Shimoda Marine Research Center, University of Tsukuba, Shimoda 415-0025, Japan.
Biomolecules. 2023 Oct 30;13(11):1594. doi: 10.3390/biom13111594.
Flagellar motility in sperm is activated and regulated by factors related to the eggs at fertilization. In the ascidian , a sulfated steroid called the SAAF (sperm activating and attracting factor) induces both sperm motility activation and chemotaxis. Cyclic AMP (cAMP) is one of the most important intracellular factors in the sperm signaling pathway. Adenylyl cyclase (AC) is the key enzyme that synthesizes cAMP at the onset of the signaling pathway in all cellular functions. We previously reported that both transmembrane AC (tmAC) and soluble AC (sAC) play important roles in sperm motility in . The tmAC plays a major role in the SAAF-induced activation of sperm motility. On the other hand, sAC is involved in the regulation of flagellar beat frequency and the Ca-dependent chemotactic movement of sperm. In this study, we focused on the role of sAC in the regulation of flagellar motility in sperm chemotaxis. The immunochemical analysis revealed that several isoforms of sAC protein were expressed in sperm, as reported in mammals and sea urchins. We demonstrated that sAC inhibition caused strong and transient asymmetrization during the chemotactic turn, and then sperm failed to turn toward the SAAF. In addition, real-time Ca imaging in sperm flagella revealed that sAC inhibition induced an excessive and prolonged Ca influx to flagella. These results indicate that sAC plays a key role in sperm chemotaxis by regulating the clearance of [Ca] and by modulating Ca-dependent flagellar waveform conversion.
在受精过程中,与卵子相关的因素激活并调节精子的鞭毛运动。在海鞘中,一种叫做 SAAF(精子激活和吸引因子)的硫酸甾体激活并诱导精子运动和趋化性。环腺苷酸(cAMP)是精子信号通路中最重要的细胞内因子之一。腺苷酸环化酶(AC)是所有细胞功能中信号通路起始时合成 cAMP 的关键酶。我们之前报道过跨膜 AC(tmAC)和可溶性 AC(sAC)在 精子运动中都发挥重要作用。tmAC 在 SAAF 诱导的精子运动激活中起主要作用。另一方面,sAC 参与鞭毛拍频的调节和精子的 Ca 依赖性趋化运动。在这项研究中,我们专注于 sAC 在调节 精子趋化性中的鞭毛运动的作用。免疫化学分析表明,与哺乳动物和海胆一样,几种 sAC 蛋白同工型在 精子中表达。我们证明,sAC 抑制会在趋化性转弯过程中引起强烈和短暂的不对称,然后精子无法转向 SAAF。此外,精子鞭毛中的实时 Ca 成像显示,sAC 抑制会诱导 Ca 流入鞭毛过度且持续延长。这些结果表明,sAC 通过调节[Ca]的清除和调节 Ca 依赖性鞭毛波形转换来在精子趋化性中发挥关键作用。