National Centre for Biological Sciences (NCBS), Tata Institute of Fundamental Research, Bangalore, Karnataka, India.
Cytoskeleton (Hoboken). 2019 Jan;76(1):104-114. doi: 10.1002/cm.21476. Epub 2018 Aug 29.
Orai channels are plasma membrane resident Ca channels that allow extracellular Ca uptake after depletion of ER-Ca stores by a process called store-operated Ca entry (SOCE). Septins of the SEPT2 subgroup act as positive regulators of SOCE in human nonexcitable cells. SEPT2 subgroup septins form the central core of hetero-hexameric or hetero-octameric complexes with SEPT6, SEPT7 and SEPT9 subgroup septins. The presence of fewer septin encoding genes coupled with ease of genetic manipulation allows for better understanding of septin subgroup function in Drosophila. Our earlier findings show that although dSEPT7 reduction does not alter Orai-mediated Ca entry during SOCE, it results in constitutive activation of Orai channels in resting neurons. Here, we have investigated the role of other septin subgroup members in regulating Orai channel activation in Drosophila neurons by both cellular and functional assays. We show that dSEPT1, a SEPT2 subgroup septin can exist in a complex with dSEPT2 and dSEPT7 in the central nervous system (CNS) of Drosophila. Our findings suggest that the nature of septin filaments and heteromers obtained after reducing septins of different subgroups alters their ability to regulate Orai channel opening. The molecular mechanisms underlying this complex regulation of Orai function by septins require further cellular investigations.
Orai 通道是质膜驻留的 Ca 通道,允许细胞外 Ca 通过一种称为储存操纵性 Ca 内流(SOCE)的过程在 ER-Ca 储存耗尽后摄取。SEPT2 亚组的 septin 作为人无兴奋性细胞中 SOCE 的正调节剂。SEPT2 亚组 septin 与 SEPT6、SEPT7 和 SEPT9 亚组 septin 形成异六聚体或异八聚体复合物的中心核心。编码 septin 的基因较少,加上遗传操作的容易性,允许在果蝇中更好地理解 septin 亚组的功能。我们之前的研究结果表明,尽管 dSEPT7 的减少不会改变 SOCE 期间 Orai 介导的 Ca 内流,但它会导致静息神经元中 Orai 通道的组成性激活。在这里,我们通过细胞和功能测定研究了其他 septin 亚组成员在调节果蝇神经元中 Orai 通道激活中的作用。我们表明,dSEPT1,一种 SEPT2 亚组 septin,可以与 dSEPT2 和 dSEPT7 存在于果蝇中枢神经系统(CNS)中。我们的研究结果表明,在用不同亚组的 septin 减少后获得的 septin 纤维和异源二聚体的性质改变了它们调节 Orai 通道开放的能力。septin 对 Orai 功能的这种复杂调节的分子机制需要进一步的细胞研究。