Stage-Specific Inhibition of Xenopus Embryogenesis by Aprotinin, a Serine Protease Inhibitor
Ryoko Iijima, Shigeru Yamaguchi, K.-i. Homma, Shiho Natori
Abstract
Ryoko Iijima, Shigeru Yamaguchi, K.-i. Homma, Shiho Natori
Abstract
We examined the effects of various protease inhibitors on Xenopus laevis embryogenesis. Aprotinin, a serine protease inhibitor, was found to inhibit embryogenesis markedly, but other protease inhibitors had virtually no effect. The inhibitory effect of aprotinin was specific for embryos at the blastula or gastrula stage. These results suggest that an aprotinin-sensitive protease involved in embryonic development is secreted from the embryos or appears on the surface of embryonic cells at these stages. We found that various serine proteases are in fact secreted from the embryos with their development and that some of them are sensitive to aprotinin.
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We examined the effects of various protease inhibitors on Xenopus laevis embryogenesis. Aprotinin, a serine protease inhibitor, was found to inhibit embryogenesis markedly, but other protease inhibitors had virtually no effect. The inhibitory effect of aprotinin was specific for embryos at the blastula or gastrula stage. These results suggest that an aprotinin-sensitive protease involved in embryonic development is secreted from the embryos or appears on the surface of embryonic cells at these stages. We found that various serine proteases are in fact secreted from the embryos with their development and that some of them are sensitive to aprotinin.
Key concepts: Aprotinin, Xenopus, Proteases, Protease, Serine protease, Blastula, Protease inhibitor (pharmacology), Embryogenesis