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At least 19 recordsLinked to original sources

Abnormal zinc metabolism in unilateral maldescended testes of a mutant rat strain.

The status of zinc in a mutant rat strain with heritable maldescended testes was examined. In rats with unilateral maldescended testis, the ectopic testis consistently had decreased zinc content (121.0 +/- 23.0 micrograms zinc/g dry wt), while the eutopic testis had zinc content similar to that of normal rats (182.0 +/- 5.0 micrograms zinc/g dry wt). Uptake of zinc by the ectopic testis was comparable to normal. Sephadex gel chromatography showed greatly reduced zinc content of one of the endogenous zinc binding fractions with a mol wt of 30,000 of cytosol of the ectopic testis in spite of a near normal protein content. Incorporation of zinc-65 into this fraction was also shown to be greatly reduced in ectopic testis. Sodium dodecylsulphate-polyacrylamide gel electrophoresis demonstrated that a protein of 23,000 Da was greatly reduced in quantity. This 23-kDa protein in ectopic testis may play a role in reduced testicular function of the ectopic testis.

Animals↗

A mutant rat strain deficient in induction of a phenobarbital-inducible form of cytochrome P-450 in liver microsomes.

Two phenobarbital-inducible forms of cytochrome P-450, P-450(PB-1), and P-450(PB-4), were purified from the liver microsomes of phenobarbital-treated rats and identified with P-450b and P-450e, respectively. It was found, however, that the content of P-450(PB-4) in the liver microsomes of a strain of SD rat, Qdj:SD, was very low even after phenobarbital-induction. The levels of the mRNAs for P-450(PB-1) and P-450(PB-4) were separately determined using Northern blot hybridization with specific oligonucleotide probes. It was found that the level of P-450(PB-4) mRNA in the livers of phenobarbital-treated Qdj:SD rats was much lower than that of phenobarbital-treated Slc:SD rats. Slc:SD rats are widely used in Japanese laboratories. Genetic analysis using the crossbred animals between Qdj:SD and Slc:SD rats showed that the low expression of P-450(PB-4) in Qdj:SD rats is a recessive trait and is caused by a single gene mutation. However, no difference in the 5' flanking region in P-450(PB-4) gene was found between Qdj:SD rats and Slc:SD rats.

Animals↗

Studies on the genetic linkage of bilirubin and androsterone UDP-glucuronyltransferases by cross-breeding of two mutant rat strains.

Gunn rats, which have defects in bilirubin and 4-nitrophenol UDP-glucuronyltransferases (GT), were crossed with LA Wistar rats with a defect in androsterone GT. The F1 hybrids showed normal GT activities towards androsterone, bilirubin and 4-nitrophenol, demonstrating that Gunn and LA ('low activity') Wistar rats inherit a homozygous dominant trait for androsterone GT and bilirubin GT respectively. The F2 progeny showed four different combinations of bilirubin and androsterone GT activities: defects in both GT activities, a single defect in bilirubin GT activity, a single defect in androsterone GT activity and two normal GT activities. They were segregated in the approximate ratio of 1:3:3:9, which is compatible with Mendel's Principle of Independent Assortment. These results provide evidence that androsterone GT and bilirubin GT are located on different chromosomes. In the F2 generation, defective bilirubin and 4-nitrophenol GT activities were not segregated, indicating that these two mutant genes are closely linked on the same chromosome.

Androsterone↗

Chromosomal mapping of genes for epilepsy in NER: a rat strain with tonic-clonic seizures.

PURPOSE: NER is a mutant rat strain that exhibits spontaneous tonic-clonic convulsions accompanied by epileptic discharges on ictal EEG and serves as a model for generalized tonic-clonic seizures in humans. Our previous experiments have suggested that a major autosomal recessive gene and several minor genes regulate the inheritance of tonic-clonic seizures in NER. The purpose of this study was to confirm the mode of inheritance and to locate the causative genes for epilepsy in NER on the rat genetic map. METHODS: We developed F1 hybrid (F1) and reciprocal back-cross progenies of NER with a seizure-resistant strain, F344, and evaluated their seizure susceptibility under tossing-stimulated and nonstimulated conditions. Backcross animals were genotyped using simple sequence length polymorphism markers for polymerase chain reactions. Linkage between seizure susceptibility and marker loci was analyzed by chi2 statistic tests and by the computer programs MAPMAKER/EXP and MAPMAKER/QTL. RESULTS: Under tossing-stimulating conditions, tonic-clonic seizures were provoked in 90% of NER and 66% of (F1 x NER) backcross animals, but no seizures occurred in the F344, F1, or (F1 x F344) backcross animals. Routine monitoring of nonstimulated animals revealed spontaneous tonic-clonic convulsions in 100% of NER and 64.2% of (F1 x NER) backcross animals, but no seizures in F344 or F1. Gender effect on seizure susceptibility was negligible in (F1 x NER) backcross in both conditions. Preliminary genome-wide scanning and subsequent precise location of the causative genes revealed seizure susceptibility loci, designated Ner1 and Ner2, on rat chromosomes 1 and 3, respectively. CONCLUSIONS: Ner1 is a locus that controls the inheritance of spontaneous tonic-clonic seizures in an autosomal recessive mode, whereas Ner2 affects the occurrence of tossing-induced seizures. Orthologous genes in the vicinity of these loci may be related to epileptogenesis in other species, including humans.

