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H Niall

Publications and source records attributed to H Niall.

18 recordsLinked to original sources

The primary structure of aphrodisin.

Aphrodisin is a protein which is secreted in hamster vaginal discharge and acts via the vomeronasal organ of the accessory olfactory system to elicit copulatory behavior in male hamsters. The complete primary structure of aphrodisin was determined by sequence analysis of intact aphrodisin after unblocking the amino terminus with pyroglutamate aminopeptidase and from peptides generated by trypsin and Lys-C digests. Alignment of the peptides was obtained from sequence analysis of peptides from cyanogen bromide and hydroxylamine cleavages. The protein consists of 151 residues of Mr = 17,000. It has disulfide bonds linking cysteine residues at positions 38 and 42 and at 57 and 149. N-acetylglucosamine residues are linked to asparagines at positions 41 and 69. Based on its similarity to the major urinary proteins in rats and mice, aphrodisin is a putative member of the alpha 2u-globulin superfamily of extracellular proteins.

Amino Acid Sequence↗

Porcine relaxin. Gene structure and expression.

A porcine genomic cosmid library was constructed to study the structure and regulation of the porcine relaxin gene. Two overlapping cosmids containing relaxin-specific sequences were isolated, and a 9-kilobase BamHI fragment containing the porcine relaxin gene was sequenced. The sequence derived from these cosmids was used to characterize the relaxin gene transcription unit utilized in the pregnant ovary. Analysis of chromosomal and cosmid DNA has shown that porcine relaxin is encoded by a single copy gene, comprising two exons separated by a 5.5-kilobase intron. The gene contains elements representing two classes of repeated sequences homologous with the human Alu and Kpn families. The transcriptional initiation site of this gene was located by primed extension and direct sequencing of relaxin-specific cDNA. Furthermore, the promoter elements were mapped and sequenced, and transcriptional activity was demonstrated. The promoter contained sequences with homology to regions conserved within retroviral long terminal repeats and within the adenovirus E4 promoter.

Animals↗

Biosynthesis of calcitonin by human lung cancer cells.

The ectopic secretion of calcitonin (CT) by a wide variety of nonthyroidal human tumors has been studied by CT RIA, but little information is available concerning the biosynthesis of CT in these tumors. In the present study, a human lung cancer cell line (BEN), secreting high mol wt forms of CT was investigated to characterize the CT gene products synthesized. When conditioned medium from BEN cells was chromatographed through a Bio-Gel P-30 column, larger species of immunoreactive CT were detected with mol wt of approximately 8,000 and 18,000. Little, if any, CT of 3,500 mol wt was detected. To examine CT gene products produced in BEN cells, poly A+ RNA was isolated from BEN cells and subjected to cell-free translation assays and DNA/RNA hybridization assays. In the wheat germ cell-free translation assay, a single BEN cell product which migrated on sodium dodecyl sulfate-polyacrylamide gels with an apparent mol wt of 17,000 could be specifically immunoprecipitated with CT antisera. A similar sized CT-related translation product is produced in wheat germ assays programmed by mRNA prepared from human medullary thyroid carcinomas. In DNA/RNA hybridization assays, a single BEN cell mRNA species of 1,000 base pairs, identical in size to human thyroidal CT mRNA, hybridized to a radiolabeled CT cDNA probe. Hybridization of the CT cDNA probe with BEN cell mRNA was confirmed by RNA dot blot hybridization and cytoplasmic RNA blotting procedures. These results indicate that larger mol wt forms of CT secreted by BEN cells are derived from a translation product and a mRNA which are of similar, if not identical, size as CT gene products produced in human thyroidal tissues. The inability of lung tumor cells to process the CT precursor to calcitonin of 3,500 mol wt may reflect a lack of specific prohormone processing enzymes in these tumor cells or may be due to structural polymorphism in the CT precursor expressed in the lung cells.

Calcitonin↗

The structure and biosynthesis of epidermal growth factor precursor.

The structure of mouse submaxillary gland epidermal growth factor (EGF) precursor has been deduced from complementary DNAs. The mRNA is approximately 4800 bases and predicts prepro EGF to be a protein of 1217 amino acid residues (133 X 10 Mr). EGF (53 amino acid residues) is flanked by polypeptides of 188 and 976 residues at its carboxy and amino termini, respectively. The amino terminus of the precursor contains seven cysteine-rich peptides that resemble EGF. Towards the carboxy terminus is a 20-residue hydrophobic membrane spanning domain. The mild portion of the EGF precursor shares a 33% homology with the low density lipoprotein receptor, which extends over 400 amino acid residues. These features suggest that EGF precursor could function as a membrane-bound receptor. RNA dot-blot analysis and in situ hybridization show EGF mRNA to be abundant in the submaxillary gland, kidney and incisor tooth buds. Lower EGF mRNA levels were found in the lactating breast, pancreas, small intestine, ovary, spleen, lung, pituitary and liver. In the kidney EGF mRNA was most abundant in the distal convoluted tubules. Analysis of EGF precursor biosynthesis in organ culture of the submaxillary gland and kidney showed differential processing of the precursor in the two tissues. In the submaxillary gland immunoreactive low molecular weight EGF was produced, but in the kidney the high molecular weight precursor was not processed. In the distal convoluted tubule of the kidney EGF precursor may act as a receptor that is involved in ion transport.

