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Biomedical subjects

D L Rainwater

Publications and source records attributed to D L Rainwater.

18 recordsLinked to original sources

Dramatic differences in lipoprotein composition among gray short-tailed opossums (Monodelphis domestica) fed a high cholesterol/saturated fat diet.

Lipoproteins of gray short-tailed opossums (Monodelphis domestica) were characterized to determine the basis of differences among individuals in response to a challenge diet enriched in saturated fat and cholesterol. Animals were selected from two phenotypic groups (high and low plasma cholesterol response to the challenge diet). Half of the animals in each group were fed basal diet (8.1% fat and 0.04% cholesterol by weight), and the remainder were fed challenge diet (17.7% fat and 0.61% cholesterol). The plasma cholesterol values of both groups fed the basal diet and of low responders fed the challenge diet were similar. In addition, both very-low-density and low-density lipoproteins (VLDL+LDLs) and high-density lipoproteins (HDLs) were similar among these groups in density and in lipid and apolipoprotein compositions. In contrast, the high responders fed the challenge diet showed a 7-fold increase in total plasma cholesterol, which was primarily a consequence of increases in the VLDL+LDL cholesterol component defined by heparin-Mn precipitation. Moreover, the VLDL+LDLs were more heterogeneous and were characterized by decreased densities. The VLDL+LDLs of the high-responding group had higher levels of apolipoprotein (apo) B and apoE than the other groups. Plasma apoB concentrations estimated by dot blotting techniques increased by 3-fold, and apoE by 44-fold in the high responding group. Understanding the factor(s) mediating responder phenotype in this new model species will expand our knowledge of the regulation of lipemic response to diet.

Animals

Distribution of specific apolipoproteins determined by immunoblotting of baboon lipoproteins resolved by polyacrylamide gradient gel electrophoresis.

A method for the quantitative assessment of apolipoprotein distributions among baboon serum lipoproteins is described. The method combines the precise and reproducible separation of lipoproteins by polyacrylamide gradient gel electrophoresis with the specificity of immunoblotting. The method permits the measurement of distributions for any apolipoprotein for which there are antibodies available. Radioactive secondary antibodies are used to expose X-ray film, and distributions are determined by densitometry. Absorbance is linearly related to both antigen and antibody concentrations. The method is reproducible, with the mean coefficient of variation calculated to be 0.118, and has a high repeatability (r2 = 0.97). The immunoblotting method can be employed to measure the fine details of lipoprotein phenotypes as they are influenced by genotype and environment.

Animals

Purification and characterization of an unusually large fatty acid synthase from Mycobacterium tuberculosis var. bovis BCG.

Fatty acid synthase was purified from Mycobacterium tuberculosis var. bovis BCG. The method developed gave a 23% yield of the synthase and also yielded purified mycocerosic acid synthase. The fatty acid synthase is of unusually large size and composed of two 500-kDa monomers. The amino acid composition of the two synthases was not identical; the N-terminus of the fatty acid synthase was blocked, whereas that of the mycocerosic acid synthase was not. Western blot analysis of crude mycobacterial extracts with polyclonal antibodies prepared against each synthase showed a single band in each case with no cross-reactivity with the other synthase. Fatty acid synthase required both NADH (Km, 11 microM) and NADPH (Km, 14 microM). The Km for acetyl-CoA and malonyl-CoA were 5 and 6 microM, respectively. Fatty acids were released from the synthase as CoA esters. A bimodal distribution of fatty acids was obtained at around C16 and C26. The primer utilization also reflects the de novo synthesis and elongation capabilities of the enzyme; acetyl-CoA was the preferred primer but CoA esters up to C8 but not C12 and C14 could serve as primers, whereas C16 was readily used as a primer for elongation. Addition of CoA and CoA ester-binding oligosaccharides caused enhanced release of C16. Since this mycobacterial fatty acid synthase is twice as large as other multifunctional fatty acid synthases, it is tempting to suggest that this synthase represents a head to tail fusion of two fatty acid synthase genes coding for a double size protein with one-half producing C16 acid and the other elongating the C16 acid to a C26 acid. The monomer of fatty acid synthase from M. smegmatis was immunologically similar and equal in size to the synthase from M. tuberculosis.

