Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “RABBITS”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Quantification of plasma lipids and apolipoproteins in British Halflop rabbits. A comparison between normocholesterolemic rabbits, hypercholesterolemic rabbits (modified WHHL rabbits) and rabbits fed an atherogenic diet.

We have established isolation methods and developed electroimmunoassays for rabbit apolipoprotein A-I (apo A-I), apo B, apo C-III and apo E. The assays were used to characterize a hyperlipidemic strain of the British Halflop rabbits (BHL rabbits), obtained after cross-breeding with WHHL rabbits and referred to as modified WHHL rabbits, and to investigate the changes in the apolipoprotein levels induced by feeding normal BHL rabbits an atherogenic diet (0.25% cholesterol and 3% coconut oil). The modified WHHL rabbits were characterized by increased levels of apo B, apo C-III and apo E as well as cholesterol, phospholipids and triacylglycerol as compared to chow-fed BHL rabbits, while the apo A-I levels were only half of those found in the chow-fed animals. The modified WHHL rabbits had virtually no low density lipoprotein (LDL) receptor activity and a low fractional catabolic rate (FCR) of LDL. These results indicate that the modified WHHL rabbit has the homozygous form of the LDL receptor deficiency. The BHL rabbits fed the atherogenic diet showed increased levels of cholesterol, triacylglycerol, apo B, apo C-III and apo E, as compared to those of the chow-fed BHL rabbits. The apo E and apo C-III reached levels in the range of or even higher than those of the modified WHHL rabbits. The apo A-I levels on the other hand did not differ from those of the chow-fed rabbits. Feeding an atherogenic diet led to a decrease in the FCR of LDL to a level similar to that found in the modified WHHL rabbits.

Animals↗

Establishment of specific pathogen-free rabbit colonies with limited-flora rabbits associated with conventional rabbit flora, and monitoring of their cecal flora.

In the present study we attempted to establish specific-pathogen-free (SPF) rabbit breeding colonies with two groups of limited-flora (LF) rabbits, both ex-germfree rabbits, and their offspring. Two groups of LF rabbits associated with cecal flora of conventional (CV) rabbits produced in a previous study [Exp. Animals, submitted], were transferred to individual barrier rooms and some of the LF rabbits were accommodated in isolators to maintain the basic flora for SPF rabbits. The composition of the cecal flora of LF rabbits was stable for a long period; bacteroides remained predominant and clostridia dominant. From the SPF rabbits, different types of bacteria, e.g., enterobacteriaceae and streptococci, which could not be isolated in the isolator were detected at a low population level at an early stage in the establishment of the SPF colonies, but the basic composition of the cecal flora was mainly bacteroidaceae and clostridia and did not change over a long period, and the floral composition became similar to that of CV rabbits. The fertility and weaning rates of the SPF rabbits were satisfactory for a SPF rabbit colony. In addition, these SPF colonies were free of more than one year rabbit-specific pathogens.

Animals↗

Idiotypy of rabbit antibodies. I. Comparison of idiotypy of antibodies against Salmonella typhi with that of antibodies against other bacteria in the same rabbits, or of antibodies against Salmonella typhi in various rabbits.

