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D Curiel

Publications and source records attributed to D Curiel.

10 recordsLinked to original sources

Characterization of the intracellular mechanism causing the alpha-1-antitrypsin Nullgranite falls deficiency state.

The alpha-1-antitrypsin (alpha 1AT) Null alleles are those for which no alpha 1AT can be detected in the serum attributable to the gene. The intracellular consequences of the various substitution, deletion, and insertion mutations causing the Null state can be categorized into two groups: those associated with detectable alpha 1AT mRNA transcripts and those with no detectable alpha 1AT mRNA transcripts. To classify the intracellular mechanism associated with the Nullgranite falls allele (Tyr160 TAC, C deletion, 5' frameshift----Stop160 TAG), a Nullgranite falls homozygote was evaluated. Genotypic diagnosis of the Nullgranite falls homozygous state was determined using the polymerase chain reaction and Nullgranite falls specific primers. Total cellular RNA extracted from alveolar macrophages of the index case was compared to that from a normal M1 homozygote for the presence of alpha 1AT mRNA transcripts using Northern blot analysis and hybridization to either a 32P-labeled full length alpha 1AT cDNA probe or (as a control) a 32P-labeled gamma-actin cDNA probe. Although the macrophages of both the Nullgranite falls homozygote and the normal showed gamma-actin mRNA transcripts in comparable amounts, Nullgranite falls macrophages contained no detectable alpha 1AT mRNA transcripts whereas the normal had the expected 1.8 kb alpha 1AT mRNA transcripts. Thus, the Nullgranite falls allele can be classified along with Nullbellingham as a Null allele associated with no detectable alpha 1AT mRNA. These observations highlight the marked heterogeneity in the molecular processes causing the Null state, despite an identical phenotype at the clinical level.

Adult

Characterization of the sequence of the normal alpha-1-antitrypsin M3 allele and function of the M3 protein.

Alpha-1-antitrypsin (alpha 1AT), a highly pleomorphic 52 kD glycoprotein, functions chiefly as the major inhibitor of neutrophil elastase. Of the known alpha 1AT variants, greater than 95% in the U.S. Caucasian population are those of the "normal" M family, including M1(Ala213), M1(Val213), M2 and M3, with M3 the least common of the group. Quantification of the functional capacity of the M3 protein as an inhibitor of neutrophil elastase demonstrated a Kassociation for neutrophil elastase of 10.1 +/- 1.5 x 10(6) M-1 s-1, a value comparable to the common normal M1(Val213) alpha 1AT. To define the nucleotide sequence of the M3 gene, the five coding exons of the alpha 1AT gene of an M3 homozygote were amplified by the polymerase chain reaction and cloned into the plasmid vector pUC19. Sequence analysis demonstrated that the alpha 1AT M3 gene differs from the alpha 1AT M1(Val213) gene by a single base substitution (Glu376 GAA----Asp376 GAC) and from the alpha 1AT M2 gene by a single base substitution (His101 CAT----Arg101 CGT). To establish the consistency of the alpha 1AT M3 genotype among individuals identified by isoelectric focusing of serum to have the M3 phenotype, analysis of genomic DNA of 16 individuals by means of allele-specific amplification revealed that residues 101 and 376 were Arg and Asp, respectively, in all M3 alleles, while residue 101 was His in all M2 alleles and residue 376 was Glu in all M1 alleles.(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles

Alpha 1-antitrypsin deficiency caused by the alpha 1-antitrypsin Nullmattawa gene. An insertion mutation rendering the alpha 1-antitrypsin gene incapable of producing alpha 1-antitrypsin.