Animals↗

cDNA cloning of the hepatocyte canalicular isoform of the multidrug resistance protein, cMrp, reveals a novel conjugate export pump deficient in hyperbilirubinemic mutant rats.

ATP-dependent transport of glutathione and glucuronate conjugates from hepatocytes into bile is mediated by a distinct member of the ATP-binding cassette superfamily. We have cloned and sequenced the canalicular isoform of the multidrug resistance protein from rat liver, and termed it cMrp. This membrane glycoprotein is composed of 1541 amino acids with an identity of 47.8% with the human multidrug resistance protein (MRP) and of 41.9% with the yeast cadmium factor (YCF1). The carboxyl-terminal 130 amino acids of the human hepatocyte canalicular isoform of MRP (cMRP) were 80.2% identical with rat cMrp. cMrp was not expressed in the liver of two mutant rat strains, the Eisai hyperbilirubinemic rat and the GY/TR- mutant, which are deficient in the ATP-dependent transport of conjugates across the canalicular membrane. Immunoblotting using an antibody raised against the carboxyl terminus of cMrp detected the glycoprotein of about 190 kDa only in the canalicular membrane from normal liver. Double immunofluorescence and confocal laser scanning microscopy localized cMrp exclusively to the canalicular membrane domain of hepatocytes and demonstrated its loss in the hyperbilirubinemic mutant rat. The results identify cMrp as a canalicular transport protein with a novel sequence and with a function similar to the one of the MRP.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Maturational arrest from CD4+8+ to CD4+8- thymocytes in a mutant strain (LEC) of rat.

A mutant strain (LEC) of rats was found to have a novel defect in T cell maturation, that is, arrest of differentiation from CD4+8+ to CD4+8- but not to CD4-8+ thymocytes. FACS analyses demonstrated a deficiency in the CD4+8- T cell subset in the thymus and a marked decrease in CD4+ T cells in peripheral lymphoid organs. Expression of the T cell receptor (TCR)/CD3 complex in CD4+8+ and CD4-8+ thymocytes of LEC rats was normal. Expression of class II major histocompatibility complex (MHC) in the thymus of LEC rats was also the same as that of normal rats. These results indicate that maturational arrest occurs only in the transition pathway from CD4+8+ to CD4+8- thymocytes, and that this mutation can not be attributed to the default of expression of either TCR/CD3, CD4, or class II MHC antigen. Consequently, dysfunction of helper T cells was observed in LEC rats, while killer T cells and B cells functioned normally. Although the complete identification of the origin of this mutation requires further studies, it is hoped that such investigations will throw light on the mechanism of positive selection.

Animals↗

Noninvasive assessment of hepatobiliary and renal elimination of cysteinyl leukotrienes by positron emission tomography.

