Graffe M, Dondon J, Caillet J, Romby P, Ehresmann C, Ehresmann B, Springer M
Institut de Biologie Physico-Chimique, Paris, France.
Science. 1992 Feb 21;255(5047):994-6. doi: 10.1126/science.1372129.
The interaction of Escherichia coli threonyl-transfer RNA (tRNA) synthetase with the leader sequence of its own messenger RNA inhibits ribosome binding, resulting in negative translational feedback regulation. The leader sequence resembles the substrate (tRNA(Thr)) of the enzyme, and the nucleotides that mediate the correct recognition of the leader and the tRNA may be the same. A mutation suggested by tRNA identity rules that switches the resemblance of the leader sequence from tRNA(Thr) to tRNA(Met) causes the translation of the threonyl-tRNA synthetase messenger RNA to become regulated by methionyl-tRNA synthetase. This identity swap in the leader messenger RNA indicates that tRNA identity rules may be extended to interactions of synthetases with other RNAs.
大肠杆菌苏氨酰 - 转运RNA(tRNA)合成酶与其自身信使RNA的前导序列相互作用会抑制核糖体结合,从而导致负向翻译反馈调节。该前导序列类似于该酶的底物(tRNA(Thr)),介导前导序列与tRNA正确识别的核苷酸可能相同。根据tRNA识别规则提出的一个突变,将前导序列的相似性从tRNA(Thr)切换为tRNA(Met),导致苏氨酰 - tRNA合成酶信使RNA的翻译受到甲硫氨酰 - tRNA合成酶的调节。前导信使RNA中的这种识别互换表明,tRNA识别规则可能扩展到合成酶与其他RNA的相互作用。