Sullivan D T, Bell L A, Paton D R, Sullivan M C
Biochem Genet. 1980 Dec;18(11-12):1109-30. doi: 10.1007/BF00484342.
Dissected Malpighian tubules from wild type and the eye color mutant white of Drosophila were compared with respect to their abilities to transport tryptophan and kynurenine into tubule cells. It was determined that mutation at white greatly impairs the ability of Malpighian tubule cells to take up tryptophan. Functional studies on the extracellular spaces and ultrastructural observations indicated no differences in these respects between wild type and white tubules. It is consistent with several observations that much of the tryptophan associated with white exists in the intercellular spaces. Furthermore, the uptake of tryptophan by the w+ system of wild type tubules is inhibited by the analogue 5-methyl-tryptophan. However, the incorporation of radioactive tryptophan into protein in tubule cells from wild type and white occurs at the same rates and is not affected by 5-methyl-tryptophan. Therefore, it is apparent that Malpighian tubules have a transport system that enables entry of tryptophan into a cellular pool and that this cellular pool is initially independent of the tryptophan pool used for protein synthesis. The mutant white lacks this transport system. From these studies and others it appears that compartmentalization of cellular pools may be brought about via the utilization of specific membrane transport systems.
对野生型果蝇和眼色突变体白眼果蝇的马氏管进行解剖,并比较它们将色氨酸和犬尿氨酸转运到管细胞中的能力。结果表明,白眼突变极大地损害了马氏管细胞摄取色氨酸的能力。对细胞外空间的功能研究和超微结构观察表明,野生型和白眼马氏管在这些方面没有差异。与多项观察结果一致的是,与白眼相关的大部分色氨酸存在于细胞间隙中。此外,野生型马氏管的w+系统对色氨酸的摄取受到类似物5-甲基色氨酸的抑制。然而,野生型和白眼马氏管细胞中放射性色氨酸掺入蛋白质的速率相同,且不受5-甲基色氨酸的影响。因此,很明显马氏管具有一个转运系统,使色氨酸能够进入细胞池,并且这个细胞池最初独立于用于蛋白质合成的色氨酸池。突变体白眼缺乏这种转运系统。从这些研究和其他研究来看,细胞池的区室化可能是通过特定膜转运系统的利用来实现的。