Sera of rabbits immunized against Salmonella typhi have been studied for the idiotypy of certain of their components, i.e., the property of these components to possess an antigenic specificity which is different in individual rabbits, and which varies with the antigens against which these rabbits have been immunized. The reagent used (precipitating anti-idiotypic sera) have been prepared by injecting rabbits with bacteria agglutinated by anti-S. typhi sera (immunizing sera) as was done in the first observations by the authors of the phenomenon in the rabbit. These first observations have been confirmed and extended. In contrast to allotypy, the anti-idiotypic sera precipitate the corresponding immunizing sera, but not the sera taken in the immunizing rabbits prior to their immunization against S. typhi, nor the immunizing sera absorbed with the somatic antigen of S. typhi, demonstrating that idiotypes are antibodies. The idiotypic specificities of the antibodies of one rabbit against S. typhi are not detected in the antibodies of the same rabbit against another noncross-reacting Salmonella (S. tranoroa) and vice versa; nor are they detected in the anti-pneumococcal antibodies of the same rabbit. Each anti-idiotypic serum fails to precipitate anti-S. typhi sera of rabbits other than the immunizing one except for certain extremely faint reactions, the significance of which has not been established. The idiotypic specificities of anti-S. typhi antibodies of three rabbits were not found in anti-S. typhi antibodies of their parents. This lack of a sign of hereditary transmission of idiotypic specificities contrasts with allotypy. The apparent role of random chance in the determinism of the idiotypic patterns or of the idiotypic determinants has been discussed. Unless it were admitted that antibodies with similar functions do not exist in different individuals, idiotypy apparently adds an order of magnitude to the antibody variability which had been previously envisaged. In one given individual, the heterogeneity of the idiotypic specificities seems to be less extended than that of the antibody functions. The possible relationships between these two levels of molecular variability and between the corresponding levels of cellular variability have been discussed.

Animals↗

Rabbit monoclonal antibodies: generating a fusion partner to produce rabbit-rabbit hybridomas.

During the last 15 years several laboratories have attempted to generate rabbit monoclonal antibodies, mainly because rabbits recognize antigens and epitopes that are not immunogenic in mice or rats, two species from which monoclonal antibodies are usually generated. Monoclonal antibodies from rabbits could not be generated, however, because a plasmacytoma fusion partner was not available. To obtain a rabbit plasmacytoma cell line that could be used as a fusion partner we generated transgenic rabbits carrying two transgenes, c-myc and v-abl. These rabbits developed plasmacytomas, and we obtained several plasmacytoma cell lines from which we isolated hypoxanthine/aminopterin/thymidine-sensitive clones. One of these clones, when fused with spleen cells of immunized rabbits, produced stable hybridomas that secreted antibodies specific for the immunogen. The hybridomas can be cloned and propagated in nude mice, and they can be frozen without change in their ability to secrete specific monoclonal antibodies. These rabbit-rabbit hybridomas will be useful not only for production of monoclonal antibodies but also for studies of immunoglobulin gene rearrangements and isotype switching.

Animals↗

[Investigations on the mechanism(s) of the production of anti-thyroid hormone antibodies 3:Production of anti-rabbit thyroglobulin and anti-thyroid hormone antibodies in rabbits immunized with rabbit thyroglobulin].

Recently, the presence of anti-thyroid hormone antibodies has been reported in many cases of thyroidal and non-thyroidal disorders. In order to elucidate the immunological mechanism(s) in the production of anti-thyroid hormone antibodies, we immunized outbred rabbits and mice with different H-2 and Igh allotypes with human thyroglobulin (HTg) and showed that the production of both anti-HTg and anti-thyroid hormone antibodies is genetically controlled. In our present study, rabbit thyroglobulin (RTg) was purified from 4 rabbit thyroid glands and was immunized in two rabbits (RG-I, RG-2). The two rabbits were then serially bled and tested for the presence of anti-RTg and anti-thyroid hormone antibodies. In both rabbits, the production of anti-RTg and anti-thyroid hormone antibodies was observed. The binding constant of anti-RTg, anti-T4 and anti-T3 antibodies in RG-1 were 6 X 10(9)M-1, 9.5 X 10(8)M-1, 4.6 X 10(8)M-1, and those in RG-2 were 6.5 X 10(9)M-1, 5.6 X 10(8)M-1, 1.6 X 10(8)M-1, respectively. These results further strengthen the possibility that the antigen of the anti-thyroid hormone antibodies observed in various disorders so far reported is the HTg molecule. In addition, the fact that anti-RTg antibodies had a higher binding constant and capacity than anti-thyroid hormone antibodies suggests that the antigenic site(s) of RTg, which contains thyroid hormones, is not highly immunogenic.