alpha 1-Antitrypsin (alpha 1AT) deficiency is a hereditary disorder associated with reduced serum alpha 1AT levels and the development of pulmonary emphysema. An alpha 1AT gene is defined as "Null" when no alpha 1AT in serum is attributed to that alpha 1AT gene. Although all alpha 1AT Null genes have identical phenotypic consequences (i.e. no detectable alpha 1AT in the serum), different genotypic mechanisms can cause the Null state. This study defines the molecular basis for the alpha 1AT gene Nullmattawa, identified and cloned from genomic DNA of an individual with the Null-Null phenotype and emphysema resulting from the heterozygous inheritance of the Nullmattawa and Nullbellingham genes. Sequencing of exons Ic-V and all exon-intron junctions of the Nullmattawa gene demonstrated it was identical to the common normal M1(Val213) alpha 1AT gene except for the insertion of a single nucleotide within the coding region of exon V, causing a 3' frameshift with generation of a premature stop signal. Family analysis using oligonucleotide probes specific for the Nullmattawa sequence demonstrated the gene was inherited in an autosomal fashion. Examination of blood monocytes demonstrated that a normal-sized, 1.8-kb alpha 1AT mRNA transcript is associated with the Nullmattawa gene and in vitro translation of mRNA with the Nullmattawa mutation showed it translated at a normal rate but produced a truncated alpha 1AT protein. Additionally, retroviral transfer of the alpha 1AT Nullmattawa cDNA to murine fibroblasts demonstrated no detectable intracellular or secreted alpha 1AT, despite the presence of alpha 1AT Nullmattawa mRNA transcripts. These findings are consistent with the concept that the molecular pathophysiology of Nullmattawa is likely manifested at a posttranslational level. The identification of the Nullmattawa gene supports the concept that Null alpha 1AT alleles represent a heterogenous group in which very different mechanisms cause the identical phenotypic state.

Adult

Cloning and characterization of an alpha 1-antitrypsin like gene 12 KB downstream of the genuine alpha 1-antitrypsin gene.

Cosmid clones containing alpha 1-antitrypsin (alpha 1AT) gene sequences were observed to contain alpha 1AT-like sequences approximately 12 kb downstream of the authentic alpha 1AT gene. Restriction mapping suggested the alpha 1AT-like gene lacks promoter sequences. Cosmid clones from one library contained a truncated alpha 1AT-like gene with a deletion encompassing 1745 bp, including the whole exon IV and part of exon V. Sequencing of exon II of this truncated gene revealed a nucleotide homology of 76% but included critical mutations in the start codon (ATG - greater than ATA) and the 3' exon-intron junction. These results strongly suggest that the truncated alpha 1AT-like gene is a pseudogene, which is present at a frequency of 0.30 in the Dutch population.

Animals

H1 histone and nucleosome repeat length alterations associated with the in vitro differentiation of murine embryonal carcinoma cells to extra-embryonic endoderm.

The histone compositions and average distance between nucleosomes have been determined for F9.22 and PSA1 murine embryonal carcinoma cell lines, for primary extra-embryonic endoderm derived from the in vitro differentiation of PSA1 embryonal carcinoma cells, and for two long-term extra-embryonic endodermal cell lines. A change in the relative proportions of two forms of the H1 histones (H1A and H1B) was found to correlate with the extra-embryonic endodermal differentiated phenotype. The embryonal carcinoma cells had a ratio of H1A/H1B of 1.49 or greater. In contrast, extra-embryonic endoderm from either cell lines or freshly isolated from differentiating embryonal carcinoma cell cultures had a ratio of H1A/H1B of less than 0.9. Partial peptide mapping of gel purified H1A and H1B suggest the two proteins differ in primary structure. The nucleosome repeat length of the embryonal carcinoma cell lines was 196 bp of DNA. Primary extra-embryonic endoderm was found to have a value of 205 bp, but the long-term extra-embryonic endodermal cell lines had an average nucleosome repeat length of 187 bp. Since both freshly isolated primary endoderm and the long-term endodermal cell lines express differentiated functions (basement membrane glycoproteins and plasminogen activator activity), there appears to be no simple correlation between the nucleosome repeat length and the expression of these differentiated functions.

Animals

Uremic bleeding.

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Blood Coagulation Disorders