N-Acetyl-leukotriene E4 has been identified as an endogenous, biologically less active cysteinyl leukotriene metabolite in rodents and humans. To evaluate the ratio of hepatobiliary to renal elimination of leukotrienes noninvasively by positron emission tomography (PET), we synthesized N-[11C]acetyl-leukotriene E4 by chemical N-acetylation of leukotriene E4. After the intravenous injection of N-[11C]acetyl-leukotriene E4 in normal rats and monkey, uptake by the liver and subsequent excretion into bile were largely responsible for its rapid elimination from blood. In the Cynomolgus monkey, renal excretion of the leukotriene into urine was of additional quantitative importance. Kinetic modeling indicated a mean transit time through the liver of 17 minutes and 34 minutes in rat and monkey, respectively; the corresponding hepatic excretion half-times amounted to 8.5 minutes and 16 minutes. In a mutant rat strain deficient in the hepatobiliary excretion of cysteinyl leukotrienes across the canalicular membrane, the apparent mean liver transit time was 54 minutes, and the hepatic excretion half-time was 29 minutes, indicating prolonged organ storage and metabolism. After transport from the liver back into the circulating blood of omega-oxidized and beta-oxidized metabolites of N-[11C]acetyl-leukotriene E4, renal excretion compensated for the impairment of hepatobiliary elimination in the transport mutant. Metabolite analyses in urine after intravenous injection of N-[3H]acetyl-leukotriene E4 indicated the extensive inactivation of N-acetyl-leukotriene E4 by beta-oxidation from the omega-end in the mutants. A similar shift from hepatobiliary to renal cysteinyl leukotriene elimination was monitored in rats with cholestasis due to bile duct obstruction.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Characterization of inducible nature of MRP3 in rat liver.

We found previously that expression of multidrug resistance-associated protein (MRP) 3 is induced in a mutant rat strain (Eisai hyperbilirubinemic rats) whose canalicular multispecific organic anion transporter (cMOAT/MRP2) function is hereditarily defective and in normal Sprague-Dawley (SD) rats after ligation of the common bile duct. In the present study, the inducible nature of MRP3 was examined, using Northern and Western blot analyses, in comparison with that of other secondary active [Na(+)-taurocholic acid cotransporting polypeptide (Ntcp), organic anion transporting polypeptide 1 (oatp1), and organic cation transporter (OCT1)] and primary active [P-glycoprotein (P-gp), cMOAT/MRP2, and MRP6] transporters. alpha-Naphthylisothiocyanate treatment and common bile duct ligation induced expression of P-gp and MRP3, whereas expression of Ntcp, oatp1, and OCT1 was reduced by the same treatment. Although expression of MRP3 was also induced by administration of phenobarbital, that of cMOAT/MRP2, MRP1, and MRP6 was not affected by any of these treatments. Moreover, the mRNA level of MRP3, but not that of P-gp, was increased in SD rats after administration of bilirubin and in Gunn rats whose hepatic bilirubin concentration is elevated because of a defect in the expression of UDP-glucuronosyl transferase. However, the MRP3 protein level was not affected by bilirubin administration. Although the increased MRP3 mRNA level was associated with the increased concentration of bilirubin and/or its glucuronides in mutant rats and in SD rats that had undergone common bile duct ligation or alpha-naphthylisothiocyanate treatment, we must assume that factor(s) other than these physiological substances are also involved in the increased protein level of MRP3.

1-Naphthylisothiocyanate↗

Hepatic, intestinal and renal transport of 1-naphthol-beta-D-glucuronide in mutant rats with hereditary-conjugated hyperbilirubinemia.

Recently, a mutant rat strain was described with a genetic defect for the biliary excretion of organic anions (TR-rats). To determine the possible heterogeneity of the transport systems in liver, intestine and kidney we investigated the transport of the anion 1-naphthol-beta-D-glucuronide (1-NG) in isolated vascularly perfused organ preparations of the rat liver, intestine and kidney of both Wistar rats and TR- rats. 1-NG was administered as such (liver and kidney experiments) or formed intracellularly from 1-naphthol (1-N) (liver and gut experiments). Independent of the type of exposure to 1-NG, the biliary excretion was considerably impaired in TR- rats. In the intestine the total appearance and the vascular/luminal distribution pattern of 1-NG were not significantly different from the values in control rats. Furthermore, no significant disturbance was found with respect to the renal clearance of 1-NG in the TR- rat when compared with the Wistar rat. Thus, the genetic defect in the TR- rat is restricted to an impaired hepatobiliary excretion of 1-NG and does not affect the excretory systems of the intestine and kidney. These results suggest that the excretion of 1-NG by the liver, intestine and kidney involves distinct organ-specific transport systems.

Animals↗

Organic anion transport study in mutant rats with autosomal recessive conjugated hyperbilirubinemia.

The EHBR is a mutant rat strain with congenital conjugated hyperbilirubinemia bred from a Sprague-Dawley rat. Transport of conjugated bilirubin, indocyanine green, and tetrabromosulfophtalein from liver to bile is severely impaired in these rats. Serum bilirubin amounts to 6.0 +/- 0.05 mg/dl (n = 4) in adult rats, with 97% conjugates. The bile flow is reduced to about 65% of the control group, whereas total bile acid in 10-min bile samples is similar. Liver histology of 10 week-old rats revealed neither intracellular pigmentation nor architectural abnormalities.