Animals↗

In vitro studies of the rabbit immune system. VI. Rabbit anti-mouse cytotoxic T effector cells are inhibited by anti-rabbit T cell serum in the absence of complement.

Xenogeneic rabbit anti-mouse cell-mediated cytotoxic activity could be generated by culturing lymphoid cells from mesenteric lymph nodes (MLN), spleen, or peripheral blood of rabbits primed 2 to 8 weeks earlier with mouse tumor or spleen cells. MLN cells, which provided the best source of activity after being cultured with 5 to 10 X 10(6) mitomycin C-treated mouse spleen cells for 4 to 6 days, produced 30 to 90% specific isotope release after 4 to 7 hr incubation with 15Cr-labeled tumor target cells. Xenogeneic cytotoxic activity was primarily H-2 specific and could not be blocked by immune complexes but was abrogated by treatment with goat anti-rabbit thymocyte serum plus complement (ATS + C) before or after culture. Therefore, the activity appeared to be mediated by cytotoxic T lymphocytes (CTL). Furthermore, ATS without C abrogated cytotoxic activity when included in the CTL assay at concentrations of 5 to 15 microliter/10(7) effector cells. The inhibitory activity of ATS was directed to the rabbit effector population and could be absorbed completely by rabbit thymocytes. Antisera to mouse T cells with comparable cytolytic activity in the presence of C did not inhibit murine allogeneic CTL.

Animals↗

Comparative metabolism and distribution of rabbit heparin cofactor II and rabbit antithrombin in rabbits.

The metabolic characteristics of two rabbit plasma thrombin inhibitors, heparin cofactor II (HCII) and antithrombin (AT), have been compared in healthy young rabbits. Purified HCII and AT-alpha were differentially radiolabeled (125I, 131I) and injected intravenously; blood samples were taken at prescribed intervals over 7 days. From the plasma clearance curves of protein-bound radioactivities, fractional catabolic rates and compartmental distributions were calculated using a three-compartment model. The whole body fractional catabolic rate for HCII (jt, 0.43/day, equivalent to t1/2 = 1.61 days) was significantly faster than for AT (jt, 0.37/day; t1/2 = 1.89 days; P < 0.005). The fractional distribution of HCII in the intravascular compartment (Ap, 0.20) and in the extravascular compartment (Ac, 0.63) differed significantly from AT (Ap, 0.30; Ac, 0.56). From the catabolic data and blood concentrations, absolute quantities of HCII and AT catabolized by a 3-kg rabbit amounted to 12.8 and 19.9 mg/day, respectively, equivalent to a molar ratio, AT/HCII, of 1.7. The catabolic molar ratio was compared with the relative release rates of HCII and AT from perfused rabbit livers. Both proteins were released from the liver, the molar ratio in the perfusate rising to approximately 1.4 at 2.5 h. This report increases our understanding of the in vivo dynamics of these two proteins.

Animals↗

[Detection of infectious hemorrhagic disease of domestic rabbits (rabbit viral hemorrhagic disease) in wild rabbits (Oryctolagus cuniculus)].

The occurrence of Rabbit Viral Hemorrhagic Disease of domestic rabbits in the population of wild rabbits in Germany was proven through detection of antigen (hemagglutination) in spleen and liver in one animal and through detection of specific antibody in another animal. There was no epizootic connection between the two animals (different locations). The necropsy and histopathologic findings are presented from five wild rabbits which died from RVHD.

Animals↗

Skeletal muscle fibre composition in new Zealand white rabbits, wild rabbits and wild rabbits bred in captivity: effect of heredity.

1. The muscle composition of 3 breeds of rabbit was investigated histochemically in 3 muscle groups in order to identify whether heredity or environment was the predominant factor in dictating composition. 2. In the biceps femoris, differences between the breeds in myosin ATPase activity were due to heredity, whereas differences in oxidative potential were due to environment. 3. In the flexor digitorum longus, the wild rabbit possessed the highest percentage of type I fibres. This was environmentally induced.

