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四膜虫摄取营养的双重能力。V. 氨基酸和蛋白质的利用

Dual capacity for nutrient uptake in Tetrahymena. V. Utilization of amino acids and proteins.

作者信息

Orias E, Rasmussen L

出版信息

J Cell Sci. 1979 Apr;36:343-53. doi: 10.1242/jcs.36.1.343.

Abstract

We investigated the relative contributions of phagocytosis and plasma membrane transport to the uptake of amino acids and a protein (egg albumin) in amounts which allow Tetrahymena thermophila to grow and multiply. We used a mutant capable of indefinite growth without food vacuole formation (phagocytosis) and its wild type (phagocytosis-competent) isogenic parental strain. Our results suggest that phagocytosis is not required for free amino acid uptake, most or all of which can be attributed to carrier-mediated transport systems, apparently located on the plasma membrane. In contrast, phagocytosis is required for utilization of the protein. Proteins can supply required amino acids in amounts sufficient for growth only when food vacuoles are formed. We conclude that Tetrahymena thermophila either possesses no endocytic mechanisms at the cell surface other than food vacuole formation or, if it does, these putative mechanisms are not capable of nutritionally meaningful rates of protein uptake.

摘要

我们研究了吞噬作用和质膜转运对嗜热四膜虫摄取氨基酸和一种蛋白质(卵清蛋白)的相对贡献,摄取量要足以使嗜热四膜虫生长和繁殖。我们使用了一种能够在不形成食物泡(吞噬作用)的情况下无限生长的突变体及其野生型(具有吞噬能力)同基因亲本菌株。我们的结果表明,摄取游离氨基酸不需要吞噬作用,其中大部分或全部可归因于载体介导的转运系统,该系统显然位于质膜上。相比之下,利用蛋白质则需要吞噬作用。只有当形成食物泡时,蛋白质才能提供足以支持生长的所需氨基酸量。我们得出结论,嗜热四膜虫要么在细胞表面除食物泡形成外不具有内吞机制,要么即使有,这些假定的机制也无法以营养上有意义的速率摄取蛋白质。

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