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某些基因中的TTA密码子会阻止它们在一类发育性、抗生阴性的链霉菌突变体中表达。

TTA codons in some genes prevent their expression in a class of developmental, antibiotic-negative, Streptomyces mutants.

作者信息

Leskiw B K, Lawlor E J, Fernandez-Abalos J M, Chater K F

机构信息

John Innes Institute, John Innes Centre for Plant Science Research, Norwich, Norfolk, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1991 Mar 15;88(6):2461-5. doi: 10.1073/pnas.88.6.2461.

Abstract

In Streptomyces coelicolor A3(2) and the related species Streptomyces lividans 66, aerial mycelium formation and antibiotic production are blocked by mutations in bldA, which specifies a tRNA(Leu)-like gene product which would recognize the UUA codon. Here we show that phenotypic expression of three disparate genes (carB, lacZ, and ampC) containing TTA codons depends strongly on bldA. Site-directed mutagenesis of carB, changing its two TTA codons to CTC (leucine) codons, resulted in bldA-independent expression; hence the bldA product is the principal tRNA for the UUA codon. Two other genes (hyg and aad) containing TTA codons show a medium-dependent reduction in phenotypic expression (hygromycin resistance and spectinomycin resistance, respectively) in bldA mutants. For hyg, evidence is presented that the UUA codon is probably being translated by a tRNA with an imperfectly matched anticodon, giving very low levels of gene product but relatively high resistance to hygromycin. It is proposed that TTA codons may be generally absent from genes expressed during vegetative growth and from the structural genes for differentiation and antibiotic production but present in some regulatory and resistance genes associated with the latter processes. The codon may therefore play a role in developmental regulation.

摘要

在天蓝色链霉菌A3(2)及相关的淡紫灰链霉菌66中,气生菌丝体的形成和抗生素的产生会被bldA基因突变所阻断,bldA基因编码一种类似tRNA(Leu)的基因产物,该产物可识别UUA密码子。在此我们表明,含有TTA密码子的三个不同基因(carB、lacZ和ampC)的表型表达强烈依赖于bldA。对carB进行定点诱变,将其两个TTA密码子变为CTC(亮氨酸)密码子,导致其表达不依赖于bldA;因此,bldA产物是UUA密码子的主要tRNA。另外两个含有TTA密码子的基因(hyg和aad)在bldA突变体中表现出表型表达的培养基依赖性降低(分别为潮霉素抗性和壮观霉素抗性)。对于hyg,有证据表明UUA密码子可能由一个反密码子不完全匹配的tRNA进行翻译,产生的基因产物水平极低,但对潮霉素具有相对较高的抗性。有人提出,TTA密码子可能通常不存在于营养生长期间表达的基因以及分化和抗生素产生的结构基因中,但存在于与后一过程相关的一些调控和抗性基因中。因此,该密码子可能在发育调控中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d125/51252/2b6a73b26eca/pnas01056-0437-a.jpg

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