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Molecular analysis of the Pi*Z allele in patients with liver disease.

Alpha1-antitrypsin (AAT) is the main protease inhibitor in human plasma. There are more than 75 variants of this protein that differ from each other by their isoelectric point. Most of these alleles cause a reduction in AAT levels; the most common allele is Pi*Z. The main complications related to the Pi*Z allele are obstructive pulmonary disease and liver disease. Some Pi*Z allele carriers present cholestatic jaundice and cirrhosis. The Z type is associated with a secretion defect, which leads to deficiency of AAT and to the formation of intrahepatocytic inclusions in affected subjects. The diagnosis of AAT deficiency can be made by different techniques, including molecular analysis, although the final diagnosis should be done in conjunction with demonstration of the periodic acid-Schiff-positive globules on liver biopsy. In this study, specimens of 29 patients with cryptogenic cirrhosis between age 1 month and 18 years, and of 100 controls were submitted to polymerase chain reaction followed by digestion with TaqI enzyme. Five of the 29 patients had undergone liver transplantation. Three patients were heterozygous for the Pi*Z allele, and two were homozygous (allele frequency = 12.07%; 7/58). Among the controls, who represented the population of Porto Alegre, 1 in 100 individuals was heterozygous for the Pi*Z allele, resulting in an allele frequency of 0.5% (1/200). The high frequency of Pi*Z alleles among the patients indicates the usefulness of AAT molecular testing in children with cholestatic jaundice and cirrhosis.

Adolescent↗

Association between heterozygous alpha 1-antitrypsin deficiency and genetic hemochromatosis.

Primary hemochromatosis is a genetically determined autosomal recessive disorder characterized by the excessive accumulation of body iron, most of which is deposited in the parenchymal cells of various organs. alpha 1-Antitrypsin deficiency is characterized among others by defective secretion of alpha 1-antitrypsin from liver cells. Whereas the risk of cirrhosis is increased in homozygous patients (PI ZZ) and possible in heterozygous patients (non-PI MM) as well, a greater risk for hepatocellular carcinoma has been suggested only in homozygous patients. Because these two metabolic disorders are relatively common, it has been difficult to determine whether they are associated with each other. In this study, we tried to determine the relationship between these two disorders using the case material seen at the University of Pittsburgh during a 7-yr period. We studied 15 patients with genetic hemochromatosis. alpha 1-Antitrypsin quantitation and phenotyping were performed in each case using standard methods. The distribution of the various Pi phenotypes was compared with that found in a normal population and reported elsewhere. Odds ratio and chi 2 tests were used to measure the relative risk and significance of association, respectively. Eleven patients (73%) were found to be PI M and four (27%) were identified as being heterozygotes: three (20%) were PI MZ, and one (7%) was PI MS. The prevalence of the PI MS phenotype was similar to that in the general population (7% vs. 6.4%; NS). The PI MZ phenotype, however, was statistically more common in patients with hemochromatosis than in the general population (20% vs. 2.2%; p less than 0.004).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

aly/aly mice: a unique model of biliary disease.

An autosomal recessive murine mutation, coined "aly/aly" or "alymphoplasia," was recently reported. Homozygotes for aly are defective in both humoral and cell-mediated immune function and have diffuse lymphoid cell infiltration of various tissues, particularly around the conduit ducts of the pancreas and salivary glands. In pilot studies in our laboratories, aly/aly mice were found to have peculiar biliary tract lesions, which were analyzed histologically and immunohistochemically in the present study. The livers of aly/aly mice older than 8 weeks consistently showed a variable lymphoid cell infiltration with lymph follicle formation in portal tracts; intrahepatic biliary epithelial cells showed various types of damage including pseudopyloric gland metaplasia and proliferative changes. In addition, the extrahepatic bile duct and intrahepatic large bile duct were found to contain an acidophilic substance in their epithelial cytoplasm. In the lumen and occasionally in the cytoplasm of these bile ducts, acidophilic crystals were also seen. Ultrastructurally, the intracytoplasmic acidophilic substances consisted of membrane-bound intracytoplasmic inclusions with homogeneous electron density, likely derived from rough endoplasmic reticulum (ER). Immunohistochemically, the cytoplasmic acidophilic substances were simultaneously positive for cystatin C, gastrin, serotonin, and somatostatin. In contrast, the acidophilic crystals did not react with any of these antibodies. These findings suggest that the intracytoplasmic acidophilic substances may contain a precursor of the peptide hormones, possibly because of defective secretion or intracellular transport. We believe that the aly/aly mouse is a useful model for the analysis of biliary metabolic events, and for studies of the interaction of the immune system and biliary destruction.

