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H Fritz

Publications and source records attributed to H Fritz.

At least 253 records · Page 14Linked to original sources

Characterization of the proteinase inhibitors from bull seminal plasma and spermatozoa.

Two acid stable proteinase inhibitors are present in bull seminal plasma and washed ejaculated bull spermatozoa. Inhibitor I with a molecular weight of about 8700 (estimated by gel filtration) is a very strong inhibitor of bull sperm acrosin but also inhibits bovine trypsin and chymotrypsin and porcine plasmin; inhibition of porcine pancreatic and urinary kallikrein was not observed. In this respect inhibitor I resembles the well known cow colostrum trypsin inhibitor. Inhibitor II with a molecular weight near 6800 (estimated by gel filtration) inhibits bovine trypsin and chymotrypsin, porcine plasmin and pancreatic and urinary kallikrein as well as bull acrosin. The inhibition specificity of inhibitor II is thus very similar to that of the basic inhibitor from bovine organs (Kunitz-type). In view of the inhibition strength and other characteristics, however, the acid stable bull seminal inhibitors are not identical with the inhibitor from cow colostrum or bovine lung (organs).

Acrosin↗

Occurrence of multiple forms of bull and ram acrosin during proenzyme activation and inhibition of activation by p-nitrophenyl p'-guanidinobenzoate.

Proacrosin was extracted from freshly ejaculated bull and ram spermatozoa with acidic buffer solution pH 3.0, and was partially purified by gel filtration to remove acrosin inhibitors. The occurrence of multiple active forms during proacrosin activation at pH 7.8 was monitored by active enzyme staining of samples after polyacrylamide gel electrophoresis at pH 3.8. For comparison, the protein pattern of such activation samples was also determined after sodium dodecylsulfate-polyacrylamide gel electrophoresis. Proacrosin activation was completely prevented in the presence of 10(-4) M p-nitrophenyl p'-guanidinobenzoate.

Acrosin↗

Multiple forms of human acrosin: isolation and properties.

Human acrosin was purified to electrophoretically homogeneous forms by acidic extraction of washed ejaculated spermatozoa and gel filtration of the acidic extracts on Sephadex G-75, followed by affinity chromatography on p-amino-benzamidine Sepharose. Human acrosin exists in at least four molecular forms. The apparent molecular weights of three forms were determined to be 64 000, 38 000 and 25 000, respectively. The high molecular weight form is transformed to the low molecular weight forms by incubation of the acrosin preparation obtained from freshly ejaculated spermatozoa in solutions of pH near 7. Like boar acrosin, human acrosin is also a glycoprotein and therefore reversibly bound to Concanavalin A-Sepharose. The amino acid composition of the 25 000 molecular weight form is similar to that of human trypsin. Rabbit anti-boar-acrosin gamma-globulins form a precipitate with human acrosin, but not with porcine trypsin or human plasmin. The relationship between the occurrence of multiple acrosin forms and proenzyme activation by limited proteolysis is discussed.

Acrosin↗

Activation of chymotrypsinogen by boar acrosin and its prevention by antiboar acrosin rabbit gamma-globulins.

Activation of chymotrypsinogen by bovine trypsin or boar sperm acrosin was followed up using Nalpha-acetyl-L-tyrosine ethyl ester in a highly sensitive test system. Inhibition studies employing antiboar acrosin rabbit gamma-globulins showed the following results. 1) Whereas the acrosin-induced activation velocity was significantly depressed in the presence of the antibodies, the trypsin-catalyzed activation rate was not diminished. 2) The antibodies enhanced the acrosin-catalyzed cleavage rate of BzArgOEt significantly, but not the trypsin-catalyzed cleavage rate of this substrate. 3) Autodigestion of acrosin was considerably reduced in the presence of the antibodies. The enzymatic test system used is especially suitable to study the specificity of acrosin antibodies or their affinity to related enzymes if only small amounts of these substances are available.

Acrosin↗

Influence of boar acrosin antibodies produced in rabbit and sheep on chymotrypsinogen activation catalyzed by acrosin from boar, bull, ram, rabbkt and human.

