首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Distinct Splice Variants of Dynamin-related Protein 1 Differentially Utilize Mitochondrial Fission Factor as an Effector of Cooperative GTPase Activity
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Distinct Splice Variants of Dynamin-related Protein 1 Differentially Utilize Mitochondrial Fission Factor as an Effector of Cooperative GTPase Activity

机译:动态相关蛋白1的不同剪接变体差异地利用线粒体裂变因子作为合作GTPase活性的效应器。

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摘要

Multiple isoforms of the mitochondrial fission GTPase dynamin-related protein 1 (Drp1) arise from the alternative splicing of its single gene-encoded pre-mRNA transcript. Among these, the longer Drp1 isoforms, expressed selectively in neurons, bear unique polypeptide sequences within their GTPase and variable domains, known as the A-insert and the B-insert, respectively. Their functions remain unresolved. A comparison of the various biochemical and biophysical properties of the neuronally expressed isoforms with that of the ubiquitously expressed, and shortest, Drp1 isoform (Drp1-short) has revealed the effect of these inserts on Drp1 function. Utilizing various biochemical, biophysical, and cellular approaches, we find that the A- and B-inserts distinctly alter the oligomerization propensity of Drp1 in solution as well as the preferred curvature of helical Drp1 self-assembly on membranes. Consequently, these sequences also suppress Drp1 cooperative GTPase activity. Mitochondrial fission factor (Mff), a tail-anchored membrane protein of the mitochondrial outer membrane that recruits Drp1 to sites of ensuing fission, differentially stimulates the disparate Drp1 isoforms and alleviates the autoinhibitory effect imposed by these sequences on Drp1 function. Moreover, the differential stimulatory effects of Mff on Drp1 isoforms are dependent on the mitochondrial lipid, cardiolipin (CL). Although Mff stimulation of the intrinsically cooperative Drp1-short isoform is relatively modest, CL-independent, and even counter-productive at high CL concentrations, Mff stimulation of the much less cooperative longest Drp1 isoform (Drp1-long) is robust and occurs synergistically with increasing CL content. Thus, membrane-anchored Mff differentially regulates various Drp1 isoforms by functioning as an allosteric effector of cooperative GTPase activity.
机译:线粒体裂变GTPase动力相关蛋白1(Drp1)的多个同工型来自其单个基因编码的pre-mRNA转录物的可变剪接。其中,较长的Drp1亚型在神经元中选择性表达,在其GTPase和可变域内分别具有独特的多肽序列,分别称为A插入和B插入。它们的功能仍未解决。神经元表达的同工型与无处不在的表达同工型的各种生化和生物物理特性的比较,最短的Drp1同工型(Drp1-short)已揭示这些插入片段对Drp1功能的影响。利用各种生化,生物物理和细胞方法,我们发现A插入物和B插入物明显改变了溶液中Drp1的低聚倾向,以及膜上螺旋形Drp1自组装的首选曲率。因此,这些序列也抑制Drp1协同GTPase活性。线粒体裂变因子(Mff)是线粒体外膜的尾部锚定膜蛋白,可将Drp1募集到随后发生裂变的位置,差异地刺激不同的Drp1亚型,并减轻这些序列对Drp1功能产生的自抑制作用。此外,Mff对Drp1亚型的不同刺激作用取决于线粒体脂质心磷脂(CL)。尽管在高CL浓度下,内在协作的Drp1短异构体的Mff刺激相对适度,不依赖CL,甚至适得其反,但协作少得多的最长Drp1异构体(Drp1-long)的Mff刺激却很稳定,并且与增加CL含量。因此,膜锚定的Mff通过充当协同GTPase活性的变构效应子来差异调节各种Drp1亚型。

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