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Biomedical subjects

S Yasugi

Publications and source records attributed to S Yasugi.

46 records · Page 3Linked to original sources

[Immunocytochemical study of the development of pepsinogens in the chick embryo].

The appearance and localization of pepsinogens in the chicken proventriculus during the normal development were studied immunocytochemically with use of the antibodies against an embryo-specific and an adult-specific chicken pepsinogens. The embryonic pepsinogen exists mainly in the apical part of the gland cells and in the secreted substances of 10-20 day embryonic proventriculus. The adult pepsinogen appears during hatching, and all gland cells become positive mainly at the basal portion one day after hatching.

Animals↗

[Acid protease expression and regulation in the embryonic proventriculus of birds].

Normal embryonic proventriculi and the heterospecific recombinants of proventricular endoderm and mesenchyme were transplanted onto the chorio-allantoic membrane, and electrophoretic patterns of acid proteases in the explants were analyzed. The results demonstrated that the 6-day chick and 5-day quail proventricular endoderm produces acid proteases according to its own genetic information even under the influence of heterospecific mesenchyme, and that the production of acid proteases is regulated by some humoral factors of the hosts.

Animals↗

Purification and characterization of embryonic chicken pepsinogen, a unique pepsinogen with large molecular weight.

An embryo-specific pepsinogen was isolated from the proventriculi of 15-day-old chicken embryos and purified by means of fractionation with ammonium sulfate, filtration on Sephadex G-100, and chromatography on DEAE-Sepharose CL-6B and hydroxyapatite. The properties of this pepsinogen and pepsin derived from it were compared with those of an adult-specific chicken pepsinogen and its pepsin. Though the optimal pH and alkali-stability were similar in the two pepsinogens, molecular weight, sensitivity to pepstatin, and antigenicity were quite different. Among the properties of this embryo-specific pepsinogen, the large molecular weight (56,000 for pepsinogen and 53,000 for pepsin) is especially noteworthy, since the molecular weights of the known pepsinogens of mammals and birds fall into the range of 35,000-48,000.

Animals↗

Purificaton and characterization of a pepsinogen and its pepsin from proventriculus of the Japanese quail.

A crude extract of the proventriculus of the Japanese quail gave at least five bands of peptic activity at pH 2.2 on polyacrylamide gel electrophoresis. The main component, constituting about 40% of the total acid protease activity, was purified to homogeneity by hydroxyapatite and DEAE-Sepharose column chromatographies. At below pH 4.0, the pepsinogen was converted to a pepsin, which had the same electrophoretic mobility as one of the five bands of peptic activity present in the crude extract. The molecular weights of the pepsinogen and the pepsin were 40 000 and 36 000, respectively. Quail pepsin was stable in alkali up to pH 8.5. The optimal pH of the pepsin on hemoglobin was pH 3.0. The pepsin had about half the milk-clotting activity of purified porcine pepsin, but the pepsinogen itself had no activity. The hydrolytic activity of quail pepsin on N-acetyl-L-phenylalanyl-3,5-diiodo-L-tyrosine was about 1% of that of porcine pepsin. Among the various protease inhibitors tested, only pepstatin inhibited the proteolytic activity of the pepsin. The amino acid composition of quail pepsinogen was found to be rather similar to that of chick pepsinogen C, and these two pepsinogens possessed common antigenicity.

Animals↗

[Purification and comparison of quail and chicken pepsinogens].

Pepsinogens of quail and chick, specific to adult proventriculus, were purified and their properties were compared. These two pepsinogens are similar in regard to enzymological characters, amino acid compositions, and immunological characters.

Amino Acids↗

[Differentiation of the endodermal epithelium associated with the splanchnic mesoderm].

Allantoic epithelium and epithelium from different levels of the digestive tube of the guail embryo were grafted into chick embryo splanchnopleure so that these epitheliums would come into contact with the mesoderm of the developing host digestive tube at a variety of levels. Under these conditions, the allantoic epithelium develops into an epithelium corresponding to the level of the digestive tube at which it was grafted. By contrast, the presumptive fate of epithelium from the small intestine is not modified by the mesenchyme with which it becomes associated. Mesenchyme from the small intestine, on the other hand, always dictates the type of differentiation in epithelial grafts from other levels of the digestive tube.

Allantois↗

[Functional and morphological differentiation of the allantoic endoderm under the influence of the proventricular mesenchyme in the avian embryo].

The allantoic endoderm of Chick and Quail embryo associated with mesenchyme from 5 to 6-days proventriculus, differentiates into a proventriculus-type epithelium. The glands develop well and produce pepsin, an enzyme characteristic of the proventirculus. Splanchnopleure mesenchyme of the 3-day embryo is also able to bring about the heterotypic differentiation of allantoic endoderm.

Allantois↗