Activation of bovine chymotrypsinogen is catalyzed with increasing velocity by human, rabbit, boar, bull and ram acrosin. Antiboar-acrosin rabbit gamma-globulins cause a significant reduction in the proenzyme activation rate induced by boar and bull acrosin, but only a weak reduction or none if ram or rabbit acrosin is the activating agent. The antiboar-acrosin gamma-globulins from sheep strongly inhibit chymotrypsinogen activation by ram, bull and boar acrosin, and significantly inhibit the human acrosin-catalyzed reaction.

Acrosin↗

Inhibitors of acrosin and granulocyte proteinases from human genital tract secretions.

Human seminal plasma contains two acid-stable proteinase inhibitors, HUSI-II (Mr approximately 6500) and HUSI-I, (Mr approximately 11 000) with different inhibition specificities. The inhibitory activity of HUSI-II is strongly limited to trypsin and acrosin; both enzyme-inhibitor complexes are very stable (e.g. bovine trypsin-HUSI-II complex: Ki = 1 x 10(-10)M; human acrosin-HUSI-II complex: Ki = 2.7 x 10(-10)M). The inhibitor from human seminal plasma HUSI-II may therefore be seen as the natural antagonist of the sperm protease acrosin. In addition to pancreatic trypsin and alpha-chymotrypsin, HUSI-I forms strong complexes with neutral proteases of the lysosome-like granules from human granulocytes, for example, the elastase (Ki = 2.5 x 10(-9)M) and cathepsin G, the chymotrypsin like protease (Ki = 7 x 10(-8)M).

Acrosin↗

Localization of seminal plasma proteinase inhibitors in human spermatozoa as revealed by the indirect immunofluorescence technique.

Acidic extracts of washed, ejaculated human spermatozoa contain, besides acrosin, two proteinase inhibitors, a trypsin-chymotrypsin (elastase) inhibitor (HUSI-I) and a trypsin-acrosin inhibitor (HUSI-II). Using the indirect immunofluorescence technique these inhibitors could be localized in the spermatozoa. Ejaculated spermatozoa were treated with monospecific antibodies raised in rabbits against HUSI-I and HUSI-II, respectively, and with fluorescein-labeled IgG from goat directed against the rabbit IgG. If acetone-fixed spermatozoa were used, fluorescence appeared only in a small ring near or at the equatorial segment of the spermatozoa. After prefixation of washed spermatozoa with 0.36% formaldehyde, however, distribution of both inhibitors in the region of the acrosomal caps could clearly be demonstrated. Present results suggest that they are attached at the plasma membrane. Obviously, in the case of human spermatozoa the inhibitors are relatively easily detached together with the membrane so that prefixation is necessary to achieve proper localization.

Animals↗

[Plasmocytoma, alkylating agents, and acute myeloid leukemia (author's transl)].

Two cases of the development of acute myeloid leukemia (AML) after treatment with alkylating agents are reported. In Case 1, melphalan and then cyclophosphamide had been given for multiple myeloma. 46 months after onset of cytostatic treatment AML occurred, as confirmed cytochemically and by qualitative determination of urinary lysozyme. In Case 2, cyclophosphamide had been given for rheumatoid arthritis. After a latency of 34 months 'smouldering leukaemia' developed with an atypical monocytic leukaemic cell population. In a third case, multiple myeloma and monocytic leukaemia developed synchronously. The causative role of melphalan and cyclophosphamide in the development of AML seems securely established. Despite the risk of alkylating agents in the treatment of multiple myeloma or Hodgkin's disease causing AML, they should not be replaced, as other drugs have been shown to be less beneficial. On the other hand, alkylating agents should be used with great caution in the treatment of non-malignant diseases.

Aged↗

Prenatal ossification in rabbits as indicative of fetal maturity.

During the prenatal period of development of the rabbit skeleton (days 21-30) the successive phases of fetal maturity can be distinguished by reference to the progress of ossification, particularly in the distal limbs and sternum. In the present study absent or incomplete ossification of sternebra 5 occurred in 8% of term fetuses. The incidence of anomalies of prenatal ossification of the axial skeleton was 1.9%. The relevance of delayed and disturbed ossification with regard to teratological tests is discussed.

Animals↗

Renal cortical necrosis induced in rabbits by local perfusion followed by systemic administration of endotoxin.

