Navigating centriolar satellites: the role of PCM1 in cellular and organismal processes.

Efe Begar, Ece Seyrek, Elif Nur Firat-Karalar
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Abstract

Centriolar satellites are ubiquitous membrane-less organelles that play critical roles in numerous cellular and organismal processes. They were initially discovered through electron microscopy as cytoplasmic granules surrounding centrosomes in vertebrate cells. These structures remained enigmatic until the identification of pericentriolar material 1 protein (PCM1) as their molecular marker, which has enabled their in-depth characterization. Recently, centriolar satellites have come into the spotlight due to their links to developmental and neurodegenerative disorders. This review presents a comprehensive summary of the major advances in centriolar satellite biology, with a focus on studies that investigated their biology associated with the essential scaffolding protein PCM1. We begin by exploring the molecular, cellular, and biochemical properties of centriolar satellites, laying the groundwork for a deeper understanding of their functions and mechanisms at both cellular and organismal levels. We then examine the implications of their dysregulation in various diseases, particularly highlighting their emerging roles in neurodegenerative and developmental disorders, as revealed by organismal models of PCM1. We conclude by discussing the current state of knowledge and posing questions about the adaptable nature of these organelles, thereby setting the stage for future research.

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中心极卫星导航:PCM1 在细胞和生物体过程中的作用。
中心体卫星是无处不在的无膜细胞器,在许多细胞和生物体过程中发挥着关键作用。它们最初是通过电子显微镜发现的,是脊椎动物细胞中中心体周围的细胞质颗粒。在发现中心粒周围物质 1 蛋白(PCM1)是其分子标记物之前,这些结构一直是个谜,直到对其进行深入表征。最近,中心极卫星因其与发育和神经退行性疾病的联系而成为关注的焦点。本综述全面总结了中心极卫星生物学的主要进展,重点介绍了与重要支架蛋白 PCM1 有关的中心极卫星生物学研究。我们首先探讨了中心极卫星的分子、细胞和生化特性,为深入了解它们在细胞和机体层面的功能和机制奠定了基础。然后,我们研究了它们在各种疾病中失调的影响,特别强调了它们在神经退行性疾病和发育障碍中新出现的作用,PCM1 的生物模型揭示了这一点。最后,我们讨论了目前的知识状况,并提出了有关这些细胞器适应性的问题,从而为未来的研究奠定了基础。
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