Center of Physiology, Pathophysiology and Biophysics, Paracelsus Medical University, Nuremberg, Germany.
Institute of Biological Information Processing (IBI-1), Molekular- und Zellphysiologie, Forschungszentrum Jülich, Germany.
FEBS Open Bio. 2022 Feb;12(2):523-537. doi: 10.1002/2211-5463.13361. Epub 2022 Jan 19.
Voltage-gated proton channels (H 1) are expressed in eukaryotes, including basal hexapods and polyneopteran insects. However, currently, there is little known about H 1 channels in insects. A characteristic aspartate (Asp) that functions as the proton selectivity filter (SF) and the RxWRxxR voltage-sensor motif are conserved structural elements in H 1 channels. By analysing Transcriptome Shotgun Assembly (TSA) databases, we found 33 polyneopteran species meeting these structural requirements. Unexpectedly, an unusual natural variation Asp to glutamate (Glu) at SF was found in Phasmatodea and Mantophasmatodea. Additionally, we analysed the expression and function of H 1 in the phasmatodean stick insect Extatosoma tiaratum (Et). EtH 1 is strongly expressed in nervous tissue and shows pronounced inward proton conduction. This is the first study of a natural occurring Glu within the SF of a functional H 1 and might be instrumental in uncovering the physiological function of H 1 in insects.
电压门控质子通道 (H1) 在真核生物中表达,包括基础六足动物和多翅目昆虫。然而,目前对昆虫中的 H1 通道知之甚少。一个特征性的天冬氨酸 (Asp) 作为质子选择性过滤器 (SF) 和 RxWRxxR 电压传感器基序是 H1 通道的保守结构元件。通过分析转录组鸟枪法组装 (TSA) 数据库,我们发现了 33 种符合这些结构要求的多翅目物种。出乎意料的是,在有翅目和 Mantophasmatodea 中发现了 SF 中不寻常的自然变异 Asp 到谷氨酸 (Glu)。此外,我们分析了在有翅目竹节虫 Extatosoma tiaratum (Et) 中 H1 的表达和功能。EtH1 在神经组织中强烈表达,并表现出明显的内向质子传导。这是首次在功能性 H1 的 SF 中发现天然存在的 Glu,这可能有助于揭示 H1 在昆虫中的生理功能。