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粗糙脉孢菌中氨基酸通透性的遗传控制。

Genetic control of amino acid permeability in Neurospora crassa.

作者信息

Lester G

出版信息

J Bacteriol. 1966 Feb;91(2):677-84. doi: 10.1128/jb.91.2.677-684.1966.

Abstract

Lester, Gabriel (Reed College, Portland, Ore.). Genetic control of amino acid permeability in Neurospora crassa. J. Bacteriol. 91:677-684. 1966.-Strains of Neurospora crassa resistant to 4-methyltryptophan (4-MT) were isolated from populations of conidia exposed to ultraviolet light. In genetic crosses, 4-MT resistance behaved as a single-gene difference. Resistance to 4-MT could not be attributed to a relaxation of control of the formation or the activity of the enzymes of tryptophan biosynthesis. Growth studies involving tryptophan auxotrophs carrying the aberrant mt gene and uptake studies with normal and 4-MT-resistant strains showed that 4-MT resistance could be attributed to an inability of 4-MT-resistant strains to take up tryptophan and its methyl analogues. The mt gene is not specific for tryptophan; strains resistant to 4-MT are also resistant to ethionine, and they have a markedly reduced ability to take up serine, leucine, and alpha-aminoisobutyric acid. No difference was observed between strains carrying either mt allele in their ability to take up glucose; also, the uptake of anthranilic acid or of indole was not sufficiently impaired by the aberrant mt gene to prevent these tryptophan precursors from satisfying the nutritional requirement of certain tryptophan auxotrophs. The role of the mt gene in determining the permeability of N. crassa to amino acids is discussed.

摘要

莱斯特,加布里埃尔(里德学院,俄勒冈州波特兰)。粗糙脉孢菌中氨基酸通透性的遗传控制。《细菌学杂志》91:677 - 684。1966年。——从暴露于紫外线的分生孢子群体中分离出对4 - 甲基色氨酸(4 - MT)具有抗性的粗糙脉孢菌菌株。在遗传杂交中,4 - MT抗性表现为单基因差异。对4 - MT的抗性不能归因于色氨酸生物合成酶形成或活性控制的松弛。涉及携带异常mt基因的色氨酸营养缺陷型的生长研究以及对正常菌株和4 - MT抗性菌株的摄取研究表明,4 - MT抗性可归因于4 - MT抗性菌株无法摄取色氨酸及其甲基类似物。mt基因并非色氨酸特异性的;对4 - MT具有抗性的菌株对乙硫氨酸也具有抗性,并且它们摄取丝氨酸、亮氨酸和α - 氨基异丁酸的能力明显降低。在摄取葡萄糖的能力方面,携带任一mt等位基因的菌株之间未观察到差异;此外,异常的mt基因对邻氨基苯甲酸或吲哚摄取的损害不足以阻止这些色氨酸前体满足某些色氨酸营养缺陷型的营养需求。本文讨论了mt基因在决定粗糙脉孢菌对氨基酸通透性方面的作用。

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AMINO ACID INTERACTIONS IN NEUROSPORA CRASSA.粗糙脉孢菌中的氨基酸相互作用
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