...
首页> 外文期刊>Biochemistry >Calcium regulation of calmodulin binding to and dissociation from the myo1c regulatory domain
【24h】

Calcium regulation of calmodulin binding to and dissociation from the myo1c regulatory domain

机译:钙调节钙调蛋白与myo1c调节域的结合和解离

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Myolc is an unconventional myosin involved in cell signaling and membrane dynamics. Calcium binding to the regulatory-domain-associated calmodulin affects myolc motor properties, but the kinetic details of this regulation are not fully understood. We performed actin gliding assays, ATPase measurements, fluorescence spectroscopy, and stopped-flow kinetics to determine the biochemical parameters that define the calmodulin-regulatory-domain interaction. We found calcium moderately increases the actin-activated ATPase activity and completely inhibits actin gliding. Addition of exogenous calmodulin in the presence of calcium fully restores the actin gliding rate. A fluorescently labeled calmodulin mutant (N111C) binds to recombinant peptides containing the myolc IQ motifs at a diffusion-limited rate in the presence and absence of calcium. Measurements of calmodulin dissociation from the IQ motifs in the absence of calcium show that the calmodulin bound to the IQ motif adjacent to the motor domain (IQ1) has the slowest dissociation rate (0.0007 s(-1)), and the IQ motif adjacent to the tail domain (IQ3) has the fastest dissociation rate (0.5 s(-1)). When the complex is equilibrated with calcium, calmodulin dissociates most rapidly from IQ1 (60 s(-1)). However, this increased rate of dissociation is limited by a slow calcium-induced conformational change (3 s(-1)). Fluorescence anisotropy decay of fluorescently labeled N111C bound to myolc did not depend appreciably on Ca2+. Our data suggest that the calmodulin bound to the IQ motif adjacent to the motor domain is rapidly exchangeable in the presence of calcium and is responsible for regulation of myolc ATPase and motile activity.
机译:Myolc是参与细胞信号传导和膜动力学的非常规肌球蛋白。钙与调节域相关的钙调蛋白的结合会影响肌醇运动特性,但该调节的动力学细节尚不完全清楚。我们进行了肌动蛋白滑动测定,ATPase测量,荧光光谱和停流动力学,以确定定义钙调蛋白-调节域相互作用的生化参数。我们发现钙适度增加了肌动蛋白激活的ATPase活性,并完全抑制了肌动蛋白的滑行。在钙存在下添加外源钙调蛋白可完全恢复肌动蛋白的滑行率。在有钙和无钙的情况下,荧光标记的钙调蛋白突变体(N111C)以扩散受限的速率与含有myolc IQ基序的重组肽结合。在钙不存在的情况下,钙调蛋白从IQ基序解离的测量结果表明,与运动结构域(IQ1)相邻的IQ基序结合的钙调蛋白的解离速率最慢(0.0007 s(-1)),而IQ基序与尾域(IQ3)的解离速率最快(0.5 s(-1))。当复合物与钙平衡时,钙调蛋白与IQ1的解离速度最快(60 s(-1))。但是,这种增加的解离速率受到钙诱导的缓慢构象变化(3 s(-1))的限制。荧光标记的N111C与Myolc结合的荧光各向异性衰减并不明显依赖于Ca2 +。我们的数据表明,在钙的存在下,与运动结构域相邻的IQ基序结合的钙调蛋白可快速交换,并负责调节肌醇ATPase和运动活性。

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