Shih I H, Been M D
Department of Biochemistry, Duke University Medical Center, Durham, NC 27710, USA.
Proc Natl Acad Sci U S A. 2001 Feb 13;98(4):1489-94. doi: 10.1073/pnas.98.4.1489.
Ribozymes of hepatitis delta virus have been proposed to use an active-site cytosine as an acid-base catalyst in the self-cleavage reaction. In this study, we have examined the role of cytosine in more detail with the antigenomic ribozyme. Evidence that proton transfer in the rate-determining step involved cytosine 76 (C76) was obtained from examining cleavage activity of the wild-type and imidazole buffer-rescued C76-deleted (C76 Delta) ribozymes in D(2)O and H(2)O. In both reactions, a similar kinetic isotope effect and shift in the apparent pKa indicate that the buffer is functionally substituting for the side chain in proton transfer. Proton inventory of the wild-type reaction supported a mechanism of a single proton transfer at the transition state. This proton transfer step was further characterized by exogenous base rescue of a C76 Delta mutant with cytosine and imidazole analogues. For the imidazole analogues that rescued activity, the apparent pKa of the rescue reaction, measured under k(cat)/K(M) conditions, correlated with the pKa of the base. From these data a Brønsted coefficient (beta) of 0.51 was determined for the base-rescued reaction of C76 Delta. This value is consistent with that expected for proton transfer in the transition state. Together, these data provide strong support for a mechanism where an RNA side chain participates directly in general acid or general base catalysis of the wild-type ribozyme to facilitate RNA cleavage.
丁型肝炎病毒核酶被认为在自我切割反应中使用活性位点胞嘧啶作为酸碱催化剂。在本研究中,我们使用反基因组核酶更详细地研究了胞嘧啶的作用。通过检测野生型和咪唑缓冲液挽救的C76缺失(C76Δ)核酶在D₂O和H₂O中的切割活性,获得了速率决定步骤中质子转移涉及胞嘧啶76(C76)的证据。在这两个反应中,相似的动力学同位素效应和表观pKa的变化表明缓冲液在质子转移中功能上替代了侧链。野生型反应的质子积累支持了过渡态单质子转移的机制。这个质子转移步骤通过用胞嘧啶和咪唑类似物对C76Δ突变体进行外源碱基挽救进一步表征。对于挽救活性的咪唑类似物,在kcat/KM条件下测量的挽救反应的表观pKa与碱基的pKa相关。从这些数据中确定了C76Δ碱基挽救反应的布朗斯特系数(β)为0.51。这个值与过渡态质子转移预期的值一致。总之,这些数据为RNA侧链直接参与野生型核酶的一般酸或一般碱催化以促进RNA切割的机制提供了有力支持。