Acetyl Coenzyme A

Lack of change of lipoprotein (a) concentration with improved glycemic control in subjects with type II diabetes.

Recently, lipoprotein (a) [Lp(a)] has been identified as a major risk factor for coronary heart disease. No data are available on the effect of improved metabolic control on plasma Lp(a) concentrations in subjects with type II diabetes mellitus, a group at high risk for coronary heart disease. We examined the effects of improved metabolic control on plasma lipid and lipoproteins and Lp(a) concentrations in 12 subjects before and after 21 days of tight metabolic control. Glycosylated hemoglobin declined from 8.9% to 6.9% (P less than .002). Lp(a) increased slightly from 21.4 to 25.8 mg/dL (P = .119) with improved metabolic control. There were no significant differences in total, low-density, or high-density cholesterol values, although the decline in triglyceride concentrations was statistically significant. The distribution of apolipoprotein (a) [apo (a)] isoforms in subjects with type II diabetes mellitus was not unusual and the apo (a) isoform patterns did not change with improved metabolic control. Although the number of subjects was small, there was no decline in Lp(a) concentrations with improved control and thus the effect of glycemic control on Lp(a) concentrations may be much smaller in type II than in type I diabetes. These results suggest that diabetic subjects with elevated Lp(a) concentrations should have intensive management of conventional cardiovascular risk factors such as high-density lipoprotein cholesterol (HDLC), low-density lipoprotein cholesterol (LDLC), and blood pressure.

Blood Glucose

A DNA polymorphism for LCAT is associated with altered LCAT activity and high density lipoprotein size distributions in baboons.

A polymorphic Pvu II site was mapped to intron 5 of LCAT, the gene encoding baboon lecithin: cholesterol acyltransferase (LCAT). In a study of 83 baboons, heterozygous baboons (Pv1/Pv2) had significantly higher LCAT enzyme activity levels than did baboons homozygous for the more common allele (Pv1/Pv1). LCAT genotype explained 6% of the total variation in LCAT enzyme activity. To test for allelic effects on cholesterol metabolism, we compared serum concentrations of high density lipoprotein (HDL) cholesterol and apolipoprotein A-I (apo A-I). We also compared distributions of cholesterol and apo A-I among three HDL size classes (HDL1, HDL2, and HDL3). All measurements were obtained for each baboon after long-term feeding of a basal diet low in cholesterol and fat and again after 7 weeks on an atherogenic diet. Heterozygous baboons had significantly lower serum levels of total cholesterol than did homozygotes. In addition, we detected significant effects of LCAT genotype on size distributions of HDL cholesterol and apo A-I on both diets but did not detect any genotype-by-diet interaction. Heterozygotes had increased amounts of cholesterol and apo A-I in HDL3 particles and lower amounts of cholesterol and apo A-I in the larger HDL size classes by comparison with homozygotes. Overall, the LCAT polymorphism explained a significant proportion of total variation in cholesterol (4-10%) and apo A-I (13%) distributions on both diets. Thus, the results indicate that the LCAT polymorphism is associated with significant differences in LCAT enzyme activity and with alterations in HDL compositions.

Animals

Production of polyacrylamide gradient gels for the electrophoretic resolution of lipoproteins.

We describe a protocol to cast nondenaturing polyacrylamide gradient gels (SFBR3/31) for the size resolution of lipoproteins. The protocol yields gels with minimal lot-to-lot variation in length and electrophoretic properties. Absorbance profiles of cholesterol-stained lipoproteins in baboon sera were used to estimate the relative amounts of stain in four lipoprotein size classes (VLDL+LDL, HDL1, HDL2, and HDL3). When compared with gels from a commercial source, the SFBR3/31 gels gave very similar results in terms of precision (coefficients of variation) and of estimated amounts of lipoproteins in the four size classes. In other studies, we estimated peak diameters of protein-stained human lipoproteins after calibrating the gels with size standards. Peak diameters estimated using SFBR3/31 gels were highly correlated (r2 = 0.99, n = 33) with those estimated using gels from a commercial source. We conclude that the protocol reliably produces gradient gels that are suitable for the analysis of lipoprotein phenotypes.