Adenosine Triphosphatases↗

Immunologic response of neonatal and older rabbits to antigens of rabbit leucocytes.

The immunologic response of neonatal and of older rabbits to the tissue (transplantation) antigens of pooled rabbit leucocytes was studied, the test system being the suppression of formation of agglutinin to Shigella paradysenteriae by transferred lymph node cells which had been incubated with Shigella antigen. In the active induction of the suppressive effect on the transferred cells it was found that neonatal rabbits reacted as vigorously as 1 kg rabbits to the prior injection of a given number of rabbit leucocytes pooled from prospective donors of lymph node cells. The suppressive effect was dose-related, and within the range of number of leucocytes used was similar for both age groups of recipients. An attempt to detect a difference in the response during the first few days after leucocyte injection, before the full suppressive effect is reached, failed to show any difference between rabbits of the two age groups. Since it had been found possible to transfer the suppressive effect passively with sera obtained from older rabbits injected with rabbit leucocytes, attempts were made to do so with sera obtained from neonatal rabbits injected with similar numbers of pooled adult rabbit leucocytes. No consistent suppression of transferred lymph node cells was observed with sera from neonatal rabbits, even with relatively large amounts of such serum. In sera of rabbits which had been injected with rabbit leucocytes at the age of 4 to 6 weeks, suppressive antibody could be detected. When anti-rabbit-leucocyte serum obtained in adult rabbits was injected into neonatal and 1 kg recipients at a given volume per gram of animal weight the suppressive effect of the serum was of similar extent in the two groups of recipients. In the adoptive transfer of the lymph node cell suppressive effect, by cells of lymph nodes draining the sites of injection of pooled rabbit leucocytes, it was found that the popliteal lymph node cells of neonatal rabbits were as effective as those of 1 kg rabbits. Splenic cells of neonatal rabbits were also effective, when an adequate number of rabbit leucocytes had been injected intravenously. Thus, in conferring adoptive immunologic response, as in active immunization, the neonatal rabbits were as effective as the older rabbits in their response to homotransplantation antigens, in contrast to the considerable difference in concentration of the suppressive antibody in sera of neonatal and older rabbits injected with rabbit leucocytes.

Animals↗

Expression of recombinant rabbit IL-8 in Escherichia coli and establishment of the essential involvement of IL-8 in recruiting neutrophils into lipopolysaccharide-induced inflammatory site of rabbit skin.

In order to establish the pathophysiological roles of IL-8, rabbit IL-8 was expressed in Escherichia coli and purified to homogeneity by sequential chromatography on heparin agarose, CM-HPLC, and RP-HPLC. The purified recombinant rabbit IL-8 was homogeneous on SDS-PAGE and the ED50 of neutrophil chemotactic activity for rabbit peritoneal neutrophils was 2 ng/ml. The binding of 125I-labeled rabbit IL-8 to rabbit neutrophils was inhibited by unlabeled human IL-8 as well as rabbit IL-8 but not by another leucocyte chemotactic cytokine (chemokine), monocyte chemotactic and activating factor. Scatchard plot analysis of the binding of 125I-labeled rabbit IL-8 to rabbit peritoneal neutrophils revealed that the rabbit neutrophils have two affinity classes of receptors for IL-8 (Kd = 2.3 nM, 4.1 x 10(4) sites/cell; Kd = 18.0 nM, 11.4 x 10(4) sites/cell). It was found that a previously generated mouse anti-human IL-8 mAb, WS-4, inhibited the binding of 125I-labeled rabbit IL-8 to rabbit neutrophils, and blocked neutrophil chemotaxis in vitro in a specific and dose-dependent manner. An ELISA system for rabbit IL-8 was established using this mAb and guinea pig polyclonal antibodies to recombinant rabbit IL-8 to measure the levels of IL-8 in rabbit plasma. Intravenous administration of lipopolysaccharide (LPS) (100 micrograms) in rabbits caused the highest level of IL-8 in blood at around 2 h. Intravenous administration of WS-4 (10 mg) inhibited neutrophil infiltration at the site of LPS injection into the rabbit skin, suggesting that IL-8 is essential in the recruitment of neutrophils at sites of acute inflammation in vivo.

