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Biomedical subjects

L Chan

Publications and source records attributed to L Chan.

At least 379 records · Page 21Linked to original sources

Human hepatic lipase. Cloned cDNA sequence, restriction fragment length polymorphisms, chromosomal localization, and evolutionary relationships with lipoprotein lipase and pancreatic lipase.

Human hepatic lipase is an important enzyme in high density lipoprotein (HDL) metabolism, being implicated in the conversion of HDL2 to HDL3. Three human hepatic lipase cDNA clones were identified in two lambda gt11 libraries from human liver. The cDNA-derived amino acid sequence predicts a protein of 476 amino acid residues, preceded by a 23-residue signal peptide. Four potential N-glycosylation sites are identified, two of which are conserved in rat hepatic lipase. On alignment with human, mouse, and bovine lipoprotein lipase, the same two sites were also conserved in lipoprotein lipase in all three species. Stringent conservation of the cysteine residues was also evident. Comparative analysis of amino acid sequences shows that hepatic lipase evolves at a rapid rate, 2.07 x 10(-9) substitutions/site/year, about four times that in lipoprotein lipase and half that in pancreatic lipase. Further, hepatic lipase and pancreatic lipase appear to be evolutionarily closer to each other than either of them is to lipoprotein lipase. Southern blot analysis revealed high frequency restriction fragment length polymorphisms of the hepatic lipase gene for the enzymes HindIII and MspI. these polymorphisms will be useful for haplotype and linkage analysis of the hepatic lipase gene. Using cloned human hepatic lipase cDNA as a hybridization probe, we performed Southern blot analysis of a panel of 13 human-rodent somatic cell hybrids. Concordance analysis of the various hybrid clones indicates that the hepatic lipase gene is located on the long arm of human chromosome 15. Analysis of hybrids containing different translocations of chromosome 15 localized the gene to the region 15q15----q22.

Amino Acids↗

Tubular hypermetabolism as a factor in the progression of chronic renal failure.

Thus, in summary, we hypothesize that nephron loss by a time-limited insult (eg, an acute immunological insult, surgical removal of five sixths of normal nephrons) may cause events in the tubules of the remaining nephrons that contribute substantially, though not exclusively, to the inexorable progression to ESRD. Specifically, hypermetabolism in the remaining tubules as assessed by oxygen consumption and ATP synthesis rates has been found to occur. This hypermetabolism in residual nephrons appears to be due to the known increased sodium transport per nephron, but nonsodium transport events also appear to be involved. With respect to the latter phenomenon, we propose that an increase in growth factor response per tubule, as a mechanism of renal hypertrophy, activates the DAG----protein kinase C----Na/H antiporter system. We have evidence in support of this sequence of events by the demonstration of a two-fold increase in membrane (particulate) protein kinase C within 24 hours after removal of the contralateral kidney and an increase in intracellular pH as assessed by NMR spectroscopy. Activation of the Na/H antiporter not only leads to proton extrusion and cellular alkalinization, which may activate cellular alkalinization, which may activate cellular enzymes such as phospholipases, but also increases intracellular Na concentration, thereby further increasing Na/K-ATPase, ATP use, and enhancing ATP synthesis. The increase in mitochondrial oxygen consumption, which accompanies the enhanced ATP synthesis, would be expected to be associated with increased oxygen radicle generation. If the tissue scavengers of oxygen radicles are not sufficient to scavenge the increase in oxygen radicles, then lipid peroxidation and tissue damage will occur.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

Acidosis and hypoxic medullary injury in the isolated perfused kidney.