Amino Acids↗

Relaxin gene expression in human ovaries and the predicted structure of a human preprorelaxin by analysis of cDNA clones.

In earlier studies we identified in a human genomic library a gene (human relaxin gene H1) coding for a relaxin-related peptide. We now have evidence that the human genome possesses an additional relaxin-related gene (designated human relaxin gene H2) which appears to be selectively expressed in the ovary during pregnancy. Nucleotide sequence analysis revealed striking differences in the predicted structures of relaxin encoded by these two genes. Chemical synthesis of biologically active relaxin based on the sequence obtained from ovarian cDNA clones confirmed that the expressed gene (H2) encodes an authentic human relaxin. The expressed gene appears to be transcribed into two different sized mRNAs and preliminary evidence suggests that the mRNA transcripts possess different 3'-untranslated regions. There was no evidence for the expression of human relaxin gene H1 in the ovary and so far it is unclear whether gene H1 is expressed in another tissue or whether it represents a pseudogene. From the sequence data presented here it will now be possible to construct oligonucleotide probes and raise antibodies against synthetic peptides which could then be used to identify sites of relaxin biosynthesis and specifically quantitate the expression from either the H1 or H2 relaxin genes.

Amino Acid Sequence↗

Characterization and localization of calcitonin messenger ribonucleic acid in rat thyroid.

DNA/RNA hybridization assays have been used to examine calcitonin (CT) RNA production in normal rat thyroids. A cloned CT cDNA which codes for the entire rat CT precursor was radiolabeled to a high specific activity and used in hybridization assays to explore 1) the sizes and relative quantities of CT RNA extractable from thyroids obtained from rats of differing ages; 2) the effect of calcium on the in vitro production of CT RNA in rat thyroid tissue slices; and 3) the localization, by hybridization histochemistry, of C cells in rat thyroid that contain CT RNA. The relative concentrations of CT RNA, per microgram of total thyroid RNA, increased remarkably with age, with 14-month-old rats having approximately 14-fold elevated concentrations of thyroidal CT RNA compared to 19-day-old rat fetuses. Of interest was the finding that a second larger species of CT RNA is only evident in thyroids obtained from 14-month-old animals. The effect of calcium on the in vitro production of CT RNA in rat thyroid tissues was studied over 3- and 6-h periods. Although previous investigations have shown that calcium causes an immediate and linear increase in CT secretion from the thyroid gland, no net increase vs. controls in the amount of CT RNA extractable from calcium-stimulated thyroid slices was observed. Finally, hybridization histochemistry, a technique that identifies in fixed tissue sections those areas that contain a specific mRNA population, was used to localize C cells in the thyroid containing CT RNA. Specific areas of rat thyroid hybridized with the CT cDNA probe and autoradiography revealed these areas to be parafollicular cells located only in the central portion of the thyroid lobes, mRNA quantities detected by hybridization histochemistry showed little variation over the central area of the thyroid, indicating the C cells in this region of the thyroid are accumulating CT RNA at approximately the same rate.

Animals↗

Porcine relaxin: molecular cloning and cDNA structure.

Relaxin is a peptide hormone produced by the corpora lutea of ovaries during pregnancy, softening and lengthening the ligaments of the pelvis and softening the cervix in order to make childbirth easier. In attempts to determine the nucleotide sequence coding for relaxin, recombinant DNA techniques were used to obtain a cDNA clone bank from total mRNA isolated from the ovaries of pigs in late pregnancy. Clones were screened using cDNA initiated by synthetic oligonucleotide primers coding for the Trp Val Glu Ile sequence of the porcine relaxin B chain. The synthetic undecamer [5'-ATCTCCACCCA-3'] was found to prime a specific 32P-labeled cDNA of approximately 300 nucleotides containing B chain and signal peptide coding sequences, as verified by nucleic acid sequence analysis. This cDNA was used to probe the ovarian clone bank. Several clones containing large inserts which hybridized to this probe were subjected to sequence analysis and some of these were found to contain the preprorelaxin coding region, comprising a signal peptide of 24 amino acids, a B chain of 32 amino acids, a large C peptide of 104 amino acids, and an A chain of 22 amino acids. From the amino acid sequence of prorelaxin derived in this way, it appears that the processing of prorelaxin involves two enzymes with chymotrypsin-like and trypsin-like specificity, respectively. In comparisons of porcine and rat preprorelaxins, the C region had as much amino acid sequence homology as the B and A chains. The C region is also rich in charged amino acids, suggesting a role for it beyond simply ensuring proper disulfide bond formation.

