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W Engel

Publications and source records attributed to W Engel.

At least 163 records · Page 9Linked to original sources

The lack of protamine 2 (P2) in boar and bull spermatozoa is due to mutations within the P2 gene.

The nuclei of spermatozoa in all mammals examined so far contain P1 protamine. A second protamine variant, protamine P2, has to date been isolated only from human and murine spermatozoa where it represents the major fraction of basic nuclear protein. In order to elucidate the reason for this unusual distribution of the protamine variants among mammals we have investigated the expression of protamine P2 in boar and bull. It can be shown that also in these species protamine 2 is transcribed and translated on low levels. Various mutational events though have altered the primary structure of the protein: In boar, a deletion of 8 aminoacids has removed a sequence motif from the amino-terminus of the molecule, which highly probable is of functional relevance. The bovine sequence, as a consequence of numerous point mutations has accumulated neutral and hydrophobic aminoacids which reduce the affinity of the protamine 2 to DNA.

Amino Acid Sequence↗

Molecular cloning of human preproacrosin cDNA.

Complementary DNA-clones for human preproacrosin have been isolated from a human testis cDNA library in lambda gt11. The nucleotide sequence of the 1402 bp cDNA insert includes a 20 bp 5' noncoding region, an open reading frame of 1263 bp corresponding to 421 amino acids (45.9 kdalton), and a 105 bp 3' untranslated region. The deduced amino acid sequence is compared with that recently evaluated from a cDNA clone for boar preproacrosin. The sequence identity is 70%; the leader sequence, the catalytic triad (His, Asp, Ser; which is characteristic for serine proteinases) and the positions of the cysteine residues crosslinking the light and the heavy chain of the active enzyme, acrosin, are conserved in both species. At the C-terminal end, a proline-rich sequence is present in both species; this may represent the species-specificity of acrosin.

Acrosin↗

Genomic sequences of human protamines whose genes, PRM1 and PRM2, are clustered.

Protamines are small, arginine-rich proteins involved in the condensation of sperm chromatin. Using cDNA clones, we have isolated the genes for both human protamines, i.e., protamine 1 (PRM1) and protamine 2 (PRM2), from a human cosmid library. Each of these genes contains a single intron consisting of 91 and 163 bp, respectively. From the 5'-noncoding region of PRM1 664 bp and from the 5'-noncoding region of PRM2 902 bp were determined. Both genes contain typical TATAA and CAAT boxes at conventional distances from the transcription start points, which by using primer extension experiments could be assigned to nucleotides -91 and -110 for PRM1 and PRM2 genes, respectively. Comparison of the 5'-noncoding regions of PRM1 and PRM2 genes reveals 12 different motifs in common, 8 of which are clustered in both genes and could reflect regulatory elements for testis- and spermatid-specific gene expression. Both human genes have been found to be clustered at a distance of 4.8 kb. Comparison of the genomic organization of human and mouse protamine genes revealed greater similarities between the two in the 5'-noncoding region.

Amino Acid Sequence↗

Nucleotide sequence of the gene for human transition protein 1 and its chromosomal localization on chromosome 2.

Transition protein 1 (TNP1) is a highly basic nuclear protein of 54 amino acids that is found in haploid spermatogenic cells during the period of transition of histones to protamines. Using the cDNA clone for human TNP1, we have isolated the gene encoding human TNP1 from human genomic libraries. The gene contains an intron of 200 bp; 1104 bp of the 5'- and 276 bp of the 3'-noncoding region have been sequenced. Comparison with the rat TNP1 gene yielded a similarity of 77% over the region between the transcription start point and the polyadenylation signal. The gene contains typical CAAT and TATAA boxes at conventional distances from the transcriptional start site. Using a series of human-rodent somatic cell hybrids containing variant complements of human chromosomes, the TNP1 gene was found to cosegregate with human chromosome 2. By in situ hybridization, the gene was assigned to the q35 and q36 bands of the long arm of chromosome 2. This chromosomal region encodes several genes, including TNP1, that are located on murine chromosome 1.

Amino Acid Sequence↗

Mouse preproacrosin: cDNA sequence, primary structure and postmeiotic expression in spermatogenesis.

