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果蝇黑腹果蝇蝶啶缺乏眼色突变体马氏管的嘌呤转运

Purine transport by malpighian tubules of pteridine-deficient eye color mutants of Drosophila melanogaster.

作者信息

Sullivan D T, Bell L A, Paton D R, Sullivan M C

出版信息

Biochem Genet. 1979 Jun;17(5-6):565-73. doi: 10.1007/BF00498891.

Abstract

Uptakes of guanine into Malpighian tubules of wild-type Drosophila and the eye color mutants white (w), brown (bw), and pink-peach (pp) have been compared. Tubules for each of these mutants are unable to concentrate guanine intracellularly. The transport of xanthine and riboflavin is also deficient in w tubules. The transport of guanosine, adenine, hypoxanthine, and guanosine monophosphate is similar in wild-type and white Malpighian tubules. These data and other information about these mutants make it likely that these pteridine-deficient eye color mutants do not produce pigments because of the inability to transport a pteridine precursor. This view supports the hypothesis that mutants which lack both pteridine and ommochromes do so because precursors to both classes of pigments share a common transport system.

摘要

已比较了野生型果蝇及眼色突变体白眼(w)、棕眼(bw)和粉桃眼(pp)的马氏管对鸟嘌呤的摄取情况。这些突变体各自的马氏管均无法在细胞内浓缩鸟嘌呤。黄嘌呤和核黄素的转运在白眼突变体的马氏管中也存在缺陷。野生型和白眼马氏管中鸟苷、腺嘌呤、次黄嘌呤和鸟苷单磷酸的转运情况相似。这些数据以及有关这些突变体的其他信息表明,这些缺乏蝶啶的眼色突变体可能由于无法转运蝶啶前体而不能产生色素。这一观点支持了这样的假说,即同时缺乏蝶啶和眼色素的突变体之所以如此,是因为这两类色素的前体共享一个共同的转运系统。

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