Urrego Diana, Sánchez Araceli, Tomczak Adam P, Pardo Luis A
Max-Planck-Institut für experimentelle Medizin, AG Oncophysiology, Göttingen, Germany.
Bioessays. 2017 Jun;39(6). doi: 10.1002/bies.201600190. Epub 2017 Mar 30.
Kv10.1 is a voltage-gated potassium channel relevant for tumor biology, but the underlying mechanism is still unclear. We propose that Kv10.1 plays a role coordinating primary cilium disassembly with cell cycle progression through localized changes of membrane potential at the ciliary base. Most non-dividing cells display a primary cilium, an antenna-like structure important for cell physiology. The cilium is disassembled when the cell divides, which requires an increase of Ca concentration and a redistribution of phospholipids in its basal region, both of which would be facilitated by local hyperpolarization. Cells lacking Kv10.1 show impaired ciliary disassembly and delayed entrance into mitosis. Kv10.1 is predominantly expressed during G2/M, a critical period for ciliary resorption, and localizes to the ciliary base and vesicles associated with the centrosome. This could explain the influence of Kv10.1 in cell proliferation, as well as phenotypic features of patients carrying gain of function mutations in the gene.
Kv10.1是一种与肿瘤生物学相关的电压门控钾通道,但其潜在机制仍不清楚。我们提出,Kv10.1通过纤毛基部膜电位的局部变化,在协调初级纤毛解聚与细胞周期进程中发挥作用。大多数非分裂细胞都有一根初级纤毛,这是一种对细胞生理功能很重要的天线状结构。当细胞分裂时,纤毛会解体,这需要钙浓度的增加和其基部区域磷脂的重新分布,而这两者都会因局部超极化而得到促进。缺乏Kv10.1的细胞显示出纤毛解体受损和进入有丝分裂延迟。Kv10.1主要在G2/M期表达,这是纤毛吸收的关键时期,并且定位于纤毛基部和与中心体相关的囊泡。这可以解释Kv10.1对细胞增殖的影响,以及该基因功能获得性突变患者的表型特征。