The primary structure of mouse preproacrosin was deduced by nucleotide sequencing of cDNA clones isolated from a mouse testis cDNA library. The largest cDNA, with 1373 bp, consists of a 11-bp 5'untranslated sequence, a 1254-bp open reading frame terminated by a TGA triplet and a 105-bp 3' untranslated end, including one potential polyadenylation signal. The NH2-terminus of the polypeptide contains a hydrophobic 15-amino acid signal peptide. This cleavable signal sequence is followed by 403 amino acids, representing the acrosin light and the heavy chain of 23 and 380 amino acid residues, respectively. The proteolytic active site segments His, Asp and Ser are part of the heavy chain, as well as a proline-rich COOH-terminus, which is not present in any other serine proteinase studied so far. Furthermore the postmeiotic expression of the preproacrosin gene during mouse spermatogenesis was studied.

Acrosin↗

[Analysis of alpha 1-antitrypsin deficiency using DNA methods].

Deficiency of alpha 1-antitrypsin can be diagnosed by DNA methods that are quick and also give reproducible results. Direct DNA analysis of the M, S, and Z alleles of the alpha 1-antitrypsin gene is possible when two molecular biology techniques are combined: a part of the gene is enzymatically replicated according to the pattern of the human DNA that is to be investigated. On hybridization with the various allele-specific pieces of synthetic DNA the copies that have come about in this way give a signal corresponding to the genotype. Only a small amount of material (0.5 microgram DNA) is needed for the investigation. This method is thus suitable for prenatal diagnosis when this is requested by members of a family known to be affected. A total of 53 samples were typed and investigations were carried out in six families.

Alleles↗

Molecular cloning of preproacrosin and analysis of its expression pattern in spermatogenesis.

Complementary DNA clones for the boar preproacrosin have been isolated from a randomly primed testis cDNA library in lambda gt10 and from an oligo(dT)-primed testis cDNA in lambda gt11. The nucleotide sequence of the 1418-bp cDNA insert includes a 46-bp 5'-untranslated region, an open reading frame of 1248 bp corresponding to 416 amino acids (45.59 kDa) and a 121-bp 3'-untranslated region. The deduced amino acid sequence includes the active-site residues histidine, asparagine and serine of the catalytic triad of the serine proteinase super-family and is colinear with that determined by amino acid sequencing of the boar acrosin light chain and of a small region of the NH2-terminal sequence of the heavy chain. The preproacrosin cDNA contains at the 3' end a 381-bp sequence which codes for an amino acid sequence not yet found in any other serine proteinase. This amino acid sequence is rich in proline (42 out of 127 amino acids) and is suggested to be involved in the recognition and binding of the spermatozoa to the zona pellucida of the ovum. The mRNA for preproacrosin is synthesized as an approximately 1.6-kb-long molecule only in the postmeiotic stages of boar and bull spermatogenesis.

Acrosin↗

The gene encoding the human preproacrosin (ACR) maps to the q13-qter region on chromosome 22.

Human proproacrosin is specified by a single gene (ACR). Using a series of human-rodent somatic cell hybrids containing variant complements of human chromosomes, the preproacrosin gene was found to cosegregate with human chromosome 22. Somatic cell hybrids containing translocation chromosomes carrying parts of chromosome 22 were used to locate the preproacrosin gene to the region 22q13-22qter. By probing the DNA of 82 individuals, a restriction fragment length polymorphism was found with SstI in 14 cases.

Acrosin↗

The treatment of patients with asthma by specialists and generalists.

The authors investigated possible differences between specialists and generalists in the intensity with which they treat patients with asthma by studying the care of 283 patients between the ages of six and 40 provided by 13 allergists and 40 randomly selected physicians in two primary care specialties: pediatrics and family practice. After excluding patients with more than one physician, allergists' patients were nearly identical to primary care physicians' patients in the frequency and duration of symptoms, and they had a similar number of asthma-related emergency room visits in the previous year and asthma-related hospitalizations in the preceding 3 years. The allergists treated their patients significantly more intensively than did the primary care physicians. Sixty-two percent of allergists' patients had received oral corticosteroids in the preceding year compared with 30% of primary care patients (P less than 0.001). More of the allergists' patients had received oral corticosteroids throughout the year (9% vs. 0%, respectively, P less than 0.01). They were also more likely to have used corticosteroid inhalers (46% vs. 19%) and a greater number of asthma medications (mean = 2.8 vs. 1.3). In a separate survey of the same physicians, using clinical vignettes, the allergists were more likely to prescribe corticosteroid tablets and inhalers. These findings suggest that specialists and generalists differ in the intensity with which they treat patients with asthma and cannot be explained by patient selection or severity differences.