Animals↗

Altered translation initiation factor 2 in the cold-sensitive ssyG mutant affects protein export in Escherichia coli.

The Escherichia coli gene secY (pr1A) codes for an integral membrane protein that plays an essential role in protein export. We previously isolated cold-sensitive mutations (ssy) as extragenic suppressors of temperature-sensitive secY24 mutation. Now we show that the ssyG class of mutations are within infB coding for the translation initiation factor IF2. The mutants produce altered forms of IF2 with a cold-sensitive in vitro activity to form a translation initiation complex. The mutation suppresses not only secY24 but also other secretion-defective mutations such as secA51 and rp10215. The beta-galactosidase enzyme activity of the MalE-LacZ 72-47 hybrid protein is strikingly reduced in the ssyG mutant at the permissive high temperature, while the hybrid protein itself is normally synthesized. This effect, which was observed only for the hybrid protein with a functional signal sequence, may result from some alteration in the cellular localization of the protein. These results suggest that IF2 or the translation initiation step can modulate protein export reactions. The isolation of cold-sensitive ssyG mutations in infB provides genetic evidence that IF2 is indeed essential for normal growth of E. coli cells.

Bacterial Proteins↗

Functional compartments of the yeast Golgi apparatus are defined by the sec7 mutation.

The role of the SEC7 gene product in yeast intercompartmental protein transport was examined. A spectrum of N-linked oligosaccharide structures, ranging from core to nearly complete outer chain carbohydrate, was observed on glycoproteins accumulated in secretion-defective sec7 mutant cells. Terminal alpha 1-3-linked outer chain mannose residues failed to be added to N-linked glycoproteins in sec7 cells at the restrictive temperature. These results suggest that outer chain glycosyl modifications do not occur within a single compartment. Additional evidence consistent with subdivision of the yeast Golgi apparatus came from a cell-free glycoprotein transport reaction in which wild-type membranes sustained outer chain carbohydrate growth up to, but not including, addition of alpha 1-3 mannose residues. Golgi apparatus compartments may specialize in addition of distinct outer chain determinants. The SEC7 gene product was suggested to regulate protein transport between and from functional compartments of the yeast Golgi apparatus.

Biological Transport↗

Carboxy-terminal region of Escherichia coli SecA ATPase is important to promote its protein translocation activity in vivo.

The role of the carboxy-terminal region of E. coli SecA ATPase was investigated by using genetic methods to construct a truncated SecA protein missing the last 66 amino acid residues and by systematically substituting serine for each of four cysteine residues present in this protein. Truncation of SecA or alteration of any of the carboxy-terminal cysteine residues resulted in poor growth and a protein secretion defect, indicating that this region of SecA is important in its protein translocation activity. Biochemical analysis of the altered proteins revealed a modest increase in translocation ATPase activity, suggesting that the carboxy-terminal region of SecA may facilitate the coupling of its ATPase activity to cycles of protein translocation.

Adenosine Triphosphatases↗

The role of non-esterified fatty acids in the deterioration of glucose tolerance in Caucasian subjects: results of the Paris Prospective Study.

Although an increased plasma non-esterified fatty acid (NEFA) concentration has been shown to increase insulin resistance (Randle cycle), decrease insulin secretion and increase hepatic gluconeogenesis, the effect of NEFA on the deterioration of glucose tolerance has not been studied prospectively in Caucasian subjects. Therefore, we investigated whether plasma NEFA may be regarded as predictors of deterioration of glucose tolerance in subjects with normal (NGT, n = 3671) or impaired (IGT, n = 418) glucose tolerance who were participants in the Paris Prospective study. The subjects were first examined between 1967 and 1972 and underwent two 75-g oral glucose tolerance tests 2 years apart with measurements of plasma glucose, insulin and NEFA concentrations. Glucose tolerance deteriorated from NGT to IGT or non-insulin-dependent diabetes (NIDDM) in 177 subjects and from IGT to NIDDM in 32 subjects. In multivariate analysis, high fasting plasma NEFA in NGT subjects and high 2-h plasma NEFA and low 2-h plasma insulin concentrations in IGT subjects were significant independent predictors of deterioration along with older age, high fasting and 2-h plasma glucose concentrations and high iliac to thigh ratio. When subjects were divided by tertiles of plasma NEFA concentration at baseline, there was an increase in 2-h glucose concentration with increasing NEFA in the subjects who did not deteriorate, but no effect of plasma NEFA in those who deteriorated. In subjects with IGT who deteriorated compared with those who did not 2-h plasma insulin concentration was lower but there was no evidence that this resulted from an effect of plasma NEFA. Our data suggest that a high plasma NEFA concentration is a risk marker for deterioration of glucose tolerance independent of the insulin resistance or the insulin secretion defect that characterize subjects at risk for NIDDM.