Acrylic Resins

Linkage of plasminogen (PLG) and apolipoprotein(a) (LPA) in baboons.

Four allelic forms of serum plasminogen (PLG) were detected in baboons (Papio hamadryas Linneaus 1758) by isoelectric focusing and were determined to be inherited as autosomal codominant traits. Linkage analysis of data from 179 progeny and their parents revealed that PLG is tightly linked (lod score = 30.20) to the gene encoding apolipoprotein(a) (LPA), as in humans. No recombinant individuals were identified. This is the first linkage detected between PLG and LPA in any species other than humans and is the first genetic linkage identified in a nonhuman primate species by family studies.

Alleles

Decrease of lipoprotein(a) with improved glycemic control in IDDM subjects.

OBJECTIVE: Recently, lipoprotein(a) [Lp(a)] has been identified as a major risk factor for coronary heart disease. There are few data available on the influence of metabolic control on plasma Lp(a) concentrations in subjects with insulin-dependent diabetes mellitus (IDDM), a group at high risk for coronary heart disease. RESEARCH DESIGN AND METHODS: We examined the effects of improved metabolic control on plasma lipid and lipoproteins and Lp(a) concentrations in 12 subjects before and after 21 days of tight metabolic control. RESULTS: Glycosylated hemoglobin declined from 8.4 to 6.9% (P less than 0.001), and Lp(a) declined from 29.7 to 27.1 mg/dl (P = 0.022). There were no significant differences in total, low-density lipoprotein, or high-density lipoprotein cholesterol, although the decline in triglyceride concentrations were borderline statistically significant. The distribution of apolipoprotein(a) isoforms in IDDM patients was not unusual, and the apolipoprotein(a) isoform phenotypes did not change with improved metabolic control. Lp(a) concentrations were also significantly higher than in a population-based control group of nondiabetic subjects from the San Antonio Heart Study. CONCLUSIONS: Although the number of subjects was small and the degree of improvement in metabolic control was modest, the results suggest that improved metabolic control may decrease the risk of coronary heart disease mediated by Lp(a) in IDDM.

Adult

Variation in Lp(a) levels and apo(a) isoform frequencies in five baboon subspecies.

Elevated levels of lipoprotein (a) [Lp(a)] are positively correlated with risk of cardiovascular disease and are thought to be a function of allelic variation in apo(a), the unique protein component of Lp(a). In this article we examine subspecies variation in Lp(a) levels and apo(a) isoforms in the baboon. Breeding populations of the five subspecies (Papio hamadryas hamadryas, P.h. cynocephalus, P.h. ursinus, P.h. papio, and P.h. anubis) of common long-tailed baboons are maintained at the Southwest Foundation for Biomedical Research. Serum samples were obtained from at least 20 unrelated animals of each subspecies. Twelve different size isoforms (including the null) of apo(a) were identified across the five subspecies. These isoforms act as alleles; a maximum likelihood method was used to obtain the allele frequencies. Significant differences in apo(a) isoform frequencies were found between subspecies (chi 2(44) = 163.10, p less than 0.0001). Quantitative levels of Lp(a) also differed among subspecies. We evaluated the correlation between genetic distances calculated using the quantitative Lp(a) levels and the apo(a) isoform data. Observed genetic relationships among the subspecies are consistent with the present-day geographic distribution and information from other marker protein systems. The findings indicate that the marker apo(a) may have great utility in both evolutionary and biomedical studies.

Animals

Impaired plasma cholesteryl ester transfer with accumulation of larger high density lipoproteins in some families of baboons (Papio sp.).

