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Mouse embryos were extracted with 0.5% Triton X-100 and subjected to cellulose acetate electrophoresis. In fertilized eggs, two forms of alkaline phosphatase (ALP), a slow-moving form and a fast-moving form, were observed. As cleavage proceeded, the fast-moving form disappeared, and the slow-moving form, the mobility of which was similar to that of the slow-moving form of the kidney, became gradually dominant up to the blastocyst stage (named 'embryonic' form). With blastulation, another fast-moving form showing a similar mobility to the lung ALP began to appear in blastocysts and showed a transient dominance in hatched blastocysts. After implantation, both the embryonic form and the fast-moving form gradually faded, and were eventually replaced by the new form, which may be named 'fetal form' in Day 7 embryos. These results clearly demonstrated that ALP activity does exist in embryos at all stages of preimplantation development. Moreover, the changes in multiple forms of ALP correlated with embryonic development may suggest that these multiple forms may have differential roles in the process of early development. 相似文献
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We have compared lysosomal enzyme distributions on density gradients and rates of transport of endocytic markers for actively-growing and confluent cells. While it has been previously established that mammalian cells accumulate lysosomal enzymes during quiescence, we show that this accumulation is predominantly in residual bodies (p greater than 1.12 g/ml) rather than in dense lysosomes (p = 1.08-1.10 g/ml) and does not represent a change in the endosomal and lysosomal enzyme content. The accumulation is not caused by a change in the rate of production of dense lysosomes, since the rate of transfer of epidermal growth factor (EGF) from light to dense compartments is the same between confluent and subconfluent cells. Confluent cultures have a higher rate of initial pinocytosis, and a higher rate of retroendocytosis and/or recycling, causing a net lower rate of accumulation of fluid-phase material. The accumulation of residual bodies in confluent cultures may be caused by a lower rate of exocytosis of their contents and/or a lack of dilution by cell division. The data indicate that the impact of culture confluence must be carefully assessed in experiments designed to analyze endocytic pathways. 相似文献