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Biomedical subjects

W F Brandt

Publications and source records attributed to W F Brandt.

At least 19 recordsLinked to original sources

Total solid-phase synthesis and prolactin-inhibiting activity of the gonadotropin-releasing hormone precursor protein and the gonadotropin-releasing hormone associated peptide.

The human gonadotropin-releasing hormone precursor protein, pHGnRH (Met-23-Ile69) (preproGnRH), and three of its fragment peptides, pHGnRH (Asp14-Ile69) (gonadotropin-releasing hormone associated peptide--GAP), pHGnRH (Phe38-Ile69), and pHGnRH (Ser47-Ile69), were assembled in a stepwise solid-phase cosynthesis employing Boc/Bzl tactics and an optimized acylation schedule which included recoupling steps with hexafluoro-2-propanol to help overcome the aggregation of the pendant peptide chains of the peptidoresin during difficult couplings. Reversed-phase high-performance liquid chromatography (HPLC) purification yielded products which were characterized by analytical reversed-phase HPLC, ion-exchange chromatography, capillary zone electrophoresis, SDS-polyacrylamide gel electrophoresis, and ion-spray mass spectrometry to reveal a high degree of homogeneity. Biological characterization demonstrated that only GAP stimulated luteinizing hormone and follicle-stimulating hormone release from primary cultures of rat anterior pituitary cells, while GAP, pHGnRH (Phe38-Ile69), and preproGnRH all inhibited prolactin release, with the latter being the most potent at concentrations comparable to bromocryptine. However, only GAP and pHGnRH (Phe38-Ile69) were able to displace a labeled gonadotropin-releasing hormone agonist from binding to rat pituitary membrane preparations. This first demonstration of significant biological activity with a precursor protein also suggests that the gonadotropin-releasing and prolactin release-inhibiting functions of GAP are not mediated through the same pituitary receptors.

Amino Acid Sequence

Bitis arietans nerve growth factor is a disulphide-linked homodimer.

1. Nerve growth factor from Bitis arietans venom was isolated in high yield and purified to homogeneity using a rapid two-step procedure involving gel exclusion chromatography and reversed-phase HPLC. 2. On polyacrylamide gel electrophoresis in SDS, the NGF migrates as a 25 kDa homodimer and is thus atypical of other Viperid NGFs. 3. Evidence suggests that, unlike mammalian beta NGFs, the subunits of the Bitis arietans homodimer are covalently linked by a disulphide bond(s). 4. Partial sequence analysis shows that only 6 out of the first 21 amino acids are identical with those of cobra NGF including cys-14 and val-21 which are known to be important for NGF activity.

Amino Acid Sequence

Plant histone 2 from wheat germ, a family of histone H2a variants. Partial amino acid sequences.

1. The 0.5 M perchloric acid extract prepared from chromatin of wheat germ, Triticum aestivum, contains a group of histones formerly called plant histones. These can be resolved by gel filtration on Bio-Gel P-60 with subsequent CM-cellulose ion-exchange chromatography into five histone fractions containing families of histones H2A and H2B. 2. The partial amino acid sequences of histone H2A variants H2A(1)Triticum, H2A(2)Triticum and H2A(3)Triticum are presented. Extensive sequence homology exists between calf thymus histone H2A and wheat embryo H2A histones. Differences are largely due to conservative amino acid substitutions and in two of the variants, viz. H2A(2) and H2A(3) to N-terminal extensions of the polypeptide chains.

Amino Acid Sequence

A histone programme during the life cycle of the sea urchin.

The histone complement of chromatin from early gastrula, late gastrula and from fully differentiated gut cells of the sea urchin Parechinus angulosus has been fractionated by molecular sieve and ion-exchange chromatography. Several of the subfractions thus isolated have been characterized by amino acid composition and partial amino acid sequences as a series of variants of the histones H1, H2A and H2B. Specific histone variants are present in chromatin at specific stages of differentiation.

Amino Acid Sequence

The complete amino-acid sequence of histone H2B from the mollusc Patella granatina.

