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An obligate intermediate along the slow folding pathway of a group II intron ribozyme

机译:沿II型内含子核酶缓慢折叠途径的专性中间体。

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Most RNA molecules collapse rapidly and reach the native state through a pathway that contains numerous traps and unproductive intermediates. The D135 group II intron ribozyme is unusual in that it can fold slowly and directly to the native state, despite its large size and structural complexity. Here we use hydroxyl radical footprinting and native gel analysis to monitor the timescale of tertiary structure collapse and to detect the presence of obligate intermediates along the folding pathway of D135. We find that structural collapse and native folding of Domain 1 precede assembly of the entire ribozyme, indicating that D1 contains an on-pathway intermediate to folding of the D135 ribozyme. Subsequent docking of Domains 3 and 5, for which D1 provides a preorganized scaffold, appears to be very fast and independent of one another. In contrast to other RNAs, the D135 ribozyme undergoes slow tertiary collapse to a compacted state, with a rate constant that is also limited by the formation D1. These findings provide a new paradigm for RNA folding and they underscore the diversity of RNA biophysical behaviors.
机译:大多数RNA分子会迅速崩溃,并通过包含大量陷阱和非生产性中间体的途径达到天然状态。 D135 II型内含子核酶尽管具有较大的尺寸和复杂的结构,但仍可缓慢折叠并直接折叠成天然状态,因此与众不同。在这里,我们使用羟基自由基足迹法和天然凝胶分析法监测三级结构坍塌的时间尺度,并检测沿D135折叠路径的专性中间体的存在。我们发现结构折叠和域1的自然折叠先于整个核酶的组装,这表明D1包含D135核酶折叠的中间通路。随后由D1提供预组织支架的域3和5的对接非常快速且彼此独立。与其他RNA相比,D135核酶经历了缓慢的第三级塌陷至致密状态,速率常数也受到地层D1的限制。这些发现为RNA折叠提供了新的范例,并突显了RNA生物物理行为的多样性。

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