The effects of acidosis on renal function and morphology were examined in the isolated perfused rat kidney (IPK). Kidneys were perfused with oxygenated Krebs-Henseleit-albumin medium for 60 minutes at pH 7.4 or pH 7.0. At the lower pH, GFR was reduced by 25%, TRNa by 32% and oxygen consumption by 41% as compared to perfusion at pH 7.4 (all P less than 0.05). In addition, the usual hypoxic injury observed in the medullary thick ascending limb of the Loop of Henle (TAL) in the IPK at pH 7.4 (consisting of nuclear pyknosis and focal fragmentation necrosis) was reduced by acidosis from 62% to 14% of tubules involved (P less than 0.005). This cytoprotection was not the result of improved oxygenation since O2 delivery was actually slighty reduced at pH 7.0 compared to pH 7.4. Furthermore, acidosis was protective even after perfusion with non-oxygenated media (42% tubules damaged at pH 7.0 vs. 95% of tubules damaged at pH 7.4; P less than 0.01), making it very unlikely that the effect of acidosis is to improve TAL oxygenation. Since previous studies indicate that the TAL lesion is transport dependent and prevented in the non-filtering kidney, it was possible that the decrease in GFR associated with acidosis could account for decreased injury. The GFR was manipulated by alterations in perfusion pressure or albumin concentration, and no consistent relationship between the extent of injury and GFR could be shown at either pH over a wide range of GFR values. Therefore, acidosis protected the TAL from hypoxic injury by a mechanism apparently independent of oxygen or solute delivery.(ABSTRACT TRUNCATED AT 250 WORDS)

Acidosis↗

31P nuclear magnetic resonance study of renal allograft rejection in the rat.

Phosphorus (31P) nuclear magnetic resonance (NMR) spectroscopy was used to serially evaluate heterotopic renal allograft rejection in the rat. Renal allografts transplanted to the groin of recipient animals were studied using a 1.89 Tesla horizontal bore magnet. The relative intracellular concentrations of phosphorus metabolites such as adenosine triphosphate and inorganic phosphate as well as intracellular pH were determined by 31P NMR on days 4, 7, 10, and 14 following transplantation across a major histocompatibility mismatch. Recipient rats chosen to be rejectors received no immunosuppression while animals chosen to be nonrejectors received cyclosporine during the first 7 days following transplantation. By day 7, all rejector rats could be distinguished from nonrejector rats by their higher relative concentration of inorganic phosphate and their lower relative concentration of adenosine triphosphate. These NMR findings correlated with histologic findings of renal infarction probably related to vascular rejection in the allografts. 31P NMR spectroscopy may have application as a noninvasive tool in the differential diagnosis of posttransplantation renal insufficiency.

Adenosine Triphosphate↗

Improvement of renal preservation by verapamil with 24-hour cold perfusion in the isolated rat kidney.

There is substantial evidence that increased cellular calcium may activate processes that lead to cellular injury and death, and calcium entry blockers (CEB) have been shown to protect against renal ischemic injury. This approach has been used experimentally to enhance kidney preservation during both warm and cold ischemia. In the present study, the effect of the CEB verapamil on kidney function after 24 hr of hypothermic (4-7 degrees C) perfusion was examined and compared with simple cold storage with Eurocollins' solution (4 hr), 4 or 24 hr cold perfusion, without the addition of verapamil. The cold perfusion media consisted of 3% albumin in phosphate-free Krebs-Henseleit saline supplemented with 5 mM glucose. Cold perfusion was performed at 40 mmHg perfusion pressure with either 0 (C) or 5 microM verapamil (V) added to the cold perfusion media. Renal functional parameters of plasma flow (RPF), inulin clearance (Cin), fractional (FRNa+) and net sodium reabsorption (TNa+) were assessed during 60 min of reperfusion at 37 degrees C using 6.7% albumin in Krebs-Henseleit saline supplemented with glucose, inulin, and 20 amino acids. There was no increase in RPF with V (33 +/- 1 vs. 32 +/- 2 ml/min/g,NS) but Cin was significantly higher (271 +/- 30 vs. 168 +/- 20 microliter/min/g P less than 0.01) with V. Preservation of tubular function by V was demonstrated by an increase in FRNa+ (84 +/- 5 vs. 57 +/- 8%, P less than .01), TNa+ (32 +/- 6 vs. 15 +/- 3 mumol/min/g, P less than .01) and renal adenosine triphosphate (ATP) concentration (8.0 +/- 5 vs. 4.7 +/- 1.0 mumol/g dry tissue, P less than .01). Thus, V appears not only to enhance kidney preservation with warm and cold ischemia but also improves renal function, as assessed by glomerular filtration rate (GFR) tubular function, and tissue ATP concentration with 24-hr cold perfusion.

Animals↗

Outer membranes of environmental isolates of Pseudomonas aeruginosa.

The outer membrane composition of 30 environmental isolates of Pseudomonas aeruginosa was examined. Other than variations in the amounts of lipoprotein H2, there were no major differences in the outer membrane protein or lipopolysaccharide patterns when compared with those of previously studied clinical isolates.

