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R D Horstmann

Publications and source records attributed to R D Horstmann.

At least 37 records · Page 2Linked to original sources

A susceptibility locus for Parkinson's disease maps to chromosome 2p13.

Parkinson's disease (PD) is a common degenerative neurologic disorder, which is pathologically characterized by a selective degeneration of dopaminergic neurons of the substantia nigra pars compacta, and the presence of characteristic eosinophilic inclusions, known as Lewy-bodies in affected brain areas. The cause of PD is unknown but, in recent years, genetic factors have been implicated in the aetiology of the disease. Firstly, clinico-genetic, epidemiologic and twin studies revealed inheritable effects and questioned earlier studies which had denied such influences. Secondly, several family studies suggested autosomal-dominant inheritance of syndromes which, to variable degrees, resembled sporadic PD clinically and in some cases also neuropathologically. Recently, a disease locus has been mapped to chromosome 4q21-22 in a large Mediterranean pedigree, in which disease expression is clinically and pathologically within the spectrum of sporadic PD; being atypical only for a relatively young mean age at onset of 46 years and rapid course of 10 years from onset to death. In affected individuals of this family and of three unrelated Greek kindreds, a putative disease-causing mutation has been identified in the gene encoding alpha-synuclein. With the first variant being defined, genetic heterogeneity has become apparent, as in other families parkinsonism was not linked to the 4q-locus and was not associated with the alpha-synuclein mutation (unpublished data). We describe a different genetic locus that appears to be involved in the development of parkinsonism closely resembling sporadic PD including a similar mean age of onset (59 years in the families, 59.7 years in sporadic PD; ref. 12). This locus was detected in a group of families of European origin. In two of these families, there is genetic evidence for a common founder. The penetrance of the mutation appears to be low, most likely below 40%. This is compatible with a possible role of this locus not only in familial, but also in typical (sporadic) PD.

Adult↗

Putative serine/threonine protein kinase expressed in complement-resistant forms of Entamoeba histolytica.

Entamoeba histolytica is susceptible to complement attack in its lumen-dwelling state and develops complement resistance during pathogenic tissue invasion. As experimental evidence suggests that this change in phenotype is accompanied by a change in gene expression, we constructed a subtractive cDNA library to identify genes involved. Poly(A) + RNA from complement-sensitive trophozoites was subtracted from single stranded cDNA derived from complement-resistant ones. Transcripts enriched in the library were found to code for a putative polypeptide comprising all sequence elements characteristic for serine/threonine protein kinases. The gene contains an intron of 46 nucleotides and two polyadenylation sites. Northern-blot analyses confirmed that the gene is expressed in both tissue-derived and laboratory-grown forms of complement-resistant E. histolytica.

Amino Acid Sequence↗

Spontaneous release of cysteine proteinases but not of pore-forming peptides by viable Entamoeba histolytica.

Invasive properties of pathogenic Entamoeba histolytica have been postulated to depend on the secretion or release of cysteine proteinases and pore-forming peptides (amoebapores) by trophozoites. To establish whether such toxic molecules are released by viable trophozoites or upon cellular disintegration, amoebae were maintained in various culture media, and activities in supernatants were monitored over time in correlation to cellular integrity. By measuring the release of the cytoplasmic marker enzyme NADP(+)-alcohol dehydrogenase, it became apparent that release of amoebapore was accompanied by cellular disintegration. In contrast, considerable quantities of cysteine proteinases were found to be present in culture supernatants also when amoebae remained intact. Treatment of amoebae with concanavalin A, bacterial lipopolysaccharides or the calcium ionophore A23187 did not result in amoebapore secretion suggesting that here target cell contact is required as an essential stimulus.

Animals↗

Sequence and PCR-RFLP analysis of 14 novel BoLA-DRB3 alleles.

The genetic diversity of the bovine class II DRB3 locus was investigated by polymerase chain reaction (PCR) amplification and DNA sequencing of the first domain exon. Studying 34 animals of various cattle breeds, 14 previously unrecognized DRB3 alleles were identified. In three alleles, amino acid substitutions were observed that had not been previously found in bovine DRB3, but occurred at the same position in bovine DQB and in the DRB alleles of other mammals. For all newly identified alleles, the restriction fragment length polymorphism (RFLP) patterns of PCR products obtained with the enzymes RsaI, BstYI, and HaeIII were compared with patterns of 38 previously described alleles. Altogether, eleven novel PCR-RFLP types were defined. Twelve out of the 42 PCR-RFLP types identified so far were not found to be fully informative because they corresponded to more than one allelic sequence. PCR-RFLP may therefore be a rapid and useful method for DRB3 typing in cattle families, but for studies on outbred populations, sequencing and hybridization techniques are required.