Basal Metabolism↗

[Dry eye disease as a complex dysregulation of the functional anatomy of the ocular surface. New concepts for understanding dry eye disease].

INTRODUCTION: Dry eye disease is a disorder of the tear film that results in epithelial damage and in a disruption of the normal homeostasis at the ocular surface. It is widespread and causes symptoms ranging from discomfort to blindness. METHODS: A review of the existing literature was used to compare different past and recent concepts for the understanding of dry eye disease with a focus on aspects of the integrating functional anatomy of the ocular surface. RESULTS: The understanding of the pathogenesis of dry eye disease has proceeded from the mere recognition of a lack of tears to a consideration of their quality and to the concept of wetting of the ocular surface. However, several other aspects as epithelial differentiation, innervation, hormonal status or immune protection contribute to the intact functional anatomy of the ocular surface. Recently it has been recognized that immunologically regulated mechanisms of inflammation represent a primary or secondary pathogenetic factor for dry eye disease. This is conceivably regulated by the cells of the physiological mucosal immune defence system, the eye-associated lymphoid tissue (EALT). Androgens represent an important trophic factor for the ocular surface and their deficiency predisposes to inflammation. CONCLUSION: Dry eye disease represents a complex dysregulation of the functional anatomy of the ocular surface that can start from different alterations (e.g. insufficient secretion, defects in wetting or innervation). Immune-based inflammation is able to interconnect and negatively reinforce these different pathomechanisms, resulting in a vicious circle.

Conjunctiva↗

Association of a variant in exon 31 of the sulfonylurea receptor 1 (SUR1) gene with type 2 diabetes mellitus in French Caucasians.

The sulfonylurea receptor (SUR1) of the pancreatic beta-cell ATP-sensitive potassium channel plays a key role in glucose-induced insulin secretion. The A-allele of a single nucleotide polymorphism (SNP) in exon 31 of the SUR1 gene (AGG-->AGA; Arg1273Arg) has previously been shown to be associated with hyperinsulinemia in nondiabetic Mexican-American subjects. Here, we have investigated the association of this SNP with type 2 diabetes mellitus (T2DM) in French Caucasian subjects. We have observed an increased frequency of the A allele (37.1% vs 27.6%, P=0.0048; odds ratio 1.54), of the AA genotype (15.7% vs 9.8%; P=0.025), and of the combined AA/AG genotypes (58.5% vs 45.5%, P=0.0098; odds ratio 1.69) in patients compared with controls. This association is stronger in the subgroup of patients with age of diagnosis of diabetes equal to or less than 45 years: A allele 43.2% (P=0.0003 compared with controls; odds ratio 1.99), AA genotype 21.4% (P=0.0032), and combined AA/AG genotypes 65.1% (P=0.0022; odds ratio 2.23). Unexpectedly, the G allele is strongly associated with arterial hypertension in obese diabetic subjects (GG vs AA odds ratio 19.97). In conclusion, we have observed an association of an SNP in exon 31 of the SUR1 gene with T2DM. These data reinforce the hypothesis that insulin secretion defects in T2DM might be at least partially related to allelic variations in the SUR1 gene.

ATP-Binding Cassette Transporters↗

Genome-wide linkage analysis of type 2 diabetes mellitus reconfirms the susceptibility locus on 11p13-p12 in Japanese.

