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一种嵌合的光调节氨基酸转运系统能够分离粗糙脉孢菌的蓝光调节(blr)突变体。

A chimeric light-regulated amino acid transport system allows the isolation of blue light regulator (blr) mutants of Neurospora crassa.

作者信息

Carattoli A, Kato E, Rodriguez-Franco M, Stuart W D, Macino G

机构信息

Dipartimento di Biopatologia Umana, Università di Roma La Sapienza, Rome, Italy.

出版信息

Proc Natl Acad Sci U S A. 1995 Jul 3;92(14):6612-6. doi: 10.1073/pnas.92.14.6612.

Abstract

We have developed a system for the isolation of Neurospora crassa mutants that shows altered responses to blue light. To this end we have used the light-regulated promoter of the albino-3 gene fused to the neutral amino acid permease gene mtr. The product of the mtr gene is required for the uptake of neutral aliphatic and aromatic amino acids, as well as toxic analogs such as p-flurophenylalanine or 4-methyltryptophan. mtr trp-2-carrying cells were transformed with the al-3 promoter-mtr wild-type gene (al-3p-mtr+) to obtain a strain with a light-regulated tryptophan uptake. This strain is sensitive to p-fluorophenylalanine when grown under illumination and resistant when grown in the dark. UV mutagenesis of the al-3p-mtr(+)-carrying strain allowed us to isolate two mutant strains, BLR-1 and BLR-2 (blue light regulator), that are light-resistant to p-fluorophenylalanine and have lost the ability to grow on tryptophan. These two strains have a pale-orange phenotype and show down-regulation of all the photoregulated genes tested (al-3, al-1, con-8, and con-10). Mutations in the BLR strains are not allelic with white collar 1 or white collar 2, regulatory genes that are also involved in the response to blue light.

摘要

我们开发了一种用于分离对蓝光反应改变的粗糙脉孢菌突变体的系统。为此,我们使用了与中性氨基酸通透酶基因mtr融合的白化病-3基因的光调节启动子。mtr基因的产物是摄取中性脂肪族和芳香族氨基酸以及有毒类似物(如对氟苯丙氨酸或4-甲基色氨酸)所必需的。用al-3启动子-mtr野生型基因(al-3p-mtr+)转化携带mtr trp-2的细胞,以获得一种色氨酸摄取受光调节的菌株。该菌株在光照下生长时对p-氟苯丙氨酸敏感,在黑暗中生长时具有抗性。对携带al-3p-mtr(+)的菌株进行紫外线诱变,使我们能够分离出两种突变菌株,BLR-1和BLR-2(蓝光调节因子),它们对p-氟苯丙氨酸具有光抗性,并且失去了在色氨酸上生长的能力。这两种菌株具有浅橙色表型,并且所测试的所有光调节基因(al-3、al-1、con-8和con-10)均表现出下调。BLR菌株中的突变与白领1或白领2(也参与蓝光反应的调节基因)不是等位基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/099c/41568/5237bf843e02/pnas01490-0408-a.jpg

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