Pecorari Ilaria, Borin Daniele, Sbaizero Orfeo
Department of Engineering and Architecture, University of Trieste, Via Valerio 10, 34127 Trieste, Italy.
Cells. 2017 Oct 10;6(4):33. doi: 10.3390/cells6040033.
Lamins are type V intermediate filaments that collectively form a meshwork underneath the inner nuclear membrane, called nuclear lamina. Furthermore, they are also present in the nucleoplasm. Lamins are experiencing a growing interest, since a wide range of diseases are induced by mutations in the gene coding for A-type lamins, globally known as laminopathies. Moreover, it has been demonstrated that lamins are involved in other pathological conditions, like cancer. The role of lamins has been studied from several perspectives, exploiting different techniques and procedures. This multidisciplinary approach has contributed to resolving the unique features of lamins and has provided a thorough insight in their role in living organisms. Yet, there are still many unanswered questions, which constantly generate research in the field. The present work is aimed to review some interesting experimental techniques performed so far to study lamins. Scientists can take advantage of this collection for their novel investigations, being aware of the already pursued and consolidated methodologies. Hopefully, advances in these research directions will provide insights to achieve better diagnostic procedures and effective therapeutic options.
核纤层蛋白是V型中间丝,它们共同在内核膜下方形成一个网络,称为核纤层。此外,它们也存在于核质中。核纤层蛋白正受到越来越多的关注,因为编码A型核纤层蛋白的基因突变会引发多种疾病,这些疾病统称为核纤层蛋白病。此外,已经证明核纤层蛋白还参与其他病理状况,如癌症。人们从多个角度利用不同的技术和程序对核纤层蛋白的作用进行了研究。这种多学科方法有助于解析核纤层蛋白的独特特征,并深入了解它们在生物体中的作用。然而,仍然存在许多未解决的问题,这不断推动该领域的研究。本工作旨在综述迄今为止为研究核纤层蛋白而进行的一些有趣的实验技术。科学家们可以利用这一汇总进行新的研究,同时了解已有的和成熟的方法。希望这些研究方向的进展将为实现更好的诊断程序和有效的治疗选择提供见解。