Amino Acid Sequence↗

Nifedipine suppressed atherosclerosis in cholesterol-fed rabbits but not in Watanabe heritable hyperlipidemic rabbits.

We studied the effects of nifedipine, a calcium antagonist, on atherosclerosis in cholesterol-fed rabbits and Watanabe heritable hyperlipidemic rabbits (WHHL rabbits). Japanese White rabbits were fed 120g of 2% cholesterol rabbit chow daily, and WHHL rabbits were fed standard rabbit chow. In each experiment, the rabbits were divided into two groups. Twenty milligrams of nifedipine was given orally twice a day to the nifedipine group, and the control group was given a placebo in the same way. The rabbits were sacrificed at the end of the 12th week in the case of cholesterol-fed rabbits, and the 20th week in the case of WHHL rabbits. Among the cholesterol-fed rabbits, the percentage of aortic intimal surface area covered by atherosclerotic lesions (AS%) was 25.9 +/- 7.6% (mean +/- S.D.) in the nifedipine group (n = 7), and 55.6 +/- 22.8% in the placebo group (n = 8) (p less than 0.01). The cholesterol content of thoracic and abdominal aorta in the nifedipine group was lower than those in the placebo group (p less than 0.05). Among the WHHL rabbits, the AS% was 33.4 +/- 14.1% in the nifedipine group (n = 5), and 27.0 +/- 11.7% in the placebo group (n =6) (n.s.). The aortic cholesterol and calcium contents also showed no significant differences between the two groups. We concluded that nifedipine suppressed atherosclerosis in cholesterol-fed rabbits but not in WHHL rabbits. The different responses suggest that the effect of nifedipine could be mediated by low density lipoprotein receptors or that the early exposure to hyperlipidemic serum from birth might affect cell functions of WHHL rabbits.

Administration, Oral↗

Recombinant human interleukin-6 enhances the immunoglobulin secretion of a rabbit-rabbit hybridoma.

The generation of stable rabbit-rabbit hybridomas is now possible by the recent development of a rabbit fusion partner. The ability to generate rabbit monoclonal antibodies (MAbs) can be advantageous because these rabbit immunoglobulins tend to exhibit higher affinity than murine MAbs. Furthermore, it has been observed that, in general, rabbits will elicit an immune response to antigens of limited immunogenicity in mice. Unfortunately, these rabbit-rabbit hybridomas secrete only 200 ng/mL to 5 microg/mL of immunoglobulin, which may limit larger scale production of rabbit antibodies. This study sought to determine if interleukin 6 (IL-6), which has been reported to have proliferative and secretory stimulating effects on some murine hybridomas, had any effect on a rabbit cell line that secretes a monoclonal IgG specific for estradiol. The results demonstrated that recombinant human IL-6 had a dose-dependent enhancing effect on the IgG secretion of the rabbit-rabbit hybridoma. The enhancing effect was consistent when the cells were continuously passed in the presence of IL-6. However, IL-6 did not affect the growth of the hybridoma. In contrast, no discernible effect was accomplished with recombinant mouse IL-6. Furthermore, no basal IL-6 activity was detected in the rabbit hybridoma extracellular medium. The IL-6 enhancement effect observed in this study may help to increase the immunoglobulin yield of rabbit hybridomas and to assist in the understanding of the mechanism(s) behind the lowered secretion level.

