Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: EC:3.1.30.2 (endonuclease)
18,621 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A highly purified thyroglobulin (Tg) mRNA was isolated from human nodal euthyroid goiter. Ultracentrifugation in a 5-20% sucrose density gradient revealed that the protein has a sedimentation coefficient of 33S. cDNA was synthesized from the 33S RNA, using reverse transcriptase in the presence of a human placental ribonuclease inhibitor. In order to detect the polymorphism of restriction fragment length, screening of high molecular weight DNA from normal human thyroid gland and from nodal euthyroid and diffuse toxic goiters was carried out, using Tg cDNA probes and plasmid DNA containing a Tg cDNA fragment. After restriction with endonuclease Hind III, three Tg-containing fragments were identified both in the normal and nodal euthyroid goiters, whereas restriction with endonuclease Bam HI revealed two Tg-containing fragments in nodal euthyroid and diffuse toxic goiters.
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PMID:[Mapping of the thyroglobulin gene in high molecular weight DNA from the human thyroid in normal conditions and in thyroid pathology]. 256 30

Human thyroglobulin mRNA was isolated from Graves' goitres by size selection of total poly(A)-rich RNA in a sucrose gradient. It sedimented at 33 S, as in other mammalian species, and showed a single component of approximately 8500 bases by gel electrophoresis. cDNA was synthesized from the 33-S RNA by using reverse transcriptase in the presence of human placenta ribonuclease inhibitor and in conditions allowing the formation of long transcripts. The latter was made double-stranded using reverse transcriptase and blunt-ended with nuclease S1. After tailing with dCTP and terminal transferase, the double-stranded cDNA was annealed to pBR322 DNA that had been cleaved at the endonuclease PstI site and tailed with dGTP. The resulting plasmids were used to transform Escherichia coli C600 cells and four cloned recombinants were selected. Each plasmid DNA was shown to contain a sequence complementary to human thyroglobulin mRNA by hybridization with a labeled 33-S mRNA, visualization of cDNA . mRNA hybrids by electron microscopy and filter hybridization selection of mRNA directing the synthesis of immunologically related thyroglobulin peptides in the reticulocyte lysate. The four inserted DNA sequences were 1400 - 1800 base pairs long, two of them showing an homologous sequence of 1100 base pairs. Together, the four cloned DNA fragments represented 63% of the 8500 bases of human thyroglobulin mRNA.
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PMID:Cloning of four DNA fragments complementary to human thyroglobulin messenger RNA. 617 25

Double-stranded thyroglobulin complementary DNA (cDNA) was synthesized from purified 33-S bovine thyroglobulin mRNA. This synthetic structural gene has previously been shown to contain three sites for the restriction endonuclease HindIII, yielding two internal fragments of 1900 and 2500 base pairs respectively. Recombinant molecules were prepared by ligating the HindIII-restricted cDNA to the plasmid pBR322 which had been linearized by the same enzyme. When Escherichia coli was transformed with this mixture, it yielded two kinds of colonies each harboring recombinant plasmids containing one of the two cDNA fragments. Both recombinant molecules hybridized specifically to translatable thyroglobulin mRNA. Sequence homology between the two cloned DNAs could not be detected by cross-hybridization experiments; this argues against the existence of internal structural repetition in thyroglobulin subunits. Together, the two cloned DNA fragments represent 55% of the 8000-base-pair double-stranded thyroglobulin DNA.
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PMID:Molecular cloning of bovine thyroglobulin complementary DNA. Characterization of 2500-base-pair and 1900-base-pair fragments. 625 8

Bovine thyroglobulin mRNA was reverse-transcribed into full-length double-stranded cDNA. The existence of three HindIII restriction endonuclease sites in the 8000-base thyroglobulin structural gene had allowed the easy cloning of the two internal HindIII fragments [Christophe et al. (1980) Eur. J. Biochem. 111, 419-423]. In the present study, the central portion of the structural gene was cloned in Escherichia coli as two individual recombinant plasmids containing 2000-base-pair and 4700-base-pair segments located respectively 5' and 3' relative to the unique BamHI site of the cDNA. BamHI linkers were added to the double-stranded cDNA and, following restriction with HindIII, selective cloning of the 5' (2600-base-pair) and 3' (1000-base-pair) terminal HindIII fragments was achieved by inserting them between the HindIII and BamHI sites of the plasmid pBR322. Partial sequencing of the 1000-base-pair 3'-terminal fragment demonstrated the presence of an A-A-U-A-A-A sequence in the mRNA 14 bases upstream from a poly(A) tract corresponding to the 3' end of the mRNA. Together, the four clones represent about 99% of the thyroglobulin structural gene and provide the starting material for the determination of thyroglobulin primary structure.
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PMID:Molecular cloning of the 8000-base thyroglobulin structural gene. 689 73

