Department of Biological Sciences, University of Toledo Toledo, OH, USA.
Front Cell Dev Biol. 2015 Apr 1;3:21. doi: 10.3389/fcell.2015.00021. eCollection 2015.
Centrioles are conserved, self-replicating, microtubule-based, 9-fold symmetric subcellular organelles that are essential for proper cell division and function. Most cells have two centrioles and maintaining this number of centrioles is important for animal development and physiology. However, how animals gain their first two centrioles during reproduction is only partially understood. It is well established that in most animals, the centrioles are contributed to the zygote by the sperm. However, in humans and many animals, the sperm centrioles are modified in their structure and protein composition, or they appear to be missing altogether. In these animals, the origin of the first centrioles is not clear. Here, we review various hypotheses on how centrioles are gained during reproduction and describe specialized functions of the zygotic centrioles. In particular, we discuss a new and atypical centriole found in sperm and zygote, called the proximal centriole-like structure (PCL). We also discuss another type of atypical centriole, the "zombie" centriole, which is degenerated but functional. Together, the presence of centrioles, PCL, and zombie centrioles suggests a universal mechanism of centriole inheritance among animals and new causes of infertility. Since the atypical centrioles of sperm and zygote share similar functions with typical centrioles in somatic cells, they can provide unmatched insight into centriole biology.
中心体是保守的、自我复制的、基于微管的、9 重对称的亚细胞细胞器,对于细胞的正常分裂和功能至关重要。大多数细胞有两个中心体,维持这种数量的中心体对于动物的发育和生理机能非常重要。然而,动物在繁殖过程中如何获得最初的两个中心体,目前只了解一部分。众所周知,在大多数动物中,中心体是由精子贡献给受精卵的。然而,在人类和许多动物中,精子中心体的结构和蛋白质组成发生了改变,或者它们似乎完全缺失了。在这些动物中,第一个中心体的起源尚不清楚。在这里,我们综述了关于中心体在繁殖过程中是如何获得的各种假说,并描述了受精卵中心体的特殊功能。特别是,我们讨论了一种在精子和受精卵中发现的新型非典型中心体,称为近端中心体样结构(PCL)。我们还讨论了另一种类型的非典型中心体,即“僵尸”中心体,它虽然退化但仍具有功能。总的来说,中心体、PCL 和僵尸中心体的存在表明了动物中心体遗传的普遍机制,以及新的不育原因。由于精子和受精卵的非典型中心体与体细胞中的典型中心体具有相似的功能,因此它们可以为中心体生物学提供无与伦比的深入了解。