Neiswender Hannah, Baker Frederick C, Veeranan-Karmegam Rajalakshmi, Allen Phylicia, Gonsalvez Graydon B
Cellular Biology and Anatomy, Medical College of Georgia, Augusta University, Augusta, GA, United States.
Front Cell Dev Biol. 2023 Jun 2;11:1148773. doi: 10.3389/fcell.2023.1148773. eCollection 2023.
We recently identified the ortholog of TTC1 (dTtc1) as an interacting partner of Egalitarian, an RNA adaptor of the Dynein motor. In order to better understand the function of this relatively uncharacterized protein, we depleted dTtc1 in the female germline. Depletion of dTtc1 resulted in defective oogenesis and no mature eggs were produced. A closer examination revealed that mRNA cargoes normally transported by Dynein were relatively unaffected. However, mitochondria in dTtc1 depleted egg chambers displayed an extremely swollen phenotype. Ultrastructural analysis revealed a lack of cristae. These phenotypes were not observed upon disruption of Dynein. Thus, this function of dTtc1 is likely to be Dynein independent. Consistent with a role for dTtc1 in mitochondrial biology, a published proteomics screen revealed that dTtc1 interacts with numerous components of electron transport chain (ETC) complexes. Our results indicate that the expression level of several of these ETC components was significantly reduced upon depletion of dTtc1. Importantly, this phenotype was completely rescued upon expression of wild-type GFP-dTtc1 in the depleted background. Lastly, we demonstrate that the mitochondrial phenotype caused by a lack of dTtc1 is not restricted to the germline but is also observed in somatic tissues. Our model suggests that dTtc1, likely in combination with cytoplasmic chaperones, is required for stabilizing ETC components.
我们最近鉴定出TTC1的直系同源物(dTtc1)是均等蛋白(动力蛋白的一种RNA适配体)的相互作用伴侣。为了更好地理解这种相对未被充分表征的蛋白质的功能,我们在雌性生殖系中敲低了dTtc1。dTtc1的敲低导致卵子发生缺陷,未产生成熟卵子。进一步检查发现,通常由动力蛋白运输的mRNA货物相对未受影响。然而,dTtc1敲低的卵室中的线粒体表现出极度肿胀的表型。超微结构分析显示缺乏嵴。在动力蛋白被破坏时未观察到这些表型。因此,dTtc1的这种功能可能不依赖于动力蛋白。与dTtc1在线粒体生物学中的作用一致,一项已发表的蛋白质组学筛选表明,dTtc1与电子传递链(ETC)复合物的众多组分相互作用。我们的结果表明,在dTtc1敲低后,这些ETC组分中的几种的表达水平显著降低。重要的是,在敲低背景中表达野生型GFP-dTtc1后,这种表型完全得到了挽救。最后,我们证明,缺乏dTtc1所导致的线粒体表型不仅限于生殖系,在体细胞组织中也能观察到。我们的模型表明,dTtc1可能与细胞质伴侣蛋白一起,是稳定ETC组分所必需的。