The thyroglobulin 33-S mRNA was isolated from sheep thyroid total polysomes. The 33-S RNA, twice purified on a 1% sodium dodecylsulfate/sucrose gradient, was 30-fold enriched in thyroglobulin messenger activity and was estimated as 50% pure by its messenger activity and 80% pure by the electrophoretic profile. It was used as template for complementary DNA synthesis and hybridized up to 85% of the DNA copy with pseudo-first-order kinetics. Back-hybridization kinetics showed that the purified mRNA corresponds to a major kinetic component with a base sequence complexity of 10000 nucleotides as determined by comparison to globin mRNA. Cross-reactivity of [3H]cDNA with liver RNA is less than 10%. Restriction endonuclease digestion of [3H]cDNA yielded a discrete band pattern. The distribution of thyroglobulin mRNA among free polysomes, membrane-bound polysomes and extrapolysomal pools was analyzed using hybridization to the specific [3H]cDNA probe. Free particles were recovered in the supernatant and membrane-bound particles in the pellet after a brief centrifugation of detergent-free homogenate (5 min at 27000 x g: procedure A; 12 min at 130000 x g: procedure B) with precautions taken to avoid cross-contamination. Using procedure A, 80% of thyroglobulin mRNA sequences were found in the membrane-bound fraction. Using procedure B, where contamination of free particles by membrane-bound particles was avoided by high-speed initial centrifugation and further isolation through a discontinuous sucrose gradient, 95-98% of thyroglobulin mRNA sequences were recovered in membrane-bound polysomes. In total polysomes, 89% of thyroglobulin mRNA sequences were in the polysomal area and shifted to ribosomal subunits after EDTA treatment.
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PMID:Subcytoplasmic distribution of thyroglobulin mRNA in normal sheep thyroid. 737 33

The thyroglobulin (TG) gene is organized in 48 exons, spanning over 270 kb on human chromosome 8q24. Up to now, 62 inactivating mutations in the TG gene have been identified in patients with congenital goiter and endemic or non-endemic simple goiter. The purpose of the present study was to identify and characterize new mutations in the TG gene. We report 13 patients from seven unrelated families with goiter, hypothyroidism and low levels of serum TG. All patients underwent clinical, biochemical and imaging evaluation. Single-strand conformation polymorphism (SSCP) analysis, endonuclease restriction analysis, sequencing of DNA, genotyping, population screening, and bioinformatics studies were performed. Molecular analyses revealed seven novel inactivating TG mutations: c.378C>A [p.Y107X], c.2359C>T [p.R768X], c.2736delG [p.R893fsX946], c.3842G>A [p.C1262Y], c.5466delA [p.K1803fsX1833], c.6000C>G [p.C1981W] and c.6605C>G [p.P2183R] and three previously reported mutations: c.886C>T [p.R277X], c.6701C>A [p.A2215D] and c.7006C>T [p.R2317X]. Six patients from two families were homozygous for p.R277X mutation, four were compound heterozygous mutations (p.Y107X/p.C1262Y, p.R893fsX946/p.A2215D, p.K1803fsX1832/p.R2317X), one carried three identified mutations (p.R277X/p.C1981W-p.P2183R) together with a hypothetical micro deletion and the remaining two siblings from another family with typical phenotype had a single p.R768X mutated allele. In conclusion, our results confirm the genetic heterogeneity of TG defects and the pathophysiological importance of altered TG folding as a consequency of truncated TG proteins and missense mutations located in ACHE-like domain or that replace cysteine.
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PMID:New insights into thyroglobulin gene: molecular analysis of seven novel mutations associated with goiter and hypothyroidism. 2316 29