Dahm S C, Uhlenbeck O C
Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309-0215.
Biochemistry. 1991 Oct 1;30(39):9464-9. doi: 10.1021/bi00103a011.
A hammerhead self-cleaving domain composed of two oligoribonucleotides was used to study the role of divalent metal ions in the cleavage reaction. Cleavage rates were measured as a function of MgCl2, MnCl2, and CaCl2 concentration in the absence or presence of spermine. In the presence of spermine, the rate vs metal ion concentration curves are broader, and lower concentrations of divalent ions are necessary for catalytic activity. This suggests that spermine can promote proper folding of the hammerhead and one or more divalent ions are required for the reaction. Six additional divalent ions were tested for their ability to support hammerhead cleavage. In the absence of spermine, rapid cleavage was observed with Co2+ while very slow cleavage occurred with Sr2+ and Ba2+. No detectable specific cleavage was observed with Cd2+, Zn2+, or Pb2+. However, in the presence of 0.5 mM spermine, rapid cleavage was observed with Zn2+ and Cd2+, and the rate with Sr2+ was increased, indicating that while these three ions could not promote proper folding of the hammerhead they were able to stimulate cleavage. These results suggest certain divalent ions either participate directly in the cleavage mechanism or are specifically involved in stabilizing the tertiary structure of the hammerhead. Additionally, an altered divalent metal ion specificity was observed when a unique phosphorothioate linkage was inserted at the cleavage site. The substitution of a sulfur for a nonbridging oxygen atom substantially reduced the affinity of an important Mg2+ ion necessary for efficient cleavage. In contrast, the reaction proceeds normally with Mn2+, presumably due to its ability to coordinate with both oxygen and sulfur.(ABSTRACT TRUNCATED AT 250 WORDS)
一种由两个寡核糖核苷酸组成的锤头状自我切割结构域被用于研究二价金属离子在切割反应中的作用。在不存在或存在精胺的情况下,测量了切割速率与MgCl2、MnCl2和CaCl2浓度的函数关系。在存在精胺的情况下,速率与金属离子浓度的曲线更宽,并且催化活性所需的二价离子浓度更低。这表明精胺可以促进锤头状结构的正确折叠,并且反应需要一种或多种二价离子。测试了另外六种二价离子支持锤头状切割的能力。在不存在精胺的情况下,观察到Co2+存在时快速切割,而Sr2+和Ba2+存在时切割非常缓慢。用Cd2+、Zn2+或Pb2+未观察到可检测到的特异性切割。然而,在存在0.5 mM精胺的情况下,观察到Zn2+和Cd2+存在时快速切割,并且Sr2+的切割速率增加,表明虽然这三种离子不能促进锤头状结构的正确折叠,但它们能够刺激切割。这些结果表明某些二价离子要么直接参与切割机制,要么特别参与稳定锤头状结构的三级结构。此外,当在切割位点插入独特的硫代磷酸酯键时,观察到二价金属离子特异性发生改变。用硫取代非桥连氧原子大大降低了有效切割所需的重要Mg2+离子的亲和力。相比之下,反应在Mn2+存在下正常进行,大概是由于其与氧和硫配位的能力。(摘要截短于250字)