In an experimental model adapted to avoid severe systemic lesions, renal cortical necrosis was frequently induced in rabbits by repeated administration of endotoxin. The experimental model involves perfusion of the kidney in situ with endotoxin. Another dose of endotoxin was given intravenously 24-28 h before or after the perfusion. A significant effect of the perfusion or the endotoxin administered first was reflected by the pronounced unilateral morphological alterations appearing after the second administration of endotoxin. Some of the kidneys with cortical necrosis had band- or ring-shaped areas of preserved juxtamedullary tissue. Heavy infiltration of leukocytes at the borders of these areas called for commentation of the histological picture of infarcts, incorrectly described even in most modern textbooks.

Animals↗

The lysis effect of bull spermatozoa on gelatin substrate film methodical investigations.

Proteolytic activity in the acrosomes of ejaculated bull spermatozoa was demonstrated using an autoradiographic film as a gelatin substrate. Incubation of the spermgelatin adducts at +37 degrees C and 94% humidity, which was kept constant by ventilating an incubator with water-saturated compressed air, yielded reproducible results. Gelatin depolymerisation started adjacent to the posterior segment of the acrosome within 30 to 60 s after application of individual spermatozoa to the substrate membrane and, finally, increased to a white circular digestion area enveloping the entire sperm head. The observed gelatinolysis seems to be mainly caused by acrosin, the trypsin-like acrosomal proteinase. This conclusion is supported by the positive correlation (r = +0.83, P is less than or equal to 0.01) found between the mean values of the lysis areas of individual spermatozoa on gelatin films and the acrosin activity of the sperm population measured with Bz-Arg-OEt as substrate after acidic extraction of the spermatozoa. In addition, prior saturation of the substrate layers with acrosin inhibitor (SSPI-I, II) from boar seminal plasma prevented the lysis reaction. Extraction of acrosin from the spermatozoa before application to the gelatin membranes resulted in a complete loss of any proteolytic activity. If spermatozoa were stored for 4 to 6 days at +4 degrees C or -20 degrees C in Tris buffer and afterwards applied to the substrate layer, lysis areas of individual spermatozoa differed markedly. Spermatozoa from undiluted ejaculated frozen at -20 degrees C showed no proteolytic effect on gelatin films. In general, there was a high correlation (r = +0.83, P is less than or equal 0.01) between the number of "living cells" characterized by live-dead staining and the percentage of spermatozoa active on the substrate membranes.

Acrosin↗

Boar acrosin, II: Amino acid composition, amino terminal residue and molecular weight estimations by ultracentrifugation.

The molecular weight of boar acrosin in neutral solution was estimated to be 41000 +/- 1000 by high-speed sedimentation equilibrium analysis. This result is in good agreement with the value found earlier[1] by sodium dodecylsulfate polyacrylamide gel electrophoresis. The sedimentation coefficeint of acrosin obtained by active enzyme centrifugation of partly purified preparations is in accordance with the sedimentation coefficient of the pure preparation estimated by conventional sedimentation velocity analysis. The sedimentation coefficient of acrosin is considerably decreased in slightly acidic solution (pH 4), indicating that changes in the tertiary structure occur upon acidification. The amino acid composition of the acrosin preparation homogeneous by electrophoretic and chromatographic criteria and in sedimentation studies was determined. Valine was found as the unique N-terminal amino acid. However, in microheterogeneous forms of acrosin, alanine and methionine were also detected in end group analysis.

Acrosin↗

Nucleus anomaly test and chromosomal analysis of bone marrow cells of the Chinese hamster and dominant lethal test in male mice after treatment with fluorescent whitening agents.

Four fluorescent whitening agents (FWAs) were tested for mutagenic activity after oral administration in the following three different mammalian test systems: (1) Dominant lethal test in the male mouse; (2) Cytogenetic studies on metaphase chromosomes from the bone marrow of the Chinese hamster; (3) Nucleus anomaly test in somatic interphase cells (bone marrow) of the Chinese hamster. These investigations yielded no evidence of dominant lethal effects of any of the four compounds on the progeny of male mice. Furthermore, the data obtained from chromosome analyses and the nucleus anomaly test revealed no effects at all. Thus, the results obtained in all these tests gave no indication of mutagenic activity after the administration of these compounds in dosages up to approximately 1/3 or the LD50.

Animals↗