Baboons from some families have a higher concentration of plasma high density lipoproteins (HDL) on a chow diet and accumulate large HDL (HDL1) when challenged with a high cholesterol and high saturated fat (HCHF) diet. HDL1 from high HDL1 animals contained more (1.5-fold) cholesteryl ester than HDL (HDL2 + HDL3) from high or low HDL1 animals. HDL from high HDL1 baboons had lower triglyceride content than that from low HDL1 baboons. HDL3 or HDL labeled with [3H]cholesteryl linoleate was incubated with entire lipoprotein fraction (d less than 1.21 g/ml) or very low density lipoprotein + low density lipoprotein (VLDL + LDL) (d less than 1.045 g/ml) and with lipoprotein-deficient serum (LPDS), and the radioactive cholesteryl ester and mass floating at d 1.045 g/ml (VLDL + LDL) after the incubation was measured. The transfer of cholesteryl esters from either HDL or HDL3, prepared from plasma of high HDL1 animals fed chow or the HCHF diet, was slower than the transfer from either HDL or HDL3 of low HDL1 animals, regardless of the source of transfer activity or the ratio of LDL:HDL-protein used in the assay. Addition of HDL from high HDL1 baboons into an assay mixture of plasma components from low HDL1 baboons decreased the transfer of cholesteryl ester radioactivity and mass from HDL to VLDL and LDL. In addition to HDL, a fraction of intermediate density lipoprotein (IDL) and denser HDL were also effective in inhibiting the transfer. These observations suggest that accumulation of HDL1 in high HDL1 baboons fed an HCHF diet is associated with a slower transfer of cholesteryl esters from HDL to LDL.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Production of lipoprotein(a) by primary baboon hepatocytes.

Primary baboon hepatocytes were cultured in a serum-free medium formulation that permitted the analysis of lipoprotein(a) (Lp(a] production by the cells. The hepatocytes were determined to synthesize Lp(a) on the basis of the following observations: (1) the culture medium reacted in an ELISA designed for detection of baboon Lp(a) in serum samples; (2) the Lp(a)-specific protein, apo(a), was detected in the culture medium by immunoblotting techniques; (3) the unique protein structure of Lp(a) was demonstrated (i.e., association of apo(a) with apoB via interchain disulfide bonds to form apoLp(a]; and (4) the Lp(a) proteins occurred in the medium at a density of about 1.05 g/ml when subjected to density gradient ultracentrifugation. De novo synthesis of Lp(a) by cultured hepatocytes was demonstrated by incorporation of [35S]cysteine. Lp(a) was produced by the hepatocytes throughout a 20 day culture period. Finally, apo(a) isoform patterns in the hepatocyte culture medium and the hepatocyte donors' serum were indistinguishable.

Animals

Apolipoprotein(a) (Apo(a)) glycoprotein isoforms result from size differences in Apo(a) mRNA in baboons.

Like humans, baboons possess serum lipoprotein(a) that contains apolipoprotein(a) (apo(a], and baboon apo(a) also occurs in distinguishable glycoprotein isoforms. To investigate the molecular basis for isoform size variation, we isolated hepatic RNA from baboons possessing different apo(a) isoforms for Northern blot analyses with rhesus apo(a) cDNA probes. In a survey of 22 baboons, we detected a variety of sizes of apo(a) transcripts (5.2-11.2 kilobases) that corresponded with relative mobilities and numbers of serum apo(a) isoforms. In unrelated baboons possessing apo(a) isoforms of similar mobilities, we detected apo(a) transcripts with similar mobilities. In related baboons possessing apo(a) isoforms that were identical by descent, apo(a) transcripts were also identical in size. Using data from 22 baboons included in this study, we compared the sizes of 20 apo(a) isoforms and corresponding transcripts. Linear regression analysis established a highly significant correlation (p less than 0.001) between estimated apo(a) transcript size and glycoprotein mass (r2 = 0.996). From these results, we conclude that apo(a) glycoprotein isoforms are due to structural differences in apo(a) transcripts. However, we also noted exceptions to correspondence between apo(a) transcripts and isoforms that suggest the action of additional post-transcriptional control of serum apo(a) levels.

Alleles

Hereditary and dietary effects on apolipoprotein[a] isoforms and Lp[a] in baboons.