Animals↗

Prolonged activated partial thromboplastin time and deficiency of high molecular weight kininogen in brown Norway rat mutant (Katholiek strain).

Activated partial thromboplastin time (APTT) was examined in Brown Norway (B/N) Katholiek rat, which was previously reported as high molecular weight kininogen deficient. APTT of B/N Katholiek was prolonged to 35 sec in comparison with B/N Kitasato and SD rat, showing APTT of 22-24 sec. The mixture of B/N Katholiek plasma and B/N Kitasato plasma (1:1) showed normal APTT value. B/N Katholiek plasma corrected the abnormally prolonged human coagulation factor deficient plasmas, such as XI, XII and prekallikrein deficient plasmas, while it did not correct the APTT of HMW kininogen deficient, Fitzgerald plasma. Intravenous injection of bromelain, which was previously reported to produce prolonged hypotension through the activation of factor XII to release bradykinin, induced slight effect in Katholiek rat, while in Kitasato rat it showed prolonged hypotension in similar degree as SD rat. Contents of coagulation factors in B/N Katholiek thus measured as well as the values of prekallikrein and HMW kininogen previously reported were summarized and suggested that B/N Katholiek rat could be similar deficiency as Fitzgerald trait.

Animals↗

Decrease in the specific forms of cytochrome P-450 in liver microsomes of a mutant strain of rat with hyperbilirubinuria.

Eisai-hyperbilirubinuria rats (EHBR) is a mutant originated from Sprague Dawley rats. The activities of UDP-glucuronyltransferase and drug metabolizing enzymes in EHBR were compared with those in Sprague Dawley rats as the control. The activity of aniline hydroxylase was significantly increased in liver microsomes of EHBR whereas the activity of ethylmorphine N-demethylase was found to be significantly decreased in EHBR as compared to control rats. In addition, the activity of testosterone 7 alpha-hydroxylase was increased in EHBR whereas the activity of testosterone 6 beta-hydroxylase was significantly decreased in EHBR as compared to control rats. Western blot analysis of liver microsomes of EHBR with antibodies to P-450IA2, P-450IIB1, P-450IIC11 and P-450IIIA2 showed that the amounts of P-450IIB1 and P-450IIIA2 in liver microsomes were significantly lower in EHBR than in control rats. These results indicated the form-specific alteration in the amounts of cytochrome P-450 in liver microsomes of EHBR.

Aniline Hydroxylase↗

Characterization of kininogen deficiency of Brown Norway rat mutant Katholiek strain.

A deficiency in the plasma kallikrein-kinin system of Brown Norway rat mutant Katholiek strain (B/N-Ka), first reported by Damas et al. was further characterized. The prolonged activated partial thromboplastin time (APTT) of B/N-Ka rat plasma was corrected by an addition of rat HMW-kininogen, indicating B/N-Ka rat is deficient in HMW kininogen. The study of kinin-release of plasmas of the three strains of rat (B/N-Ka, B/N Ki and SD) by several kininogenases expressed that B/N-Ka rat is deficient in LMW kininogen, in addition to HMW kininogen deficiency. The plasmas of the three strains of rat were gel-filtered through Sephacryl S-200 gel and profiles of kinin-release of the fractions were examined by several kininogenases. The result demonstrated that normal rat plasma contains three kinds of kininogen (HMW and LMW kininogens, and T-kininogen), and B/N-Ka plasma contains only T-kininogen. B/N-Ka rat plasma demonstrated T-kininogen antigen but no HMW kininogen by the study of immunodiffusion using their antisera raised in rabbits.

Animals↗

Aganglionosis in rodents.

The etiology of aganglionosis of the bowel remains controversial. Initial embryological studies in chicks, mice, and humans suggested the defect was in the migratory capacity of the vagal neural crest cells. This traditional theory has recently been challenged by the demonstration of a defect in the local microenvironment and the suggestion that neural crest cells migrate normally until they reach the terminal defective segment of bowel which then excludes them. To contribute to this debate we studied three rodent animal models using histological, "in vivo" (kidney capsule), and "in vitro" (tissue culture) techniques. The results suggest that there is no discernible difference between mutant and normal embryos in the early migration from the vagal neural crest to the stomach. Migration through the small bowel is normal in mutant mice, but is slowed in the rat. In both strains of mice the migration of enteric precursors into the mutant colon is slowed over an extended period of time, such that a difference between normal and mutants is evidenced well before the final aganglionic region is reached. Aganglionosis is the result either of a defect in vagal neural crest migration or in the microenvironment over an extended area of the bowel and not just in the terminal aganglionic colon. There are changes in the appearance of mutant enteric neurons in tissue culture and some alterations in the gut mesenchyme; it remains to be determined which is the primary event.

