Guirao Boris, Joanny Jean-François
Laboratoire Physico-chimie Curie, Institut Curie, Paris, France.
Biophys J. 2007 Mar 15;92(6):1900-17. doi: 10.1529/biophysj.106.084897. Epub 2006 Dec 22.
Cells carrying cilia on their surface show many striking features: alignment of cilia in an array, two-phase asymmetric beating for each cilium, and existence of metachronal coordination with a constant phase difference between two adjacent cilia. We give simple theoretical arguments based on hydrodynamic coupling and an internal mechanism of the cilium derived from the behavior of a collection of molecular motors to account qualitatively for these cooperative features. Hydrodynamic interactions can lead to the alignment of an array of cilia. We study the effect of a transverse external flow and obtain a two-phase asymmetrical beating, faster along the flow and slower against the flow, proceeding around an average curved position. We show that an aligned array of cilia is able to spontaneously break the left-right symmetry and to create a global average flow. Metachronal coordination arises as a consequence of the internal mechanism of the cilia and their hydrodynamic couplings, with a wavelength comparable to that found in experiments. It allows the cilia to start beating at a lower adenosine-triphosphate threshold and at a higher frequency than for a single cilium. It also leads to a rather stationary flow, which might be its major advantage.
细胞表面带有纤毛,呈现出许多显著特征:纤毛排列成阵列,每个纤毛进行两相不对称摆动,相邻纤毛之间存在具有恒定相位差的顺次协调。我们基于流体动力耦合和源自分子马达集合行为的纤毛内部机制给出简单的理论论证,以定性解释这些协同特征。流体动力相互作用可导致纤毛阵列排列整齐。我们研究横向外部流的影响,得到一种两相不对称摆动,沿流方向摆动较快,逆着流方向摆动较慢,围绕平均弯曲位置进行。我们表明,排列整齐的纤毛阵列能够自发打破左右对称性并产生整体平均流。顺次协调是纤毛内部机制及其流体动力耦合的结果,其波长与实验中发现的波长相当。它使纤毛能够在比单个纤毛更低的三磷酸腺苷阈值和更高的频率下开始摆动。它还会导致相当稳定的流动,这可能是其主要优势。