Baboons possess Lp[a] that is similar to human Lp[a], including the presence of the unique protein, apo[a]. Baboon apo[a] occurred in at least nine isoforms distinguishable by size. Isoforms were resolved by 3-12% polyacrylamide gradient gel electrophoretic separation of serum proteins, and were detected with baboon apo[a]-specific antibodies. Thirty one different apo[a] isoform phenotypes were detected in a population of 165 unrelated baboons. Identical isoform phenotypes were observed in different samples from individual baboons, and isoform phenotypes were unaffected by changes in diet. In one experiment, 16 baboons were fed a series of five diets differing in amounts of cholesterol and saturated or unsaturated fats. There was no significant effect of diet on serum Lp[a] levels. In another group of baboons (n = 70) controlled for age and dietary history, enrichment of the diet with cholesterol and saturated fat caused a small, but significant (P less than 0.005), increase (means = 0.6 mg/dl) in serum Lp[a] concentration. Analysis of two large sire families suggested that apo[a] isoform patterns and serum Lp[a] concentrations were inherited. Putative parental alleles responsible for specific isoform bands appeared to segregate randomly. Heritability (h2) of serum Lp[a] concentration was estimated to be 0.95 +/- 0.04. We conclude that apo[a] isoform phenotypes and serum Lp[a] concentrations are inherited, and that Lp[a] concentrations are only slightly influenced by diet.

Animals

The baboon gene for apolipoprotein A-I: characterization of a cDNA clone and identification of DNA polymorphisms for genetic studies of cholesterol metabolism.

We have isolated and sequenced a baboon apolipoprotein A-I (ApoA-I) clone from a liver cDNA library using a human cDNA hybridization probe. This baboon cDNA contains the entire ApoA-I coding region (801 bp, 267 aa), a 3' untranslated region, and a poly(A)tail. Among comparisons with apoAI sequences from other species, the baboon cDNA is most similar to that of the cynomolgus macaque (99.2% homologous) and least similar to the rat sequence (72.6% homologous). A high frequency of nonsynonymous substitutions are observed by alignment of baboon and human apoAI cDNAs, but comparisons of hydrophilicity profiles show that protein structure is conserved by substitutions of aa with similar properties. A polymorphic PstI cleavage site was identified by Southern blot analysis and subsequently mapped to the 5' end of the baboon apoAI gene. To identify effects of apoAI allelic variation on cholesterol metabolism, we used immunoblotting to compare the distributions of ApoA-I among lipoprotein size classes in baboons from each genotype under basal and atherogenic diets. We observed an increase of ApoA-I in high density lipoprotein (size class 1) particles after atherogenic diets in homozygotes for one allele, as compared to slight decreases in the other genotypes.

Amino Acid Sequence

Characterization of very-low-density lipoproteins isolated from baboons, and fractionated using heparin-Sepharose chromatography.

Plasma very-low-density lipoproteins (VLDL) (d less than 1.006 g/ml) were purified from baboons by repeated ultracentrifugation. The weight composition of VLDL purified from these animals was 59% triacylglycerol, 17% phospholipid, 13% cholesterol plus cholesteryl esters, and 11% protein. When purified VLDL was fractionated using heparin-Sepharose chromatography, an average of 33% of the total recovered proteins were unbound in a saline solution, and 67% (range, 31 to 92%) were bound by the column, but could be eluted with 3 M NaCl. Recoveries of starting protein and the major classes of lipids in the two fractions were 70-80%. The two fractions differed in both apolipoprotein and lipid compositions. Analysis of sodium dodecyl sulfate-treated apolipoproteins using 3-21.5% acrylamide gradient gel electrophoresis indicated that both VLDL fractions contained apolipoprotein B, but only the bound fraction possessed significant amounts of apolipoprotein E. On a weight percent basis, the apolipoprotein-E-rich (bound) VLDL fraction contained significantly more cholesterol and cholesteryl esters (P less than 0.001) and less phospholipids (P less than 0.005) compared to the apolipoprotein E-poor (unbound) VLDL. Apolipoprotein-E-poor VLDL had shorter retention times than E-rich VLDL upon gel filtration chromatography, suggesting a larger size. There was no significant correlation between plasma levels of apolipoprotein-E-poor VLDL and levels of apolipoprotein B. These results demonstrate that baboons possess VLDL which can be separated into apolipoprotein-E-poor and E-rich fractions and these fractions differ in protein and lipid composition and in size.

