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因链终止突变的抑制和错义回复突变而导致的脉孢菌氨基酸替换。

Amino acid replacements resulting from suppression and missense reversion of a chain-terminator mutation in Neurospora.

作者信息

Seale T W, Brett M, Baron A J, Fincham J R

出版信息

Genetics. 1977 Jun;86(2 Pt. 1):261-74.

Abstract

The Neurospora crassa super-suppressor mutation, ssu-1, suppresses the auxotrophic phenotype of the mutant am(17) by inserting tyrosine at residue 313 of NADP-specific glutamate dehydrogenase, a position occupied in the wild type by glutamate. Two classes of am(17) revertants due to further mutation within the am gene have, respectively, tyrosine and leucine at residue 313. These replacements are consistent with a chain-terminating codon in am(17) of either the amber (UAG) or the ochre type (UAA), but are inconsistent with UGA. The Leu313 and Tyr313 variants of the enzyme have effective activity but are grossly different from the wild type in Michaelis constants (especially for ammonium) and heat stabilities at two different pH values. They show smaller but significant differences in these respects from each other.

摘要

粗糙脉孢菌的超级抑制突变体ssu-1,通过在NADP特异性谷氨酸脱氢酶的313位残基处插入酪氨酸来抑制突变体am(17)的营养缺陷型表型,在野生型中该位置为谷氨酸。由于am基因内的进一步突变而产生的两类am(17)回复体,在313位残基处分别为酪氨酸和亮氨酸。这些替换与am(17)中琥珀型(UAG)或赭石型(UAA)的链终止密码子一致,但与UGA不一致。该酶的Leu313和Tyr313变体具有有效活性,但在米氏常数(特别是对铵)和两种不同pH值下的热稳定性方面与野生型有很大差异。它们在这些方面彼此之间也有较小但显著的差异。

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引用本文的文献

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Fine Structure Mapping of the am (Gdh) Locus of Neurospora.
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本文引用的文献

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