Type 2 diabetes mellitus is a heterogeneous disorder, and the development of type 2 diabetes mellitus is associated with both insulin secretion defect and insulin resistance. The primary metabolic defect leading to type 2 diabetes mellitus has been thought to be varied among populations, especially in Japanese and Caucasians. Here, we have done the genome-wide scan for type 2 diabetes mellitus using 102 affected Japanese sib-pairs to identify the genetic factors predisposing to type 2 diabetes mellitus. Nonparametric linkage analysis showed one suggestive evidence for linkage to 11p13-p12 [D11S905: two-point maximum LOD score (MLS) of 2.89 and multipoint MLS of 2.32] and one nominally significant evidence for linkage to 6q15-q16 (D6S462: two-point MLS of 2.02). Interestingly, the 11p13-p12 region was reported to be a susceptibility locus for Japanese type 2 diabetes mellitus with suggestive evidence of linkage, and D11S905 was within 5 cM to D11S935 with the highest MLS in the previous linkage analysis reported. The only overlapped susceptibility region with suggestive evidence of linkage for Japanese type 2 diabetes mellitus was D11S935-D11S905 among the three reports including this study. These results taken together suggest that a susceptibility gene for type 2 diabetes mellitus in Japanese will reside in 11p13-p12.

Chromosomes, Human, Pair 11↗

The leader sequence of streptokinase is responsible for its post-translational carboxyl-terminal cleavage.

When the expression of streptokinase from two tac promoter-controlled expression vectors, one of these deleted a putative leader sequence of streptokinase and the other not, was compared, both normal and degraded streptokinase were detected in proteins expressed from the leader-contained vector, but only normal streptokinase was detected from the leader-deleted vector. These findings indicate that the characteristic carboxyl-terminal cleavage of streptokinase is correlated with its leader sequence and occurs during the defective secretion. The homogeneous preparation of streptokinase was facilitated by expressing from this leader-deleted vector.

Base Sequence↗

BiP expression is not increased by the accumulation of PiZ alpha 1-antitrypsin in the endoplasmic reticulum.

PiZ, a mutant human alpha 1-antitrypsin, is associated with liver and pulmonary disease and is characterized by defective secretion and accumulation of the protein in the endoplasmic reticulum. We tested the hypothesis that BiP (a protein that binds newly synthesized protein in the endoplasmic reticulum, prevents secretion of incorrectly folded protein, and solubilizes protein aggregates), could play a part in the retention of PiZ alpha 1-antitrypsin in the endoplasmic reticulum. Subcellular fractions from PiM (normal) and PiZ livers were prepared and analyzed by immunoblotting. No increase of BiP was detected in the PiZ liver. In addition, when total RNA from the same livers were analyzed by slot and Northern blot hybridization, no difference was found in the level of BiP mRNA between PiM and PiZ livers. Similar results were found in clones of CHO and MDCK cells transfected with PiM of PiZ alpha 1-antitrypsin cDNAs. These results indicate that BiP does not play a part in the retention of PiZ alpha 1-antitrypsin and suggest that PiZ protein is not misfolded.

Animals↗

Functional characterization of the Staphylococcus carnosus SecA protein in Escherichia coli and Bacillus subtilis secA mutant strains.

The Staphylococcus carnosus secA gene was cloned using the Bacillus subtilis secA gene as a probe. The S. carnosus secA encodes a polypeptide of 844 amino acid residues which is homologous to other known SecA proteins. The S. carnosus SecA functionally complemented the growth and secretion defects of a temperature-sensitive B. subtilis secA mutant at the non-permissive temperature. In contrast, the growth defect of an Escherichia coli secA mutant could not be complemented by the S. carnosus SecA protein. Our results suggest that the interactions of SecA with precursor proteins and/or other components of bacterial preprotein translocase are optimized within each organism.

Adenosine Triphosphatases↗

Odontogenic myxoma--characterisation of the extracellular matrix (ECM) of the tumour stroma.

In order to elucidate the origin of the odontogenic myxoma, the composition and the structural organisation of the extracellular matrix (ECM) of this tumour were characterised. Collagen type I, VI, procollagen type III, undulin, tenascin and fibronectin were demonstrated in biopsy material of 4 cases by polyclonal antibodies. The tumour stroma showed a pronounced reaction for collagen type I. Fibroblasts displayed an intense intracytoplasmatic reaction for procollagen type III, and collagen type I was not found in the fibroblasts of the adjacent normal oral mucosa. In contrast to the surrounding connective tissue, label for collagen type VI was weak, as was the reaction for fibronectin and tenascin. Undulin was almost undetectable. The immunohistochemical results suggest that the odontogenic myxoma is characterised by an as yet unobserved structural organisation of ECM proteins, a secretion defect of fibrillar collagens type I and III with no resemblance to physiological tooth development.