1. From the marine mollusc, Patella granatina, a histone has been isolated. Its primary structure has been established and it has been designated histone H2Bpatella. It consists of a polypeptide chain of 121 amino acids. 2. In the carboxy-terminal two thirds of the molecule there is a highly degree of sequence homology to the corresponding region in calf histone H2B with identical residues in 95% of the positions. 3. In the N-terminal 22 amino acids histone H2Bpatella differs considerably from the mammalian histone H2B and it is shorter by four residues.

Amino Acid Sequence

A histone H2B variant from the embryo of the sea urchin Parenchinus angulosus.

A variant of histone H2B has been isolated from sea urchin embryo (Parenchinus angulosus). Out of the 53 amino acids positioned in the three CNBr-peptides only 26 residues are identical to those in the corresponding positions of calf thymus histone H2B. A similar degree of homology exists between the embryonic variant and the previously characterized variants from sperm cells of the same organism.

Amino Acids

The partial amino acid sequences of the two H2B histones from sperm of the sea urchin Psammechinus miliaris.

Two new histone H2B variants have been isolated from sperm cells of the sea urchin Psammechinus miliaris. They have been designated sperm histone H2B(1) Psammechinus and sperm histone H2B(2) Psammechinus. Both histones are highly homologous to the previously described sperm histones from Parechinus angulosus (Strickland et al. (1977) Eur. J. Biochem. 77, 263--275 and 277--286). The amino acid sequences of the Ps. miliaris sperm histones, though highly homologous, are not identical to the amino acid sequence derived from the codon sequence of a histone H2B gene, characterized from the same organism by Birnstiel et al. ((1977) Nature 266, 603--607).

Amino Acid Sequence

The complete amino-acid sequence of histone H2B(3) from sperm of the sea urchin Parechinus angulosus.

The primary structure of a third H2B histone isolated from sperm of the sea urchin Parechinus angulosus has been determined. H2B(3) consists of a polypeptide chain of the following 148 amino acid residues: Pro-Arg-Ser-Pro-Ala-Lys-Thr-Ser-Pro-Arg-Lys-Gly-Ser-Pro-Arg-Lys-Gly-Ser-Pro-Arg-Lys-Gly-Ser-Pro-Ser-Arg-Lys-Ala-Ser-Pro-Lys-Arg-Gly-Gly-Lys-Gly-Ala-Lys-Arg-Ala-Gly-Lys-Gly-Gly-Arg-Arg-Arg-Arg-Val-Val-Lys-Arg-Arg-Arg-Arg-Arg-Arg-Glu-Ser-Tyr-Gly-Ile-Tyr-Ile-Tyr-Lys-Val-Leu-Lys-Gln-Val-His-Pro-Asp-Thr-Gly-Ile-Ser-Ser-Arg-Ala-Met-Ser-Val-Met-Asn-Ser-Phe-Val-Asn-Asp-Val-Phe-Glu-Arg-Ile-Ala-Ser-Glu-Ala-Ser-Arg-Leu-Thr-Ser-Ala-Asn-Arg-Arg-Ser-Thr-Val-Ser-Ser-Arg-Glu-Ile-gln-Thr-Ala-Val-Arg-Leu-Leu-Leu-Pro-Gly-Glu-Leu-Ala-Lys-His-Ala-Val-Ser-Glu-Gly-Thr-Lys-Ala-Val-Thr-Lys-Tyr-Thr-Thr-Ser-Arg. H2B(3) Parechinus closely resembles HIB(2) Parechinus but has one additional repeating pentapeptide in the amino-terminal region and a serine replacing glycine at position 98.

Amino Acid Sequence

Histone H2B variants from the erythrocytes of an amphibian, a reptile and a bird.

Histones H2B have been isolated from the terminally differentiated diploid erythrocytes of three different classes, amphibia (Xenopus laevis), reptilia (Crocodilus niloticus) and aves (Gallus domesticus). Partial amino acid sequences revealed three regions of sequence variation, each variant involving a single amino acid substitution.

Alligators and Crocodiles

Abnormal behaviour of proline in the isothiocyanate degradation.

It has been observed that proline residues often initiate overlaps during sequenator analysis. The cause has been shown to be an abnormally slow cleavage reaction. The kinetics of the cleavage reaction has been studied and found to obey pseudo-first-order kinetics. There are considerable differences in reaction rates depending on the position of proline in the sequence, as demonstrated for the four prolines in the N-terminal section of the H2B histone from chicken.

Amino Acid Sequence