Animals↗

Allergy to rabbits. I. Specificity and non-specificity of RAST and crossed-radioimmunoelectrophoresis due to the presence of light chains in rabbit allergenic extracts.

Investigations have been carried out into the presence of antibody light chains in rabbit allergenic extracts and the interference in RAST and crossed-radioimmunoelectrophoresis (XRIE) caused by antibodies directed against them. A "non-specific" uptake of radioactivity in XRIE has been demonstrated to be caused by direct cross-linking of the 125I rabbit anti-human IgE by the sheep antibodies in the immunoprecipitate of rabbit light chains. Preincubation with normal rabbit serum blocked this direct uptake of the labelled antibody and enabled specific IgE uptake on the light chains to be demonstrated for rabbit allergic sera. Verification of the allergenicity of the light chains was obtained from a specific light chain RAST. Elution from a Sephacryl S-200 gel filtration column indicated a MW of approx. 50 Kd and confirmation of the component as light chain dimers, not Fab fragments, was obtained by allotyping for loci present on heavy chains and light chains in the Fab region. Light chains were detected in urine from rabbits of all ages and in an extract of dust collected in a rabbit housing area. No background staining was observed in XRIE using rabbit antisera, either with rabbit allergic sera with specific IgE or with a human serum containing specific IgG antibodies to rabbit IgG. This latter serum also showed no evidence of uptake on all immunoprecipitates in systems using rabbit antisera, and did not give false positive RAST results when the labelled rabbit anti-human IgE contained unlabelled rabbit IgG. Those sera with specific IgE to light chains showed no uptake in XRIE using rabbit antisera, indicating that the IgE was possibly specific for epitopes revealed by the dissociation of the whole IgG molecule.

Allergens↗

Accumulation of 125I-factor XI in atheroma of rabbit with hereditary hyperlipidemia (WHHL-rabbit).

We have studied the turnover and accumulation of rabbit factor XI (F.XI) in atherosclerotic lesion in Watanabe-hereditable hyperlipidemic rabbit (WHHL rabbit) to reveal the participation of blood coagulation in atherosclerotic lesion. Rabbit F.XI was iodinated and administered intravenously to WHHL rabbits and Japanese white rabbits. The turnover of 125I-rabbit F.XI was significantly faster in WHHL rabbits (T1/2 = 2.84 +/- 0.44 days) than in normal rabbits (T1/2 = 4.44 +/- 0.42 days). The thoracic aorta of WHHL rabbit was strongly labelled with 125I-rabbit F.XI, in sections obtained after 5 days by en-face autoradiography, whereas no radioactivity was detected in normal aorta. By an immunohistochemical study of WHHL rabbit aorta, we confirmed that many F.XI- and fibrin-related compounds existed in the atheroma, whereas albumin did not in these area. These results suggest that the activation of F.XI proceeds on the atherosclerotic lesions of WHHL rabbits.

Animals↗

Rabbit-mouse hybridomas secreting intact rabbit immunoglobulin.

Rabbit-mouse hybridomas offer the potential for production of monoclonal rabbit antibodies by immortal cell lines. In previous studies, it was possible to produce and stabilize rabbit-mouse hybrid cells secreting either a rabbit heavy or light chain. These have been useful for structural characterization of the individual rabbit immunoglobulin polypeptides and for isolation of large amounts of immunoglobulin mRNA for molecular studies. For some studies, however, it would be useful to have intact rabbit immunoglobulin molecules comparable to the myeloma proteins available in the human and mouse. The availability of rapid, sensitive and specific assays for rabbit heavy and light chains and allotypes located on specific chains has now permitted the early identification of clones secreting intact rabbit immunoglobulin. Vigorous cloning efforts have resulted in isolation and partial stabilization of three such clones. The first, H105, secretes a product with a kappa light chain bearing the b6 allotype and a mu-chain bearing the a1 allotype. Biochemical and serologic analyses of the product show that it is secreted as a fully assembled IgM pentamer and that the rabbit heavy and light chains are covalently associated. No rabbit J-chain gene was detected in H105 by Southern blot analysis. The second hydridoma, H134, secretes a product with a mol. wt of 150 K, consisting of a b4 light chain and an a1 heavy chain. The third, H171, secretes an alb4 IgG with antibody specificity for group C streptococcal carbohydrate. An additional rabbit-mouse hybridoma, H89, have been produced which secretes a rabbit heavy chain lacking group a allotypic activity. The rabbit heavy chain, which is associated with a mouse light chain, has an N-terminal amino acid sequence identical to a2-positive molecules although thorough serologic analysis revealed no group a allotypic activity.