Animals

Immunochemical characterization and quantitation of lipoprotein (a) in baboons. Development of an assay depending on two antigenically distinct proteins.

We have raised specific antibodies against the protein component of baboon lipoprotein (a) (Lp(a]. Apolipoprotein (apo) Lp(a) is a very large protein which separates into two distinct proteins, apo B and apo (a), when 2-mercaptoethanol is included during sample treatment for sodium dodecyl sulfate-electrophoresis. The antibodies were specific for baboon apo (a) and apo B. The presence of the two distinct antigens in the lipoprotein permitted the development of an enzyme-linked immunosorbent assay that was specific for Lp(a) particles in serum. The assay could detect less than 1 ng of Lp(a) protein per well and was useful in the range of 1-9 ng. The assay was specific for Lp(a) and did not respond to other lipoproteins, such as low density lipoprotein. Lp(a) could be accurately quantitated in serum frozen at -80 degrees C in plastic tubing segments. Using the Lp(a) assay, the mean serum level of 80 unrelated baboons was 4.7 mg/dl, with the distribution skewed toward the lower levels. These data further support the value of the baboon as a model of the atherogenic lipoprotein Lp(a).

Animals

Characterization of an unusual lipoprotein similar to human lipoprotein a isolated from the baboon, Papio sp.

An unusual lipoprotein was detected and purified from the blood of some members of a large colony of baboons, Papio sp. This lipoprotein was found to be similar to human lipoprotein a in all respects and is therefore termed lipoprotein a. Baboon lipoprotein a had a density of 1.052 g/ml and was located between low- and high-density lipoproteins in a density gradient ultracentrifugation. However, despite its greater density, baboon lipoprotein a was larger than low-density lipoprotein, based on gradient gel electrophoresis and gel filtration. The lipoprotein contained a very large apolipoprotein (apolipoprotein-lipoprotein a) which was found to consist of an apolipoprotein B linked to another protein called apolipoprotein a by a disulfide bridge(s). In all these characteristics, baboon lipoprotein a was similar to human lipoprotein a.

Animals

Fatty acid biosynthesis in Mycobacterium tuberculosis var. bovis Bacillus Calmette-Guérin. Purification and characterization of a novel fatty acid synthase, mycocerosic acid synthase, which elongates n-fatty acyl-CoA with methylmalonyl-CoA.

A crude extract from Mycobacterium tuberculosis var. bovis Bacillus Calmette-Guérin was previously shown to incorporate methylmalonyl-CoA into mycocerosic acids, exemplified by 2,4,6,8-tetramethyloctacosanoic acid, and malonyl-CoA into n-fatty acids (Rainwater D. L., and Kolattukudy, P. E. (1983) J. Biol. Chem. 258, 2979-2985). The presence of several fatty acid synthases with differences in substrate preference and product chain length was detected in the crude extract of M. tuberculosis var. bovis. Among them was a mycocerosic acid synthase which was purified to homogeneity using anion-exchange chromatography, gel filtration, affinity chromatography, and hydroxylapatite chromatography. This fatty acid synthase elongated long-chain fatty acyl-CoA primers using methylmalonyl-CoA and NADPH to produce multimethyl-branched mycocerosic acids. The enzyme was specific for methylmalonyl-CoA and would not incorporate malonyl-CoA into fatty acids. It elongated n-C6 to n-C20 CoA esters to generate primarily the corresponding tetramethyl-branched mycocerosic acids. Exogenous [1-14C]acyl-CoA and trideuteromethylmalonyl-CoA were incorporated into the multimethyl-branched fatty acids. Dodecyl sulfate electrophoresis showed that the enzyme had a molecular weight of 238,000, whereas gel filtration showed a native molecular weight of 490,000, indicating that the enzyme is composed of two monomers of identical molecular weight. The enzyme contained an acyl carrier protein-like segment as indicated by incorporation of [1-14C] pantothenate into the 238-kDa protein and production of 1 mol of taurine/mol of the monomer upon hydrolysis of performic acid-oxidized enzyme. It is concluded that the mycocerosic acid synthase is a multifunctional enzyme similar to the well-characterized multifunctional fatty acid synthases except for the substrate specificity.

Acyl Coenzyme A