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有多少是足够的?——疟原虫多核细胞分裂的挑战。

How Many Is Enough? - Challenges of Multinucleated Cell Division in Malaria Parasites.

机构信息

Centre for Infectious Diseases, Heidelberg University Hospital, Heidelberg, Germany.

出版信息

Front Cell Infect Microbiol. 2021 May 7;11:658616. doi: 10.3389/fcimb.2021.658616. eCollection 2021.

Abstract

Regulating the number of progeny generated by replicative cell cycles is critical for any organism to best adapt to its environment. Classically, the decision whether to divide further is made after cell division is completed by cytokinesis and can be triggered by intrinsic or extrinsic factors. Contrarily, cell cycles of some species, such as the malaria-causing parasites, go through multinucleated cell stages. Hence, their number of progeny is determined prior to the completion of cell division. This should fundamentally affect how the process is regulated and raises questions about advantages and challenges of multinucleation in eukaryotes. Throughout their life cycle spp. parasites undergo four phases of extensive proliferation, which differ over three orders of magnitude in the amount of daughter cells that are produced by a single progenitor. Even during the asexual blood stage proliferation parasites can produce very variable numbers of progeny within one replicative cycle. Here, we review the few factors that have been shown to affect those numbers. We further provide a comparative quantification of merozoite numbers in several and parasite strains, and we discuss the general processes that may regulate progeny number in the context of host-parasite interactions. Finally, we provide a perspective of the critical knowledge gaps hindering our understanding of the molecular mechanisms underlying this exciting and atypical mode of parasite multiplication.

摘要

调控复制细胞周期产生的后代数量对于任何生物体适应其环境至关重要。经典地,是否进一步分裂的决定是在细胞分裂完成后由胞质分裂做出的,并且可以由内在或外在因素触发。相反,某些物种的细胞周期,如引起疟疾的寄生虫,经历多核细胞阶段。因此,它们的后代数量是在细胞分裂完成之前确定的。这应该从根本上影响调控过程,并提出了多核化在真核生物中的优势和挑战的问题。在整个生命周期中, 种寄生虫经历了四个广泛增殖的阶段,其产生的子细胞数量在数量级上相差三个数量级。即使在无性血期增殖中,寄生虫在一个复制周期内也可以产生非常不同数量的后代。在这里,我们回顾了已经表明可以影响这些数量的少数几个因素。我们进一步对几种 和 寄生虫株的裂殖子数量进行了比较定量,并讨论了在宿主-寄生虫相互作用的背景下可能调控后代数量的一般过程。最后,我们提供了一个视角,即阻碍我们理解这种令人兴奋和非典型寄生虫增殖模式的分子机制的关键知识差距。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a597/8137892/390ce5d03b1d/fcimb-11-658616-g001.jpg

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