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牛蛙蝌蚪(北美牛蛙,Rana catesbeiana)小肠对蛋白质分子的吸收。

Absorption of protein molecules by the small intestine of the bullfrog tadpole, Rana catesbeiana.

作者信息

Sugimoto K, Ichikawa Y, Nakamura I

出版信息

J Exp Zool. 1981 Jan;215(1):53-62. doi: 10.1002/jez.1402150107.

Abstract

In the tadpole of the bullfrog, Rana catesbeiana, the absorptive cells of the small intestine are characterized by the presence of invaginations of the surface plasma membrane or pinocytic vesicles in the apical cytoplasm and numerous lysosomes in the supranuclear region. These cytological features suggest that the absorptive cells may be able to ingest some macromolecules or particles. The possibility of macromolecular absorption in this animal was examined by using horseradish peroxidase (HRP) and the electron microscopic cytochemical technique. Exogenous HRP was ingested in the absorptive cells by pinocytosis and then accumulated in multivesicular bodies (MVBs) by the contribution of pinocytic vesicles to MVBs. The pinocytic vesicle changed its shape to have an inner vesicle. Some of the inner vesicles of MVBs seem to have originated from the inner vesicles of pinocytic vesicles. Almost all the MVBs in the subapical region showed HRP activity, but some of them showed no acid phosphatase (AcPase) activity; those in the supranuclear region always showed an intense AcPase activity. Therefore some of the subapical MVBs are heterophagosomes and may be joined with lysosome during the movement toward the supranuclear region. The MVBs with lysosomal enzymes in the subapical or supranuclear region are presumably important sites of intracellular digestion. The results indicate that intracellular digestion may occur in the small intestine of the bullfrog tadpole under natural conditions.

摘要

在牛蛙(Rana catesbeiana)蝌蚪中,小肠的吸收细胞具有以下特征:表面质膜内陷或顶端细胞质中有胞饮小泡,核上区域有大量溶酶体。这些细胞学特征表明,吸收细胞可能能够摄取一些大分子或颗粒。通过使用辣根过氧化物酶(HRP)和电子显微镜细胞化学技术,研究了这种动物中大分子吸收的可能性。外源性HRP通过胞饮作用被吸收细胞摄取,然后通过胞饮小泡对多泡体(MVBs)的贡献而积累在多泡体中。胞饮小泡改变其形状形成一个内泡。多泡体的一些内泡似乎起源于胞饮小泡的内泡。顶端下区域的几乎所有多泡体都显示HRP活性,但其中一些没有酸性磷酸酶(AcPase)活性;核上区域的多泡体总是显示强烈的AcPase活性。因此,一些顶端下的多泡体是异噬小体,在向核上区域移动的过程中可能会与溶酶体结合。顶端下或核上区域含有溶酶体酶的多泡体可能是细胞内消化的重要部位。结果表明,在自然条件下,牛蛙蝌蚪的小肠中可能会发生细胞内消化。

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