Morano Alexander A, Dvorin Jeffrey D
Biological and Biomedical Sciences, Harvard Medical School, Boston, MA, United States.
Division of Infectious Diseases, Boston Children's Hospital, Boston, MA, United States.
Front Cell Infect Microbiol. 2021 Apr 19;11:656976. doi: 10.3389/fcimb.2021.656976. eCollection 2021.
The actomyosin contractile ring is a key feature of eukaryotic cytokinesis, conserved across many eukaryotic kingdoms. Recent research into the cell biology of the divergent eukaryotic clade Apicomplexa has revealed a contractile ring structure required for asexual division in the medically relevant genera and ; however, the structure of the contractile ring, known as the basal complex in these parasites, remains poorly characterized and in the absence of a myosin II homolog, it is unclear how the force required of a cytokinetic contractile ring is generated. Here, we review the literature on the basal complex in Apicomplexans, summarizing what is known about its formation and function, and attempt to provide possible answers to this question and suggest new avenues of study by comparing the Apicomplexan basal complex to well-studied, established cytokinetic contractile rings and their mechanisms in organisms such as and . We also compare the basal complex to structures formed during mitochondrial and plastid division and cytokinetic mechanisms of organisms beyond the Opisthokonts, considering Apicomplexan diversity and divergence.
肌动球蛋白收缩环是真核细胞胞质分裂的一个关键特征,在许多真核生物界中都保守存在。最近对进化分支不同的真核生物顶复门细胞生物学的研究揭示了在医学相关属和中无性分裂所需的收缩环结构;然而,这种收缩环的结构,在这些寄生虫中被称为基部复合体,其特征仍然不清楚,并且由于缺乏肌球蛋白II同源物,目前尚不清楚胞质分裂收缩环所需的力是如何产生的。在这里,我们回顾了关于顶复门基部复合体的文献,总结了已知的关于其形成和功能的信息,并试图通过将顶复门基部复合体与研究充分的、已确立的胞质分裂收缩环及其在诸如和等生物中的机制进行比较,为这个问题提供可能的答案,并提出新研究方向。我们还将基部复合体与线粒体和质体分裂过程中形成的结构以及后鞭毛生物以外的生物的胞质分裂机制进行比较,同时考虑顶复门的多样性和进化分支情况。