Amino Acid Sequence↗

Rabbit apolipoprotein A-I mRNA and gene. Evidence that rabbit apolipoprotein A-I is synthesized in the intestine but not in the liver.

In order to study the tissue-specific expression of rabbit apolipoprotein (apo) A-I, a 923-base-pair clone, pRBA-502, complementary to rabbit apo A-I mRNA was identified from a rabbit intestinal cDNA library by hybrid-select translation and immunoprecipitation methods. Northern blot and dot-blot hybridization, utilizing 32P-labeled pRBA-502, revealed that the rabbit apo A-I gene is expressed in the intestine, not in the liver and that rabbit apo A-I mRNA is about 950 nucleotides in length. The entire nucleotide sequence of pRBA-502 has been determined and the complete amino acid sequence of the corresponding apo A-I has been deduced. The mRNA codes for a protein comprising 265 amino acids. Amino acids 1-18 and 19-24 of the primary translation product represent the presegment and prosegment, respectively, of apo A-I. Matured rabbit apo A-I contains 241 amino acids and has a molecular mass of 27612 Da. Using pRBA-502 as a probe, a 15.5-kb genomic fragment, which contains the entire apo A-I gene, was isolated from a rabbit liver genomic library. Sequence analysis of the gene shows that the 200 base pairs of the 5' upstream flanking region of the rabbit and human apo A-I genes showed 78% sequence homology. Like the human apo A-I gene, the rabbit apo A-I gene is interrupted by three intervening sequences. Except for two nucleotides in the fourth exon, the coding sequence of the rabbit liver apo A-I gene is identical to that of pRBA-502. Our data showed that the lack of expression of apo A-I gene in rabbit liver is not due to the alternation of rabbit liver apo A-I gene sequence and suggest that the expression of apo A-I gene in rabbit liver is regulated by a trans-acting regulating element(s).

Amino Acid Sequence↗

ApoVLDL of the Watanabe Heritable Hyperlipidemic rabbit and the cholesterol-fed rabbit.

The Watanabe Heritable Hyperlipidemic rabbit (WHHL rabbit) and the cholesterol-fed rabbit have been reported to show elevations of very low density (VLDL), intermediate density (IDL), and low density lipoproteins (LDL), and a broad-beta band on agarose-gel electrophoresis. We have studied the lipid and lipoprotein composition of WHHL rabbits and cholesterol-fed rabbits using ultracentrifugal analysis and isoelectric focusing. The total cholesterol (TC)/triglyceride (TG) ratios of VLDL, IDL, and LDL in WHHL rabbits were slightly elevated, but almost normal compared with those of cholesterol-fed rabbits, whose TC/TG ratios were markedly elevated compared with normolipidemic rabbits. ApoVLDL of WHHL rabbits showed no compositional changes in apoE and apoC isoforms, and no marked changes in the apoE/apoC ratios. But apoVLDL of cholesterol-fed rabbits showed a significant decrease of apoC-III, a significant increase of apoC-V, and marked elevation of the apoE/apoC ratio. We conclude that serum lipoprotein compositions in the WHHL rabbit were normal, while the lipoprotein lipid and apolipoprotein composition in the WHHL rabbit are different from those in cholesterol-fed rabbits.

Animals↗