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Biomedical subjects

H Haupt

Publications and source records attributed to H Haupt.

At least 55 records · Page 3Linked to original sources

Clinical and biochemical investigations and molecular analysis of subjects with mutations in the androgen receptor gene.

OBJECTIVE: Androgen insensitivity syndromes (AIS) in subjects with 46, XY karyotype and normal or even elevated androgen blood levels are characterized by various aberrations in male differentiation and virilization. AIS is often accompanied by a broad spectrum of abnormal binding characteristics of the androgen receptor (AR). In order to investigate the correlation between the degree of virilization defect and the type of androgen binding abnormalities and/or the nature of the mutation in the AR gene, we determined androgen binding characteristics of the AR protein and the sequence of the AR gene in clinically and biochemically well characterized patients with various degrees of androgen resistance. DESIGN AND PATIENTS: The activity of 5 alpha-reductase and the binding of androgen to its receptor (KD-values, Bmax, thermolability) were determined in genital skin fibroblasts from 20 patients with various degrees of defects in virilization (2 CAIS, complete AIS; 18 PAIS, partial AIS patients). The AR gene of these 20 subjects was characterized by PCR-SSCP analysis. In case of aberrant electrophoretic mobility the corresponding exon was sequenced. RESULTS: The 2 patients with CAIS and 7 with PAIS showed a mutation in the AR gene. In two, the mutation was in the DNA binding domain, and in all others in the ligand binding domain. In 11 patients with severe virilization defects no abnormal behaviour was detected in the PCR-SSCP. Transcriptional activation studies of two mutant ARs revealed that an approximately tenfold higher androgen concentration (methyltrienolone) is necessary to achieve maximal response as compared to the wild type AR. CONCLUSIONS: There is no obvious relation between the degree of androgen resistance and the binding parameters of the AR and/or the nature of mutation in the AR gene. Androgen insensitivity syndrome can occur despite normal androgen binding and presumably non-mutated AR genes. Even if there is abnormal binding of androgen and/or a mutation in the AR gene there is no clear-cut relationship between these parameters and the degree of virilization defects. Thus, in a proportion of patients, neither the determination of binding parameters of the AR nor the detection of mutations in the AR gene are sufficient to understand the mechanisms underlying the androgen insensitivity syndrome.

Adolescent↗

The hypothetical N-glycan charge: a number that characterizes protein glycosylation.

The production of recombinant glycoprotein therapeutics requires characterization of glycosylation with respect to the lot-to-lot consistency. Here we introduce the ¿hypothetical N-glycan charge Z' as a parameter that allows to characterize the protein glycosylation in a simple, however, efficient manner. The hypothetical N-glycan charge of a given glycoprotein is deduced from the N-glycan mapping profile obtained via HPAE-PAD. In HPAEC, N-glycans are clearly separated according to their charge, i.e., their number of sialic acid residues, providing distinct regions for neutral structures as well as for the mono- di-, tri, and tetrasialylated N-glycans (Hermentin et al., 1992a). Z is defined as the sum of the products of the respective areas (A) in the asialo, monosialo, disialo, trisialo, tetrasialo, and pentasialo region, each multiplied by the corresponding charge: [formula: see text] Thus, a glycoprotein with mostly C4-4* structures will provide Z approximately equal to 400 (e.g., rhu EPO (CHO), Z = 361), a glycoprotein carrying largely C3-3* structures will amount to Z approximately equal to 300 (e.g., bovine fetuin, Z = 290), a glycoprotein with mostly C2-2* structures will have Z approximately equal to 200 (e.g., human serum transferrin, Z = 207, or human plasma AT III, Z = 180), and a glycoprotein carrying only high-mannose type or trunkated structures will provide Z approximately equal to 0 (e.g., bovine pancreas ribonuclease B, Z = 15, and hen ovomucoid, Z = 15, respectively). The determination of Z was validated in multiple repetitive experiments and proved to be highly accurate and reliable. Z may therefore be regarded as a new and characteristic parameter for protein N-glycosylation.

Amidohydrolases↗

Characterization of binding of human beta 2-glycoprotein I to cardiolipin.

beta 2-Glycoprotein I-cardiolipin complexes are reported to be a target antigen for the binding of a subset of anti-phospholipid antibodies. The characteristics of binding of beta 2-glycoprotein I to cardiolipin are reported in this paper. Binding at neutral pH is specific, saturable, dependent on ionic strength and independent of bivalent cation. Binding at low pH is qualitatively different from that at neutral pH, and is not dependent on ionic strength. Denaturation of beta 2-glycoprotein I by heat inactivation and reduction/alkylation indicates that beta 2-glycoprotein I-cardiolipin interaction does not require the native three-dimensional structure of beta 2-glycoprotein I, implying that a linear sequence motif may be responsible. Modification of amino acid residues by KCNO treatment completely destroys binding capacity, indicating crucial involvement of lysine residues in binding of beta 2-glycoprotein I to cardiolipin. Complement factor H, which has some similar highly charged linear sequence motifs to beta 2-glycoprotein I and is composed of the same type of protein module, was found to bind to cardiolipin and inhibit the binding of beta 2-glycoprotein I to cardiolipin. Three different lysine-rich segments of the fifth domain of beta 2-glycoprotein I may be involved in binding to cardiolipin.

Amino Acid Sequence↗