Alleles↗

Location of the complement factor H binding site on streptococcal M6 protein.

The surface M protein of group A streptococci binds factor H, a regulatory protein of the alternative complement pathway, which may contribute to the antiphagocytic activity of the M molecules. To locate the factor H binding domain in the alpha-helical coiled-coil structure of the M molecule, the M protein was cleaved with pepsin at pH 5.8, which separates the molecule approximately in half. Western blot (immunoblot), amino acid sequence, and mass spectrometric analyses revealed that factor H bound to a 14.6-kDa C-terminal fragment of the M molecule. Competitive inhibition of factor H binding to the 14.6-kDa fragment with M protein peptides localized the binding site to amino acids 256 to 292. This segment is located within the surface-exposed region of the M6 protein, identified as the C-repeat region, whose sequence is conserved among heterologous M and M-like molecules. These studies also identified a second pepsin-susceptible site with the sequence ELAK located within the cell wall-associated region of the M molecule.

Amino Acid Sequence↗

HLA-D alleles associated with generalized disease, localized disease, and putative immunity in Onchocerca volvulus infection.

Human infections with the tissue nematode Onchocerca volvulus result in a variety of clinical conditions that possibly include protective immunity. In a West African area hyperendemic for human onchocerciasis, 120 residents were classified according to clinical and laboratory findings as presenting with generalized onchocerciasis, localized onchocerciasis, or as being putatively immune. The three groups differed in the distribution of HLA-D variants as determined by DNA typing. The most pronounced differences were found among alleles of the DQ loci. The haplotype DQA1*0501-DQB1*0301 was significantly more frequent among putatively immune individuals than among patients with generalized or localized disease. Conversely, DQA1*0101-DQB1*0501 and, independently, the allele DQB1*0201 were more frequent in generalized disease than in localized disease or putative immunity. In these correlations, the frequencies of allelic variants were in localized disease intermediate to those of the two other groups. The only distinct association found with localized disease was that of the DP allele DPB1*0402. The findings indicate that HLA-D variants influence the course of O. volvulus infection and help to define a state that may reflect protective immunity.

Adolescent↗

Complement sensitivity of Entamoeba histolytica and various nonpathogenic amoeba species.

Culture forms of the potentially pathogenic Entamoeba histolytica were compared to those of the nonpathogenic species of E. dispar, E. hartmanni, E. coli, Endolimax nana, and E. moshkovskii regarding the sensitivity to lysis by human complement activated through the alternative pathway. E. dispar was found unique in its complement resistance; all other nonpathogenic isolates resembled E. histolytica in that they were complement sensitive. Thus, a state of complement sensitivity is not a particular property of potentially pathogenic amoebae.

Animals↗

Comparison of pore-forming peptides from pathogenic and nonpathogenic Entamoeba histolytica.

Similar to the findings obtained with pathogenic Entamoeba histolytica, nonpathogenic isolates were found to kill mammalian cells in vitro, and cell extract caused pore formation in liposome membranes. A pore-forming peptide termed APnp was isolated from a nonpathogenic isolate using the schedule developed for the purification of APp or amoebapore, the homologous peptide of the pathogenic isolate HM-1:IMSS. Compared to APp, the specific activity of APnp in pore formation was 60% lower. cDNA sequencing indicated 95% identity of the primary structures of APnp and APp, and secondary structure predictions revealed a high degree of similarity. Notably, a glutamic acid residue at position 2 of APp is in APnp replaced by proline, which shortens one of the two amphipathic alpha-helices considered crucial for the pore-forming function. This structural divergence of the two peptides might explain the difference in their pore-forming activities.

Amino Acid Sequence↗

Induction of complement resistance in cloned pathogenic Entamoeba histolytica.

