首页> 外文期刊>The Journal of biological chemistry >ATP utilization by a DEAD-box protein during refolding of a misfolded group I intron ribozyme
【24h】

ATP utilization by a DEAD-box protein during refolding of a misfolded group I intron ribozyme

机译:在重折叠的Intron核酶的重折叠期间,通过死箱蛋白的ATP利用

获取原文
           

摘要

DEAD-box helicase proteins perform ATP-dependent rearrangements of structured RNAs throughout RNA biology. Short RNA helices are unwound in a single ATPase cycle, but the ATP requirement for more complex RNA structural rearrangements is unknown. Here we measure the amount of ATP used for native refolding of a misfolded group I intron ribozyme by CYT-19, a Neurospora crassa DEAD-box protein that functions as a general chaperone for mitochondrial group I introns. By comparing the rates of ATP hydrolysis and ribozyme refolding, we find that several hundred ATP molecules are hydrolyzed during refolding of each ribozyme molecule. After subtracting nonproductive ATP hydrolysis that occurs in the absence of ribozyme refolding, we find that approximately 100 ATPs are hydrolyzed per refolded RNA as a consequence of interactions specific to the misfolded ribozyme. This value is insensitive to changes in ATP and CYT-19 concentration and decreases with decreasing ribozyme stability. Because of earlier findings that ~90% of global ribozyme unfolding cycles lead back to the kinetically preferred misfolded conformation and are not observed, we estimate that each global unfolding cycle?consumes ~10 ATPs. Our results indicate that CYT-19 functions as a general RNA chaperone by using a stochastic, energy-intensive mechanism to promote RNA unfolding and refolding, suggesting an evolutionary convergence with protein chaperones.
机译:死箱螺旋酶蛋白在RNA生物学中进行ATP依赖性重排结构化RNA。短RNA螺旋在单个ATP酶周期中展开,但为更复杂的RNA结构重排的ATP要求是未知的。在这里,我们测量用于通过Cyt-19的MITOSPORA CRASS DEAD盒蛋白的MITOSPORA CRASS DED-BOX蛋白,其测量用于MISOURA CRASS CAR箱蛋白的原始折叠的ATP的量,该蛋白质是用于线粒体群I内含物的一般伴侣。通过比较ATP水解和核酶重折叠的速率,我们发现在再折叠每种核酶分子的重折叠期间水解几百ATP分子。在减去在没有核酶重折叠的情况下发生的非培养ATP水解后,我们发现,由于对错配核酶特异性的相互作用,每次重折叠RNA水解约100个ATP。该值对ATP和Cyt-19浓度的变化不敏感,并且随着核苷稳定性的降低而降低。由于较早的结果,〜90%的全局核酶展开循环导致动力学上优选的错误折叠构象,并且未观察到,我们估计每个全局展开循环?消耗〜10个ATP。我们的结果表明,通过使用随机的能量密集型机制来促进RNA展开和重折叠,通过使用随机的能量 - 密集型机制来用作一般RNA伴侣,表明蛋白质伴侣的进化会聚。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号