Koppenol-Raab Marijke, Harwig Megan Cleland, Posey Ammon E, Egner John M, MacKenzie Kevin R, Hill R Blake
From the Department of Biology and.
the Department of Biochemistry, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, and.
J Biol Chem. 2016 Sep 23;291(39):20329-44. doi: 10.1074/jbc.M116.724005. Epub 2016 Aug 5.
The tail-anchored protein Fis1 is implicated as a passive tether in yeast mitochondrial fission. We probed the functional role of Fis1 Glu-78, whose elevated side chain pKa suggests participation in protein interactions. Fis1 binds partners Mdv1 or Dnm1 tightly, but mutation E78A weakens Fis1 interaction with Mdv1, alters mitochondrial morphology, and abolishes fission in a growth assay. In fis1Δ rescue experiments, Fis1-E78A causes a novel localization pattern in which Dnm1 uniformly coats the mitochondria. By contrast, Fis1-E78A at lower expression levels recruits Dnm1 into mitochondrial punctate structures but fails to support normal fission. Thus, Fis1 makes multiple interactions that support Dnm1 puncta formation and may be essential after this step, supporting a revised model for assembly of the mitochondrial fission machinery. The insights gained by mutating a residue with a perturbed pKa suggest that side chain pKa values inferred from routine NMR sample pH optimization could provide useful leads for functional investigations.
尾锚定蛋白Fis1被认为是酵母线粒体分裂中的一个被动系链。我们探究了Fis1第78位谷氨酸(Glu-78)的功能作用,其升高的侧链pKa表明它参与了蛋白质相互作用。Fis1与伙伴蛋白Mdv1或Dnm1紧密结合,但E78A突变会削弱Fis1与Mdv1的相互作用,改变线粒体形态,并在生长试验中消除分裂。在fis1Δ拯救实验中,Fis1-E78A导致一种新的定位模式,即Dnm1均匀地覆盖在线粒体上。相比之下,较低表达水平的Fis1-E78A将Dnm1募集到线粒体点状结构中,但无法支持正常分裂。因此,Fis1进行多种相互作用以支持Dnm1点状结构的形成,并且在这一步骤之后可能是必不可少的,这支持了线粒体分裂机制组装的修订模型。通过突变具有扰动pKa的残基所获得的见解表明,从常规NMR样品pH优化推断出的侧链pKa值可为功能研究提供有用线索。