Bellingham-Johnstun Kimberly, Tyree Zoe L, Martinez-Baird Jessica, Thorn Annelise, Laplante Caroline
bioRxiv. 2023 Mar 2:2023.03.01.530611. doi: 10.1101/2023.03.01.530611.
Actin-microtubule interactions are critical for cell division yet how these networks of polymers mutually influence their mechanical properties and functions in live cells remains unknown. In fission yeast, the post-anaphase array (PAA) of microtubules assembles in the plane of the contractile ring and its assembly relies on the Myp2p-dependent recruitment of Mto1p, a component of equatorial microtubule organizing centers (eMTOCs). The general organization of this array of microtubule and the impact on their physical attachment to the contractile ring remain unclear. We found that Myp2p facilitates the recruitment of Mto1p to the inner face of the contractile ring where the eMTOCs polymerize microtubules without their direct interaction. The PAA microtubules form a dynamic polygon of Ase1p crosslinked microtubules inside the contractile ring. The specific loss of PAA microtubules affects the mechanical properties of the contractile ring of actin by lowering its stiffness. This change in the mechanical properties of the ring has no measurable impact on cytokinesis or on the anchoring of the ring. Our work proposes that the PAA microtubules exploit the contractile ring for their assembly and function during cell division while the contractile ring may receive no benefit from these interactions.
肌动蛋白-微管相互作用对细胞分裂至关重要,但这些聚合物网络如何在活细胞中相互影响其机械性能和功能仍不清楚。在裂殖酵母中,微管的后期后阵列(PAA)在收缩环平面内组装,其组装依赖于Myp2p依赖的Mto1p募集,Mto1p是赤道微管组织中心(eMTOCs)的一个组成部分。这种微管阵列的总体组织及其对它们与收缩环物理附着的影响仍不清楚。我们发现,Myp2p促进Mto1p募集到收缩环的内表面,在那里eMTOCs聚合微管而它们之间没有直接相互作用。PAA微管在收缩环内形成由Ase1p交联微管组成的动态多边形。PAA微管的特异性缺失通过降低其刚度影响肌动蛋白收缩环的机械性能。环机械性能的这种变化对胞质分裂或环的锚定没有可测量的影响。我们的工作表明,PAA微管在细胞分裂过程中利用收缩环进行组装和发挥功能,而收缩环可能并未从这些相互作用中受益。