Department of Life Sciences, Imperial College, London, UK.
Soft Matter. 2017 Nov 15;13(44):8089-8095. doi: 10.1039/c7sm00818j.
To survive starvation, Bacillus subtilis forms durable spores. After asymmetric cell division, the septum grows around the forespore in a process called engulfment, but the mechanism of force generation is unknown. Here, we derived a novel biophysical model for the dynamics of cell-wall remodeling during engulfment based on a balancing of dissipative, active, and mechanical forces. By plotting phase diagrams, we predict that sporulation is promoted by a line tension from the attachment of the septum to the outer cell wall, as well as by an imbalance in turgor pressures in the mother-cell and forespore compartments. We also predict that significant mother-cell growth hinders engulfment. Hence, relatively simple physical principles may guide this complex biological process.
为了在饥饿中存活,枯草芽孢杆菌形成了耐用的孢子。在不对称细胞分裂后,隔膜在被称为“吞噬”的过程中围绕前孢子生长,但力的产生机制尚不清楚。在这里,我们基于耗散力、主动力和机械力的平衡,为吞噬过程中细胞壁重塑的动力学推导了一个新的生物物理模型。通过绘制相图,我们预测了隔膜与外细胞壁的连接产生的线张力,以及母细胞和前孢子隔室之间的渗透压不平衡,都会促进孢子形成。我们还预测,母细胞的显著生长会阻碍吞噬作用。因此,相对简单的物理原理可能指导着这一复杂的生物过程。