首页> 外文期刊>Nucleic Acids Research >Selected classes of minimised hammerhead ribozyme have very high cleavage rates at low Mg2+ concentration.
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Selected classes of minimised hammerhead ribozyme have very high cleavage rates at low Mg2+ concentration.

机译:所选类别的最小化锤头状核酶在低Mg2 +浓度下具有很高的裂解率。

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In vitro selection was used to enrich for highly efficient RNA phosphodiesterases within a size-constrained (18 nt) ribonucleotide domain. The starting population (g0) was directed in trans against an RNA oligonucleotide substrate immobilised to an avidin-magnetic phase. Four rounds of selection were conducted using 20 mM Mg2+to fractionate the population on the basis of divalent metal ion-dependent phosphodiesterase activity. The resulting generation 4 (g4) RNA was then directed through a further two rounds of selection using low concentrations of Mg2+. Generation 6 (g6) was composed of sets of active, trans cleaving minimised ribozymes, containing recognised hammerhead motifs in the conserved nucleotides, but with highly variable linker domains (loop II-L.1-L.4). Cleavage rate constants in the g6 population ranged from 0.004 to 1.3 min-1at 1 mM Mg2+(pH 8.0, 37 degrees C). Selection was further used to define conserved positions between G(10.1) and C(11.1) required for high cleavage activity at low Mg2+concentration. At 10 mM MgCl2the kinetic phenotype of these molecules was comparable to a hammerhead ribozyme with 4 bp in helix II. At low Mg2+concentration, the disparity in cleavage rate constants increases in favour of the minimised ribozymes. Favourable kinetic traits appeared to be a general property for specific selected linker sequences, as the high rates of catalysis were transferable to a different substrate system.
机译:体外选择用于富集大小受限的(18 nt)核糖核苷酸域内的高效RNA磷酸二酯酶。将起始群体(g0)反过来针对固定在亲和素磁性相上的RNA寡核苷酸底物。使用20 mM Mg2 +进行四轮选择,以根据二价金属离子依赖性磷酸二酯酶活性对种群进行分级。然后使用低浓度的Mg2 +将产生的第4代(g4)RNA进行另外两轮选择。第六代(g6)由活性的,反式切割的最小化核酶组成,其在保守的核苷酸中包含公认的锤头基序,但具有高度可变的接头结构域(环II-L.1-L.4)。 g6群体中的切割速率常数在1 mM Mg2 +(pH 8.0,37摄氏度)下为0.004至1.3 min-1。选择进一步用于定义在低Mg2 +浓度下高裂解活性所需的G(10.1)和C(11.1)之间的保守位置。在10 mM MgCl2下,这些分子的动力学表型与螺旋II中4 bp的锤头状核酶相当。在低Mg2 +浓度下,裂解速率常数的差异增加,有利于最小化核酶。有利的动力学特性似乎是特定选定接头序列的一般特性,因为高催化速率可转移至不同的底物系统。

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