Bacterial Outer Membrane Proteins↗

Remnant kidney hypermetabolism and progression of chronic renal failure.

To investigate the mechanisms whereby verapamil and dietary phosphate restriction slow progression of nephron loss after renal ablation, the effects of these maneuvers on inulin clearance (CIn), net sodium reabsorption (TNa+), oxygen consumption (QO2), and net glucose production (GP) were examined in isolated perfused normal and remnant kidneys. Preliminary studies characterized the isolated perfused remnant kidney perfusion. Adaptation to renal ablation was greater for QO2 (102% of normal), GP (138%), and kidney weight (79%) than CIn (51%) or TNa+ (40%). Verapamil (50 microM) lowered QO2 in remnant kidneys (1.64 +/- 0.24 vs. control 2.86 +/- 0.16 mumol.min-1.g-1, P less than 0.005), as did phosphate restriction (1.81 +/- 0.22 vs. control 3.05 +/- 0.40 mumol.min-1.g-1, P less than 0.05). These effects could not be accounted for by changes in CIn, TNa+, or GP and were not observed in normal kidneys. In summary 1) remnant kidneys are hypermetabolic compared with normal kidneys when assessed by QO2 and GP; 2) verapamil and phosphate restriction diminish the enhanced metabolic activity of remnant kidneys, an effect that is independent of TNa+; and thus 3) verapamil and phosphate restriction may slow progression of renal disease, at least in part by reducing renal metabolic demands.

Animals↗

Effects of inner-membrane-associated beta-lactamase on penicillin-binding protein assays. Study of stably derepressed Pseudomonas aeruginosa strains from experimental endocarditis.

We studied penicillin-binding protein (PBP) profiles of two Pseudomonas aeruginosa strains stably derepressed for constitutive, type Id beta-lactamase overproduction. Substantial levels of beta-lactamase were found to be strongly associated with isolated inner membranes of these two strains, as well as from a plasmid-encoded, TEM-2 beta-lactamase-producing control strain of P. aeruginosa. The inner membrane-associated beta-lactamase resulted in significant decreases in the intensity on autoradiographs of PBPs labelled with 35S-penicillin, yielding spurious PBP profiles for these strains. Inner membrane beta-lactamases could be substantially removed by a sonication-ultracentrifugation step, producing the bona fide PBP profiles.

Animals↗

Induction of adenosine 3',5'-monophosphate-dependent protein kinase subunits during adipogenesis in vitro.

Fatty acid metabolism in adipocytes is known to be regulated by the intracellular transducer cAMP. This study was undertaken to determine the temporal and hormonal regulation of cAMP-dependent protein kinase during the differentiation of preadipocyte mesenchymal cells to adipocytes. For this we have used a stable cell line (TA1) in which the undifferentiated preadipocyte acquires adipocyte functions and morphology after growth to confluence. We observed that synthesis of type I and II cAMP-dependent protein kinases was induced during the adipogenic conversion of growth-arrested TA1 cells. In preconfluent cells, neither mRNAs encoding regulatory subunits (RI, RII beta) and catalytic subunit (C alpha) nor the peptides themselves were detectable. Within several days of growth arrest at high cell density, mRNAs for RI, RII beta, and C alpha were detectable in total RNA extracted from cell populations. The subunits themselves were detectable in some, but not all, of the cells by indirect immunofluorescence. Immunoblotting of cytosolic extracts indicated that RI and the beta-isoform of RII (mol wt = 52,000) were expressed in these cells. Analysis of subunit presence or absence in single cells by immunofluorescence also indicated that kinase subunit expression preceded the accumulation of lipid droplets within the cells. Further, the subunits were predominantly associated with a reticular cytoplasmic structure (Golgi apparatus?) abutting the nucleus. Conversion of TA1 cells to adipocytes can be accelerated by indomethacin (125 microM) or dexamethasone (1 microM) treatment, compounds that also enhanced the accumulation of RII beta and C alpha mRNAs. Within 2-3 days of addition of indomethacin to confluent cultures, RII beta message content is increased about 20-fold, and protein content is increased about 5-fold relative to those in untreated cultures. C alpha mRNA content is increased about 5-fold relative to that in untreated cells. The response to dexamethasone requires 6-7 days, and changes in RII beta message levels were the most pronounced. We also observed the induction of mRNAs for the functionally relevant mRNA lipoprotein lipase in indomethacin-treated cells. In addition to this apparent transcriptional regulation of kinase subunit expression, we provide evidence for regulation at the posttranscriptional level. Within a differentiated culture, there exist stem cells that can be selected, will repopulate the dish, and will again differentiate into adipocytes upon growth arrest at high cell density. In preconfluent populations of these stems cells, unlike the preconfluent TA1 cells originally plated, both RII beta and C alpha messages were present.(ABSTRACT TRUNCATED AT 400 WORDS)

