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核纤层蛋白C作为机械表型中一种重要异构体的新作用。

The Emerging Role of Lamin C as an Important Isoform in Mechanophenotype.

作者信息

González-Cruz Rafael D, Dahl Kris N, Darling Eric M

机构信息

Center for Biomedical Engineering, Brown University, Providence, RI, United States.

Department of Chemical Engineering, Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, PA, United States.

出版信息

Front Cell Dev Biol. 2018 Nov 2;6:151. doi: 10.3389/fcell.2018.00151. eCollection 2018.

Abstract

Lamin A and lamin C isoforms of the gene are major structural and mechanotransductive components of the nuclear lamina. Previous reports have proposed lamin A as the isoform with the most dominant contributions to cellular mechanophenotype. Recently, expression of lamin C has also been shown to strongly correlate to cellular elastic and viscoelastic properties. Nevertheless, isoforms exist as part of a network that collectively provides structural integrity to the nucleus and their expression is ultimately regulated in a cell-specific manner. Thus, they have importance in mechanotransduction and structural integrity of the nucleus as well as potential candidates for biomarkers of whole-cell mechanophenotype. Therefore, a fuller discussion of lamin isoforms as mechanophenotypic biomarkers should compare both individual and ratiometric isoform contributions toward whole-cell mechanophenotype across different cell types. In this perspective, we discuss the distinctions between the mechanophenotypic correlations of individual and ratiometric lamins A:B1, C:B1, (A + C):B1, and C:A across cells from different lineages, demonstrating that the collective contribution of ratiometric lamin (A + C):B1 isoforms exhibited the strongest correlation to whole-cell stiffness. Additionally, we highlight the potential roles of lamin isoform ratios as indicators of mechanophenotypic change in differentiation and disease to demonstrate that the contributions of individual and collective lamin isoforms can occur as both static and dynamic biomarkers of mechanophenotype.

摘要

该基因的核纤层蛋白A和核纤层蛋白C异构体是核纤层的主要结构和机械转导成分。先前的报道提出核纤层蛋白A是对细胞机械表型贡献最显著的异构体。最近,核纤层蛋白C的表达也被证明与细胞的弹性和粘弹性特性密切相关。然而,这些异构体作为一个网络的一部分存在,共同为细胞核提供结构完整性,并且它们的表达最终以细胞特异性方式受到调控。因此,它们在细胞核的机械转导和结构完整性方面具有重要意义,也是全细胞机械表型生物标志物的潜在候选者。所以,关于核纤层蛋白异构体作为机械表型生物标志物的更全面讨论,应该比较不同细胞类型中个体和比例异构体对全细胞机械表型的贡献。从这个角度出发,我们讨论了来自不同谱系的细胞中,个体和比例的核纤层蛋白A:B1、C:B1、(A + C):B1和C:A的机械表型相关性之间的差异,表明比例核纤层蛋白(A + C):B1异构体的集体贡献与全细胞硬度的相关性最强。此外,我们强调了核纤层蛋白异构体比例作为分化和疾病中机械表型变化指标的潜在作用,以证明个体和集体核纤层蛋白异构体的贡献既可以作为机械表型的静态生物标志物,也可以作为动态生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67a2/6224339/89ed6f9729e3/fcell-06-00151-g001.jpg

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