Leppik Margus, Peil Lauri, Kipper Kalle, Liiv Aivar, Remme Jaanus
Institute of Molecular and Cell Biology, Tartu University, Tartu, Estonia.
FEBS J. 2007 Nov;274(21):5759-66. doi: 10.1111/j.1742-4658.2007.06101.x. Epub 2007 Oct 12.
Pseudouridine synthase RluD converts uridines at positions 1911, 1915, and 1917 of 23S rRNA to pseudouridines. These nucleotides are located in the functionally important helix-loop 69 of 23S rRNA. RluD is the only pseudouridine synthase that is required for normal growth in Escherichia coli. We have analyzed substrate specificity of RluD in vivo. Mutational analyses have revealed: (a) RluD isomerizes uridine in vivo only at positions 1911, 1915, and 1917, regardless of the presence of uridine at other positions in the loop of helix 69 of 23S rRNA variants; (b) substitution of one U by C has no effect on the conversion of others (i.e. formation of pseudouridines at positions 1911, 1915, and 1917 are independent of each other); (c) A1916 is the only position in the loop of helix 69, where mutations affect the RluD specific pseudouridine formation. Pseudouridines were determined in the ribosomal particles from a ribosomal large subunit defective strain (RNA helicase DeaD(-)). An absence of pseudouridines in the assembly precursor particles suggests that RluD directed isomerization of uridines occurs as a late step during the assembly of the large ribosomal subunit.
假尿苷合酶RluD可将23S rRNA第1911、1915和1917位的尿苷转化为假尿苷。这些核苷酸位于23S rRNA功能重要的螺旋-环69中。RluD是大肠杆菌正常生长所需的唯一假尿苷合酶。我们在体内分析了RluD的底物特异性。突变分析表明:(a)无论23S rRNA变体螺旋69环中其他位置是否存在尿苷,RluD在体内仅异构化第1911、1915和1917位的尿苷;(b)将一个U替换为C对其他位置的转化没有影响(即第1911、1915和1917位假尿苷的形成相互独立);(c)A1916是螺旋69环中唯一突变会影响RluD特异性假尿苷形成的位置。在核糖体大亚基缺陷菌株(RNA解旋酶DeaD(-))的核糖体颗粒中测定了假尿苷。组装前体颗粒中不存在假尿苷表明,RluD介导的尿苷异构化是在大核糖体亚基组装过程中的后期步骤发生的。