English

Construction of nuclear envelope shape by a high-genus vesicle with pore-size constraint

Soft Condensed Matter 2016-08-25 v2 Biological Physics

Abstract

Nuclear pores have an approximately uniform distribution in the nuclear envelope of most living cells. Hence, the morphology of the nuclear envelope is a spherical stomatocyte with a high genus. We have investigated the morphology of high-genus vesicles under pore-size constraint using dynamically triangulated membrane simulations. Bending-energy minimization without volume or other constraints produces a circular-cage stomatocyte, where the pores are aligned in a circular line on an oblate bud. As the pore radius is reduced, the circular-pore alignment is more stabilized than a random pore distribution on a spherical bud. However, we have clarified the conditions for the formation of a spherical stomatocyte: a small perinuclear volume, osmotic pressure within nucleoplasm, and repulsion between the pores. When area-difference elasticity is taken into account, the formation of cylindrical or budded tubules from the stomatocyte and discoidal stomatocyte is found.

Keywords

Cite

@article{arxiv.1605.04054,
  title  = {Construction of nuclear envelope shape by a high-genus vesicle with pore-size constraint},
  author = {Hiroshi Noguchi},
  journal= {arXiv preprint arXiv:1605.04054},
  year   = {2016}
}

Comments

8 pages, 7 figures