Briguglio Joseph S, Turkewitz Aaron P
The Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, Illinois.
J Exp Zool B Mol Dev Evol. 2014 Nov;322(7):500-16. doi: 10.1002/jez.b.22564. Epub 2014 Mar 14.
Tetrahymena thermophila, a member of the Ciliates, represents a class of organisms distantly related from commonly used model organisms in cell biology, and thus offers an opportunity to explore potentially novel mechanisms and their evolution. Ciliates, like all eukaryotes, possess a complex network of organelles that facilitate both macromolecular uptake and secretion. The underlying endocytic and exocytic pathways are key mediators of a cell's interaction with its environment, and may therefore show niche-specific adaptations. Our laboratory has taken a variety of approaches to identify key molecular determinants for membrane trafficking pathways in Tetrahymena. Studies of Rab GTPases, dynamins, and sortilin-family receptors substantiate the widespread conservation of some features but also uncover surprising roles for lineage-restricted innovation.
嗜热四膜虫是纤毛虫的一种,代表了一类与细胞生物学中常用模式生物亲缘关系较远的生物,因此提供了一个探索潜在新机制及其进化的机会。与所有真核生物一样,纤毛虫拥有一个复杂的细胞器网络,有助于大分子的摄取和分泌。潜在的内吞和外排途径是细胞与其环境相互作用的关键介质,因此可能表现出特定生态位的适应性。我们实验室采用了多种方法来确定嗜热四膜虫膜运输途径的关键分子决定因素。对Rab GTP酶、发动蛋白和分拣蛋白家族受体的研究证实了某些特征的广泛保守性,但也揭示了谱系特异性创新的惊人作用。