associated with the more rapidly sedimenting lysosomes whilst cathepsin D differs in being associated with the slowest sedimenting lysosomes. Equilibrium banding in sucrose gradients shows the large lysosomes band at a density of 1.235 g/ml and that the small lysosomes have two distinct populations at densities 1.20 and 1.235 g/ml. Cathepsin B (and also cathepsin D and acid ribonuclease) appears to be associated only with lysosomes of high density. The various other acid hydrolases assayed are found in all the lysosomal populations. Small and large lysosomes of high density are very rich in a number of proteinases and therefore most probably represent lysosomal populations involved in the catabolism of proteins taken up from the glomerular filtrate.

Animals↗

Subcellular distribution of selenium in the liver from rats fed selenium from fish: selenocystine and inorganic selenite.

Four groups of rats of a normal selenium status were given different selenium compounds during a long-term feeding experiment (28 days). The selenium supplementations (per kg diet) were sodium selenite (1 mg), selenocystine (2 mg), and two different concentration levels of selenium from fish (0.1 and 1 mg). Differential pelleting of liver homogenates demonstrated that selenium was present in all the subcellular fractions, with a recovery of 55-60% in the cytosols. Gel permeation high-performance liquid chromatography of the cytosol fractions demonstrated the presence of protein-bound selenium at a molecular weight of 70,000 daltons. The subcellular distributions as well as the protein binding of selenium in the cytosols were identical in all dietary groups. This indicates a similar long-term liver metabolism of the four selenium compounds tested in the rat.

Animals↗

Longitudinal distribution of mucosal enzymes in the human large bowel.

The distribution of a series of mucosal enzymes along the large bowel was studied by analysis of homogenized biopsy specimens from five different segments, obtained from 20 control patients. The activities varied significantly between the segments for the membrane enzymes lactase (p less than 0.005), alkaline phosphatase (p less than 0.0005), leucyl-beta-naphthylamidase (p less than 0.0001), and 5'-nucleotidase (p less than 0.001) and the mitochondrial enzyme monoamine oxidase (p less than 0.0005) when tested by analysis of variance modified for repeated measurements. When paired comparisons between segments were evaluated, the enzyme activities of the proximal large bowel were significantly higher than those of distal segments. The levels of sucrase, neutral-alpha-glucosidase, gamma-glutamyltransferase, and lysosomal enzymes remained unchanged throughout the large intestine, as did the protein to DNA ratio. The results are compatible with the theory that different segments of the large bowel have different functions.

Adult↗

Influence of remote cancer and obesity on, and distribution of mucosal enzymes in, the upper small intestine.

A series of mucosal enzymes were estimated by analysis of homogenized biopsy specimens from the lower duodenal flexure, obtained from 10 large-bowel carcinoma patients, 15 patients with morbid obesity, and 15 controls. In 11 subjects the distribution along the upper small intestine was determined. The activities of the brush border enzymes lactase (p less than 0.01), neutral-alpha-glucosidase (p less than 0.01), and alkaline phosphatase (p less than 0.05) were significantly lower in the large-bowel carcinoma patients than in the controls. In obese subjects significantly lower activities (p less than 0.05) were demonstrated for the basolateral membrane enzyme 5'-nucleotidase and the lysosomal enzymes N-acetyl-beta-D-glucosaminidase and acid beta-glucuronidase, when compared with those in controls. Compared with the enzyme levels of the duodenal bulb, significantly higher activities of a series of enzymes were demonstrated at both the lower duodenal flexure and the angle of Treitz.

Adenocarcinoma↗

Enzyme activities in biopsy specimens from human gastric mucosa.

The distribution of a series of marker enzymes in the gastric mucosa was studied by analysis of homogenized biopsy specimens from the lesser and greater curvature of the body and antrum, respectively, obtained from 11 control patients. The activities varied significantly between the regions for the membrane enzymes lactase (p less than 0.0001), neutral-alpha-glucosidase (p less than 0.005), alkaline phosphatase (p less than 0.01), leucyl-beta-naphthylamidase (p less than 0.005), and 5'-nucleotidase (p less than 0.0001) and the lysosomal enzymes N-acetyl-beta-D-glucosaminidase (p less than 0.0001) and acid beta-glucuronidase (p less than 0.0001), using analysis of variance modified for repeated measurements. When paired comparisons between regions were evaluated, the enzyme activities of the antral regions were significantly higher than those of the body stomach. The activities of gamma-glutamyltransferase, acid phosphatase, and the mitochondrial enzyme monoamine oxidase did not alter between regions, nor did the protein to DNA ratio. The demonstrated biochemical distinction between antrum and body of the stomach may be explained by different physiological and histological properties of the two parts.

Adult↗

Isoenzymes of N-acetyl-beta-D-glucosaminidase in kidney cortex and urine of normal and nephritic rats.

Induction of acute Heyman nephritis in rats gave a significant increase in the urinary excretion of protein (p less than 0.001) and N-acetyl-beta-D-glucosaminidase (NAG; p less than 0.01) 14 days after injection of antibody. The isoelectric points (IP) of NAG were studied by chromatofocusing of the urine, serum and various lysosomal populations purified from kidney cortex homogenates of normal and nephritic rats. The chromatofocusing profiles for serum NAG (IP = 5.8) were totally different from the patterns found in normal and nephritic urines. The acidic IPs of NAG in normal urine (IP = 5.0) were changed into slightly more basic values in nephritic urine (IP = 5.15). Similar changes were also demonstrated in normal urine after acidification and prolonged incubation. The chromatofocusing profile obtained for NAG in the large, dense lysosomes was almost identical to the pattern observed in nephritic urine and demonstrated IPs for NAG in a slightly more basic pH area than observed for small and medium-sized lysosomes. The difference in IP in normal and nephritic urines may therefore be due to an increased autolytic degradation of NAG or excretion of the enzyme from different populations of lysosomes.

Acetylglucosaminidase↗