Department of Pathology and Laboratory Medicine, Rutgers New Jersey Medical School, The State University of New Jersey, Newark, NJ 07103, USA.
Exp Biol Med (Maywood). 2018 Mar;243(6):507-524. doi: 10.1177/1535370218763563.
Nonerythroid αII-spectrin is a structural protein whose roles in the nucleus have just begun to be explored. αII-spectrin is an important component of the nucleoskelelton and has both structural and non-structural functions. Its best known role is in repair of DNA ICLs both in genomic and telomeric DNA. αII-spectrin aids in the recruitment of repair proteins to sites of damage and a proposed mechanism of action is presented. It interacts with a number of different groups of proteins in the nucleus, indicating it has roles in additional cellular functions. αII-spectrin, in its structural role, associates/co-purifies with proteins important in maintaining the architecture and mechanical properties of the nucleus such as lamin, emerin, actin, protein 4.1, nuclear myosin, and SUN proteins. It is important for the resilience and elasticity of the nucleus. Thus, αII-spectrin's role in cellular functions is complex due to its structural as well as non-structural roles and understanding the consequences of a loss or deficiency of αII-spectrin in the nucleus is a significant challenge. In the bone marrow failure disorder, Fanconi anemia, there is a deficiency in αII-spectrin and, among other characteristics, there is defective DNA repair, chromosome instability, and congenital abnormalities. One may speculate that a deficiency in αII-spectrin plays an important role not only in the DNA repair defect but also in the congenital anomalies observed in Fanconi anemia , particularly since αII-spectrin has been shown to be important in embryonic development in a mouse model. The dual roles of αII-spectrin in the nucleus in both structural and non-structural functions make this an extremely important protein which needs to be investigated further. Such investigations should help unravel the complexities of αII-spectrin's interactions with other nuclear proteins and enhance our understanding of the pathogenesis of disorders, such as Fanconi anemia , in which there is a deficiency in αII-spectrin. Impact statement The nucleoskeleton is critical for maintaining the architecture and functional integrity of the nucleus. Nonerythroid α-spectrin (αIISp) is an essential nucleoskeletal protein; however, its interactions with other structural and non-structural nuclear proteins and its functional importance in the nucleus have only begun to be explored. This review addresses these issues. It describes αIISp's association with DNA repair proteins and at least one proposed mechanism of action for its role in DNA repair. Specific interactions of αIISp with other nucleoskeletal proteins as well as its important role in the biomechanical properties of the nucleus are reviewed. The consequences of loss of αIISp, in disorders such as Fanconi anemia, are examined, providing insights into the profound impact of this loss on critical processes known to be abnormal in FA, such as development, carcinogenesis, cancer progression and cellular functions dependent upon αIISp's interactions with other nucleoskeletal proteins.
非红血球 αII- spectrin 是一种结构蛋白,其在核中的作用才刚刚开始被探索。αII- spectrin 是核骨架的重要组成部分,具有结构和非结构功能。它最著名的作用是修复基因组和端粒 DNA 中的 DNA ICL。αII- spectrin 有助于将修复蛋白募集到损伤部位,并提出了一种作用机制。它与核内许多不同的蛋白质组相互作用,表明它在其他细胞功能中具有作用。αII- spectrin 在其结构作用中,与维持核的结构和机械特性的重要蛋白质(如 lamin、emerin、肌动蛋白、蛋白 4.1、核肌球蛋白和 SUN 蛋白)相关/共纯化。它对核的弹性和弹性很重要。因此,由于其结构和非结构作用,αII- spectrin 在细胞功能中的作用是复杂的,并且理解核中 αII- spectrin 的缺失或缺乏的后果是一个重大挑战。在骨髓衰竭疾病范可尼贫血中,αII- spectrin 缺乏,除其他特征外,还存在 DNA 修复缺陷、染色体不稳定和先天异常。人们可能会推测,αII- spectrin 的缺乏不仅在 DNA 修复缺陷中起重要作用,而且在范可尼贫血中观察到的先天异常中也起重要作用,特别是因为已经表明αII- spectrin 在小鼠模型中对胚胎发育很重要。αII- spectrin 在核中的双重结构和非结构作用使其成为一种极其重要的蛋白质,需要进一步研究。这种研究应该有助于揭示 αII- spectrin 与其他核蛋白相互作用的复杂性,并增强我们对范可尼贫血等疾病发病机制的理解,其中αII- spectrin 缺乏。 影响说明 核骨架对于维持核的结构和功能完整性至关重要。非红血球 α- spectrin(αIISp)是一种必需的核骨架蛋白;然而,它与其他结构和非结构核蛋白的相互作用及其在核中的功能重要性才刚刚开始被探索。这篇综述讨论了这些问题。它描述了αIISp 与 DNA 修复蛋白的关联,以及其在 DNA 修复中的作用的至少一种拟议机制。还综述了αIISp 与其他核骨架蛋白的特定相互作用及其在核的生物力学特性中的重要作用。还检查了失去αIISp 的后果,例如在范可尼贫血等疾病中,这为了解这一损失对 FA 中已知异常的关键过程(如发育、致癌作用、癌症进展和依赖于αIISp 与其他核骨架蛋白相互作用的细胞功能)产生了深远影响。