8-Bromo Cyclic Adenosine Monophosphate↗

Structure and evolution of somatostatin genes.

A bovine pancreatic preprosomatostatin cDNA clone has been isolated and sequenced. Although it encodes a predicted 116 amino acid preprosomatostatin that is very similar in primary structure to those deduced from other mammalian preprosomatostatin cDNAs, there are some differences in amino acid composition. Hybridization of this clone to Northern blots of fetal bovine pancreatic poly(A+) RNA reveals a mRNA of 700 nucleotides. Evolution of the preprosomatostatin genes was studied by statistical analysis of anglerfish, catfish, bovine, rat, and human cDNA sequences. The results suggest that the two somatostatin genes present in both anglerfish and catfish were the result of a gene duplication event in a common ancestor of anglerfish and catfish.

Animals↗

Rattlesnake bites in southern California and rationale for recommended treatment.

Rattlesnake bite is most common in young men who often are intoxicated and have purposely handled a venomous snake. The incidence of bites is highest in the spring and early summer months, and they most often occur in the afternoon. The hands and feet only are involved in 95% of all bites. First-aid therapy should be limited to splinting the extremity and transporting the victim to a medical facility. Definitive therapy is administering antivenin (Crotalidae) polyvalent intravenously in adequate initial doses and repeating every two hours until the venom is completely neutralized. Serum sickness usually follows all doses of more than five vials but is readily controlled by giving corticosteroids. Bites are avoided by protecting the hands and feet, not handling venomous snakes, and using utmost caution while in the snakes' habitat.

Adolescent↗

A new microvascular model for noninvasive nuclear magnetic resonance spectroscopy of the transplanted kidney.

The cellular biology of graft rejection is not well understood. Phosphorus-31 nuclear magnetic resonance (31P NMR) spectroscopy is a new noninvasive technique for the measurement of intracellular pH and relative amounts of phosphorus-containing compounds, such as adenosine triphosphate (ATP), inorganic phosphate, phosphocreatine, and sugar phosphates, in any tissue from which a clear signal can be obtained. Biochemical analysis of such precision, without the need for tissue destruction, represents an unusual opportunity for analysis of in vivo cellular metabolism under varying conditions, including graft rejection. 31P NMR study of intra-abdominal viscera has not been feasible in most laboratories without laparotomy because of signal interference from abdominal wall muscle. In this study, to eliminate this interference, a rat kidney was transplanted to the groin, where it could be serially studied without overlying skeletal muscle. This new vascular technique was successful in 11 of 11 attempts and maintained normal serum creatinines in 10 chronic survivors after removal of both native kidneys. The 31P NMR spectroscopic signal from the groin kidney is clear and highly reproducible. This new microvascular model will make it possible to carry out noninvasive long-term spectroscopic studies that could potentially identify a reliable marker for allograft rejection.

Adenosine Triphosphate↗

The complete amino acid sequence of proapolipoprotein A-I of chicken high density lipoproteins.

The complete amino acid sequence of proapolipoprotein (proapo) A-I of chicken high density lipoproteins was determined by sequencing overlapping peptides produced by trypsin, S. aureus V8 protease, and cyanogen bromide cleavage. There are 240 amino acid residues in mature chicken apoA-I. By direct sequence analysis of a cyanogen bromide peptide, we also determined the sequence of a 6-amino-acid prosegment which is present at approx. 10% the molar amount of the mature peptide in chicken plasma. Sequence comparison among apoA-I from chicken, human, rabbit, dog and rat, and secondary structure analysis indicate that while the degree of sequence homology is only moderate (less than 50% between chicken and man), there is good conservation of apoA-I secondary structure, especially in the N-terminal two-thirds of the protein in these widely separated species.

Amino Acid Sequence↗