Beuning P J, Musier-Forsyth K
Department of Chemistry, University of Minnesota, 207 Pleasant Street Southeast, Minneapolis, MN 55455, USA.
Proc Natl Acad Sci U S A. 2000 Aug 1;97(16):8916-20. doi: 10.1073/pnas.97.16.8916.
Editing reactions catalyzed by aminoacyl-tRNA synthetases are critical for accurate translation of the genetic code. To date, this activity, whereby misactivated amino acids are hydrolyzed either before or after transfer to noncognate tRNAs, has been characterized extensively only in the case of class I synthetases. Class II synthetases have an active-site architecture that is completely distinct from that of class I. Thus, findings on editing by class I synthetases may not be applicable generally to class II enzymes. Class II Escherichia coli proline-tRNA synthetase is shown here to misactivate alanine and to hydrolyze the noncognate amino acid before transfer to tRNA(Pro). This enzyme also is capable of rapidly deacylating a mischarged Ala-tRNA(Pro) variant. A single cysteine residue (C443) that is located within the class II-specific motif 3 consensus sequence was shown previously to be dispensable for proline-tRNA synthetase aminoacylation activity. We show here that C443 is critical for the hydrolytic editing of Ala-tRNA(Pro) by this class II synthetase.
氨酰-tRNA合成酶催化的校正反应对于遗传密码的准确翻译至关重要。迄今为止,这种在错误激活的氨基酸转移到非同源tRNA之前或之后将其水解的活性,仅在I类合成酶的情况下得到了广泛表征。II类合成酶具有与I类完全不同的活性位点结构。因此,I类合成酶的校正研究结果可能并不普遍适用于II类酶。本文表明,II类大肠杆菌脯氨酸-tRNA合成酶会错误激活丙氨酸,并在将其转移到tRNA(Pro)之前水解非同源氨基酸。这种酶还能够快速使错误负载的Ala-tRNA(Pro)变体脱酰基。先前已表明,位于II类特异性基序3共有序列内的单个半胱氨酸残基(C443)对于脯氨酸-tRNA合成酶的氨酰化活性是可有可无的。我们在此表明,C443对于这种II类合成酶对Ala-tRNA(Pro)的水解校正至关重要。