Animals↗

Molecular cloning and characterization of cDNA sequences coding for rat relaxin.

Using a synthetic oligonucleotide primer, cloned DNA fragments, each containing the entire coding sequence of rat relaxin, have been isolated from a clone 'bank' of ovarian mRNA sequences. The nucleotide sequence of these clones demonstrates that relaxin is synthesized as a preprorelaxin molecule with an unexpectedly large connecting peptide of 105 amino acid residues.

Amino Acid Sequence↗

Hybridization histochemistry: use of recombinant DNA as a "homing probe" for tissue localization of specific mRNA populations.

A procedure, termed hybridization histochemistry, has been developed to locate in specially prepared whole sections of tissue those areas which contain specific mRNA populations. Three 32P-labelled recombinant DNA probes were used; one complementary to endorphin mRNA, one complementary to growth hormone mRNA and one a fragment of bacterial DNA. The specific cell populations or tissue regions binding the probe were identified by autoradiography. Hybridization histochemistry is thus similar in principle to immunohistochemical procedures. The endorphin probe consistently labelled the rat pituitary pars intermedia which is known to be particularly rich in the corresponding mRNA. Likewise the growth hormone probe specifically labelled the anterior pituitary. Control tissues were not labelled by either probe, nor did the bacterial DNA probe significantly label any tissue, providing further evidence of the specificity of the procedure. These results, which are highly reproducible, indicate that the mRNA species for endorphin and growth hormone are present in whole sections of pituitary in a physical state which leaves them accessible to cDNA probes. This initial success provides encouragement that hybridization histochemistry, with further refinement, should have wide applicability in the localization and semi-quantitative analysis of intracellular mRNA in whole frozen sections of tissue.

DNA, Recombinant↗

Structure of a genomic clone encoding biologically active human relaxin.

Relaxin is a peptide hormone synthesized in the corpora lutea of ovaries during pregnancy and is released into the blood stream prior to parturition. Its major biological effect is to remodel the mammalian reproductive tract to facilitate the birth process. Determination of the structure of human relaxin is thus a first step in opening up the possibility of clinical intervention in cases of difficult labour. However, the limited availability of human ovaries during pregnancy has prevented both direct amino acid sequence determination and isolation of cDNA clones obtained from relaxin producing tissue. Our approach has therefore been to screen directly for a human relaxin gene using an homologous porcine relaxin cDNA probe. We report here the successful identification of a genomic clone from which the structure of the entire coding region of a human preprorelaxin gene has been determined. Synthesis of biologically active relaxin has shown that the novel gene structure described herein codes for an authentic human relaxin. We believe this is the first successful synthesis of a biologically active hormone whose structure was predicted solely from the structure of a genomic clone.

Amino Acid Sequence↗

Complementary DNA sequences of ovarian follicular fluid inhibin show precursor structure and homology with transforming growth factor-beta.

Inhibin, a specific and potent polypeptide inhibitor of the secretion of follicle-stimulating hormone (FSH), of gonadal origin and thus a potential contraceptive, may constitute a missing link in the mechanism controlling the differential secretion of the pituitary gonadotropins. Inhibin-like bioactivity has been reported in various fluids and extracts of testis and in ovarian follicular fluid. Although there have been several attempts to purify inhibin from seminal plasma, purification from follicular fluid has been more successful (refs 14-16; for review see ref. 17). We have previously isolated two forms (A and B) of inhibin from porcine follicular fluid. Each form comprised two dissimilar subunits of relative molecular mass (Mr) 18,000 (18K, referred to here as the alpha-subunit) and 14K (the beta-subunit), crosslinked by one or more disulphide bridge(s). Forms A and B differ in the N-terminal sequence of their 14K subunit. Preliminary structural characterization of porcine and bovine ovarian inhibins shows that they have similar properties. Here, we have used the N-terminal amino-acid sequence data on the subunits of each inhibin to identify cloned complementary DNAs encoding the biosynthetic precursors and report that inhibins are the product of a gene family that also includes transforming growth factor-beta (TGF-beta) and whose structural organization is similar to that of pituitary and placental glycoprotein hormones.

Amino Acid Sequence↗