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Tiny cells meet big questions: a closer look at bacterial cell biology

机译:微小细胞遇到重大问题:仔细研究细菌细胞生物学

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摘要

While studying actin assembly as a graduate student with Matt Welch at the University of California at Berkeley, my interest was piqued by reports of surprising observations in bacteria: the identification of numerous cytoskeletal proteins, actin homologues fulfilling spindle-like functions, and even the presence of membrane-bound organelles. Curiosity about these phenomena drew me to Lucy Shapiro's lab at Stanford University for my postdoctoral research. In the Shapiro lab, and now in my lab at Johns Hopkins, I have focused on investigating the mechanisms of bacterial cytokinesis. Spending time as both a eukaryotic cell biologist and a bacterial cell biologist has convinced me that bacterial cells present the same questions as eukaryotic cells: How are chromosomes organized and accurately segregated? How is force generated for cytokinesis? How is polarity established? How are signals transduced within and between cells? These problems are conceptually similar between eukaryotes and bacteria, although their solutions can differ significantly in specifics. In this Perspective, I provide a broad view of cell biological phenomena in bacteria, the technical challenges facing those of us who peer into bacterial cells, and areas of common ground as research in eukaryotic and bacterial cell biology moves forward.
机译:在加州大学伯克利分校的研究生马特·韦尔奇(Matt Welch)研究肌动蛋白装配的过程中,我对细菌中令人惊讶的观察结果的报道激起了我的兴趣:许多细胞骨架蛋白的鉴定,肌动蛋白同源物实现纺锤状功能,甚至存在膜结合的细胞器。对这些现象的好奇心吸引我到斯坦福大学露西·夏皮罗的实验室从事我的博士后研究。在Shapiro实验室以及现在在约翰·霍普金斯大学(Johns Hopkins)的实验室中,我一直致力于研究细菌胞质分裂的机制。花费时间作为真核细胞生物学家和细菌细胞生物学家都使我相信细菌细胞提出的问题与真核细胞相同:染色体如何组织和准确分离?胞质分裂如何产生力?如何建立极性?细胞内和细胞间如何信号转导?这些问题在真核生物和细菌之间在概念上相似,尽管它们的解决方案在细节上可能有很大差异。在此观点中,我提供了细菌中细胞生物学现象的广泛视野,凝视细菌细胞的我们这些人所面临的技术挑战,以及随着真核生物和细菌细胞生物学研究的发展而出现的共同领域。

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