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核数的缩放及其在骨骼肌细胞大小调节中的空间排列。

Scaling of nuclear numbers and their spatial arrangement in skeletal muscle cell size regulation.

机构信息

Section for Health and Exercise Physiology, Inland Norway University of Applied Sciences, 2624 Lillehammer, Norway.

Department of Biosciences, University of Oslo, 0371 Oslo, Norway.

出版信息

Mol Biol Cell. 2023 Jul 1;34(8). doi: 10.1091/mbc.E22-09-0424.

Abstract

Many cells display considerable functional plasticity and depend on the regulation of numerous organelles and macromolecules for their maintenance. In large cells, organelles also need to be carefully distributed to supply the cell with essential resources and regulate intracellular activities. Having multiple copies of the largest eukaryotic organelle, the nucleus, epitomizes the importance of scaling gene products to large cytoplasmic volumes in skeletal muscle fibers. Scaling of intracellular constituents within mammalian muscle fibers is, however, poorly understood, but according to the myonuclear domain hypothesis, a single nucleus supports a finite amount of cytoplasm and is thus postulated to act autonomously, causing the nuclear number to be commensurate with fiber volume. In addition, the orderly peripheral distribution of myonuclei is a hallmark of normal cell physiology, as nuclear mispositioning is associated with impaired muscle function. Because underlying structures of complex cell behaviors are commonly formalized by scaling laws and thus emphasize emerging principles of size regulation, the work presented herein offers more of a unified conceptual platform based on principles from physics, chemistry, geometry, and biology to explore cell size-dependent correlations of the largest mammalian cell by means of scaling.

摘要

许多细胞表现出相当大的功能可塑性,并且依赖于许多细胞器和大分子的调节来维持其功能。在大型细胞中,细胞器也需要被仔细分配,以向细胞提供必要的资源并调节细胞内活动。拥有多个最大的真核细胞器——细胞核,就体现了在骨骼肌纤维中将基因产物放大到细胞质体积的重要性。然而,哺乳动物肌肉纤维内细胞成分的放大比例还了解甚少,但根据核小体域假说,一个细胞核支持一定量的细胞质,因此被假定为自主发挥作用,导致核数与纤维体积成比例。此外,肌核有序的外周分布是正常细胞生理学的一个标志,因为核定位不当与肌肉功能受损有关。由于复杂细胞行为的基础结构通常通过比例定律来形式化,因此强调了大小调节的新兴原理,本文通过比例定律提供了一个更统一的基于物理、化学、几何和生物学原理的概念平台,来探索最大的哺乳动物细胞的大小相关相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8a2/10398882/191c3a57c9f3/mbc-34-pe3-g001.jpg

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