Adult↗

Genetic basis of maturity-onset diabetes of the young.

Most valuable breakthroughs in the genetics of type 2 diabetes mellitus have arisen from familial linkage analysis of maturity-onset diabetes of the young, an autosomal dominant form of diabetes typically occurring before 25 years of age and caused by primary insulin-secretion defects. Despite its low prevalence, MODY is not a single entity but presents genetic, metabolic, and clinical heterogeneity. MODY can result from mutations in at least six different genes;one encodes the glycolytic enzyme glucokinase, which is an important glucose sensor, whereas all the others encode transcription factors that participate in a regulatory network essential for adult beta cell function. Additional genes, yet unidentified, may explain the other MODY cases unlinked to a mutation in the known genes.

Age of Onset↗

Identification of a novel amino acid deletion mutation and a very rare single nucleotide variant in a Japanese family with type I antithrombin deficiency.

We studied a Japanese family with type I antithrombin (AT) deficiency and identified a novel in-frame deletion mutation (-ATG at nucleotide position of 2771-2773) in the AT gene, which predicted loss of a methionine (Met) at amino acid number of 103. In addition, we found a single base replacement of G to A at nucleotide position of 67 (4 base upstream to the initial codon) in the mutant allele. Since the G67A substitution in the AT gene was very rare, this family was the second case, in which the nucleotide change was transmitted. To elucidate the mechanism of AT deficiency, we transiently expressed wild type and the mutant AT (DeltaM103) in HuH-7 human hepatoma cells and performed pulse-chase studies. The experiments revealed that the mutant AT (DeltaM103) hardly secreted into the medium and underwent partial intracellular degradation. In addition, we performed luciferase reporter assay to examine the effect of G67A substitution on the AT gene expression, and found that the substitution did not reduce the luciferase activity. These results suggested that secretion defect and intracellular degradation of the variant molecule with the deletion of Met 103 were responsible for AT deficiency in this family.

Adult↗

Expression of cholecystokinin-2/gastrin receptor in the murine pancreas modulates cell adhesion and cell differentiation in vivo.

The presence of gastrin and cholecystokinin-2 (CCK2) receptors in human preneoplastic and neoplastic gastrointestinal lesions suggests a role in cancer development. In addition to the growth-promoting action of gastrin, recently a role of the cholecystokinin-2/gastrin receptor (CCK2-R) modulating cellular morphology in cultured epithelial cells has been shown. Here, we have investigated in transgenic (ElasCCK2) mice whether ectopic expression of human CCK2-R in the exocrine pancreas affected epithelial differentiation. Cellular localization of cell adhesion molecules, differentiation markers, and transcription factors was determined using immunofluorescence techniques. Before tumor formation, expression and subcellular localization of proteins of the adherens junction complex, differentiation markers, and transcription factors were altered in ElasCCK2 exocrine pancreas, indicating an evolution from an acinar to a ductal phenotype. Loss of cell polarity, defective secretion, and loss of intercellular adhesion in acini of ElasCCK2 mice was confirmed by ultrastructural analysis. Finally, expression of the transgene in mice treated with the carcinogen azaserine resulted in enhanced size of preneoplastic lesions as well as an increased degree of acinar-ductal transdifferentiation. Thus, these data represent the first evidence for the CCK2-R modulating intercellular adhesion and cell fate in vivo and show that these alterations may contribute to enhanced sensitivity of ElasCCK2 pancreas to chemical carcinogens.

Animals↗

Biogenesis of Candida albicans Can1 permease expressed in Saccharomyces cerevisiae.

The Candida albicans CAN1 gene, encoding a high-affinity permease for arginine, lysine and histidine, was tagged at its C-terminus with a c-myc epitope and introduced into strains of Saccharomyces cerevisiae lacking basic amino acid permeases. The expression levels of Ca-Can1p were influenced by the available nitrogen source, being almost negligible when cells were grown in the presence of ammonia. Ca-Can1p was shown to follow the secretory pathway in S. cerevisiae. Ca-Can1p activity was not detected in a secretion-defective sec1-1 mutant grown at a non-permissive temperature. Shr3p, an ER protein that participates in the biogenesis of amino acid permeases was also required for the functional expression of Ca-Can1p. The shr3 mutation does not affect the affinity for substrate but does decrease the number of Can1p molecules reaching the plasma membrane.

Amino Acid Transport Systems↗