Animals↗

Abnormal ethanol metabolism in Long-Evans Cinnamon rats, a mutant strain developing spontaneous hepatoma.

The Long-Evans Cinnamon (LEC) rat is a mutant strain established from Long-Evans rats. LEC rats display hereditary hepatitis and spontaneous hepatocellular carcinoma (HCC). We first tried to examine effects of ethanol consumption on the development of HCC, and fed a Lieber's liquid diet containing 5% ethanol to LEC rats. However the rats died within 2 weeks because of acute alcohol intoxication. In LEC rats, the concentration of ethanol and acetaldehyde in blood was significantly higher, and liver alcohol dehydrogenase activity was slightly lower and acetaldehyde dehydrogenase activities were remarkably suppressed compared to those of Wistar rats. These results suggest that LEC rats have hereditary deficiencies of ethanol and acetaldehyde metabolizing enzymes.

Acetaldehyde↗

[Physicochemical mechanisms of organic acid transport in the apical membrane vesicles of the cells of proximal kidney tubules in rats. II. Kinetic parameters of transport and phase state of the lipid bilayer in mutant Campbell strain rats].

The kinetics of 14C-para-aminohippuric acid (PAH) transport in the vesicles and the influence of the temperature on the initial rate of this transport were studied using a purified fraction of the apical membrane isolated from the kidney cortex of the Campbell strain rats with an autosomic recessive gene. The transport was brought about owing to the facilitate diffusion mechanism. At 36 degrees C the apparent Michaelis constant was equal to 29 mM, the maximum rate--62 nmol/min on 1 mg of protein, the inhibition constant for the PAH-transport by probenecid--1.5 mM. The temperature dependence of the initial rate of PAH-transport in vesicles and that of the rate of substrate splitting by alkaline phosphatase show the break point on the Arrhenius plot at 36 degrees C-38 degrees C. The analysis of electron magnetic resonance reveals the thermotropic transition at temperatures near 30 degrees-35 degrees C. Therefore the affinity of the carrier to its substrates in vesicles of the Campbell strain rats is strongly reduced and the lipid layer is more viscous than in the normal rats. We decide therefore that the mutation taking place in the Campbell strain leads to pleotropic membrane reconstructions in different organs (eye, kidney). The discovery of such a mutation is of considerable biological interest and promotes bases for development of the membrane biochemical genetics.

Aminohippuric Acids↗

Crucial suppressive role of renal kallikrein-kinin system in development of salt-sensitive hypertension.

Tissue kallikrein and low molecular weight kininogen are localized in the particular cells of the connecting tubules, indicating that kinin is immediately generated in the lumina of the lower nephrons. The role of the renal kallikreinkinin system was studied using mutant kininogen-deficient Brown NorwayKatholiek (BN-Ka) rats, and compared with that in normal BN-Kitasato rats of the same strain. Mutant BN-Ka rats showed no visible changes, but they were very sensitive to excess sodium ingestion and to the tendency of sodium to accumulate in the body by aldosterone released by angiotensin II, so that sodium was accumulated in erythrocytes and cerebrospinal fluid in BN-Ka rats and hypertension was induced. After four days infusion of 0.3 M NaCl solution to conscious and unrestrained mutant BN-Ka rats, the sensitivity of the vascular smooth muscle to norepinephrine and angiotensin II increased 30-fold and 10-fold, respectively. Bradykinin was degraded by neutral endopeptidase (NEP) and carboxypeptidase Y-like exopeptidase (CPY) in rat and human urine. Daily oral administration of a selective inhibitor of CPY, ebelactone B, or that of NEP, BP1O2, prevented development of deoxycorticosterone acetate-salt hypertension in Sprague-Dawley rats. These results indicate that: 1) the renal kallikrein-kinin system allows excretion of excess sodium in the body, 2) decreased sodium excretion due to reduced excretion of urinary kallikrein in patients with essential hypertension or in genetically hypertensive rats may cause hypertension, and 3) urine kininase inhibitors such as ebelactone B may emerge as a new antihypertensive drug.

Animals↗