Administration, Inhalation↗

Nucleotide sequences and expression of cDNA clones for boar and bull transition protein 1 and its evolutionary conservation in mammals.

During spermatogenesis, the nucleoproteins undergo several dramatic changes as the germinal cells differentiate to produce the mature sperm. With nuclear elongation and condensation, the histones are replaced by basic spermatidal transition proteins, which are themselves subsequently replaced by protamines. We have isolated cDNA clones for one of the transition proteins, namely for TP1, of bull and boar. It turned out that TP1 is a small, but very basic protein with 54 amino acids (21% arginine, 19% lysine) and is highly conserved during mammalian evolution at the nucleotide as well as at the amino-acid level. Gene expression is restricted to the mammalian testis, and the message first appears in round spermatids. Thus production of TP1 is an example of haploid gene expression in mammals. The size of the mRNA for TP1 was found to be identical in 11 different mammalian species at around 600 bp. Hybridization experiments were done with cDNAs from boar and bull, respectively. The positive results in all mammalian species give further evidence for the conservation of the TP1 gene during mammalian evolution and its functional importance in spermatid differentiation.

Amino Acid Sequence↗

Nucleotide sequence of a cDNA encoding rat protamine and the haploid expression of the gene during rat spermatogenesis.

The nucleotide sequence of a 342-base cDNA encoding the rat protamine has been determined. This insert, isolated from a rat testis cDNA library, encodes a polypeptide of 50 amino acids of which 29 are arginine 9 are cysteine and 2 are tyrosine. The insert contains the complete 3'-noncoding region of 170 bases and 18 bases of the 5'-noncoding region. Hybridization of the protamine cDNA with the RNA prepared from testes of prepubertal and sexually mature rats revealed that protamine mRNA is first detectable as a 600 nucleotide long molecule in the 35-day old testis containing around 15% of round spermatids but not in testis of younger animals. The RNA of 50-day old and sexually mature rats was found to contain a second protamine mRNA which is around 500 nucleotides in length. Hybridization of the protamine cDNA with the RNA of isolated spermatids of the mature testis resulted in 2 prominent hybridization signals (600 and 500 bp) while the faint signal obtained with the RNA of pachytene spermatocytes (600 bp) was found to be due to contamination of the cell preparation by spermatids. After digestion of the mRNAs with ribonuclease H a single hybridization band even smaller than 500 nucleotides was obtained. As demonstrated on testis sections the transcripts are confined to the central layers of the tubuli seminiferi corresponding to the spatial arrangement of corresponding to the spatial arrangement of postmeiotic cells. The results indicate that the protamine gene in the rat is postmeiotically expressed and that the mRNA undergoes post-transcriptional processing that includes a reduction in molecular size with respect to the poly-(A)+ tail.

Amino Acid Sequence↗

Structure-activity relationships and pharmacological profile of selective tricyclic antimuscarinics.

The discovery of the M1-selective receptor antagonist pirenzepine was the impetus for a research project directed towards the development of selective muscarinic antagonists. In the pursuit of this objective, compounds with different selectivity profiles have been found. AF-DX 116 was the first cardioselective antagonist synthesized. Subsequently novel M2 receptor antagonists have been discovered with higher potency and selectivity. Moreover, a pirenzepine-type compound UH-AH 37 has been identified that, in contrast to pirenzepine, shows a higher affinity for ileal than for atrial muscarinic receptors. Among tricyclic muscarinic receptor antagonists three different selectivity profiles have been identified, namely: M1 greater than M3 greater than M2, Msm for pirenzepine; M2 greater than M1 greater than M3, Msm for AF-DX 116, AF-DX 384, AQ-RA 741; and Msm congruent to M1 greater than M2, M3 for UH-AH 37 and its (+) enantiomer.

Antidepressive Agents, Tricyclic↗