The lytic effect of complement activated through the alternative pathway (AP) was studied on pathogenic and nonpathogenic Entamoeba histolytica recently isolated from stool samples. Recent nonpathogenic isolates were nearly unaffected by exposure to AP whereas recent pathogenic stool isolates were highly susceptible to AP dependent complement-mediated lysis. Complement susceptible pathogenic stool isolates developed complement resistance in vivo during hamster liver passage and in vitro during cultivation in the presence of increasing concentrations of normal human serum (NHS). Since a clone of pathogenic HM-1:IMSS which initially was highly susceptible also acquired complement resistance during cultivation in the presence of NHS, it is concluded that complement resistance was caused by induction rather than by selection alone. Because cultivation in the presence of heat-inactivated NHS did not affect complement susceptibility of the cloned HM-1:IMSS, complement activation itself might induce complement resistance in pathogenic E. histolytica.

Animals↗

Complement resistance of pathogenic Entamoeba histolytica mediated by trypsin-sensitive surface component(s).

Pathogenic forms of the protozoan parasite Entamoeba histolytica were reported previously to resist the cytolytic effect of the alternative complement pathway (AP) only temporarily during exposure to complement. In contrast, nonpathogenic forms of E. histolytica had been found to show AP resistance as a stable property. We studied the mechanisms of AP resistance of the two forms. Upon exposure to AP activity, resistant pathogenic or nonpathogenic forms bound significantly less C3 products than complement-sensitive pathogenic amebae, indicating that the two resistant forms both inhibited AP amplification. Various enzymatic treatments and inhibition of membrane mobility by cytochalasin B and glutaraldehyde fixation showed that the mechanisms of AP inhibition differed between pathogenic and nonpathogenic forms; in contrast to nonpathogenic forms, pathogenic amebae required intact membrane mobility and a trypsin-sensitive surface component(s) to inhibit AP activation.

Animals↗

Two additional human serum proteins structurally related to complement factor H. Evidence for a family of factor H-related genes.

We identify and characterize two human serum proteins with an apparent molecular mass of 24 and 29 kDa, which are antigenically related to complement factor H. These proteins represent differently glycosylated forms and are encoded by the same mRNA. The corresponding cDNA clone is 1051 bp in size and hybridized to a 1.4-kb mRNA derived from human liver. The predicted translation product represents a protein of 270 amino acids, which displays a hydrophobic leader sequence, indicative of a secreted protein. The secreted part is organized in four short consensus repeats (SCR) and has a single putative N-linked glycosylation site. This predicted sequence is closely related to that of the previously described factor H-related proteins h37 and h42, which are also derived from a 1.4-kb mRNA. Amino acid comparison of these factor H-related proteins showed identical leader sequences, an exchange of three amino acids in SCR1, identical sequences of SCR2, and a lower degree of homology between SCR3-4 (h24 and h29) and SCR4-5 (h37 and h42). In addition, SCR3-4 of h24 and h29 display homology to SCR19-20 of human complement factor H. The relatedness of structural elements of the factor H-related proteins h24, h29, h37, and h42 and of factor H, suggests a function common to these proteins and indicates the existence of a gene family consisting of factor H and at least two factor H-related genes.

Amino Acid Sequence↗

Primary and secondary structure of the pore-forming peptide of pathogenic Entamoeba histolytica.

A pore-forming peptide is implicated in the potent cytolytic activity of pathogenic Entamoeba histolytica. Using NH2-terminal sequence information of this peptide, the corresponding cDNA was isolated. The cDNA-deduced amino acid sequence revealed a putative signal peptide and a mature peptide of 77 amino acids including six cysteine residues. Computer-aided secondary structure analysis predicted that the peptide would be composed of four adjacent alpha-helices, and CD spectroscopy indicated an all alpha-helical conformation. The tertiary structure appears to be stabilized by three disulfide bonds; the pore-forming activity was not sensitive to heat but was lost in the presence of reducing agents. Sequence homology was found to the saposins and to surfactant-associated protein B, both mammalian polypeptides of similar size and secondary structure but of non-lytic function. In particular, the six cysteine residues were found to be conserved, suggesting a common motif for stabilizing a favourable tertiary structure. Compared with previously characterized toxic peptides also containing three disulfide bonds, the amoeba peptide may represent a distinct class of biologically active peptides.

Amino Acid Sequence↗