Suppr超能文献

计算机分析表明,美洲螯龙虾的心脏神经节含有多种假定的连接蛋白/连接蛋白样蛋白,包括该蛋白家族的已知和新成员。

In silico analyses suggest the cardiac ganglion of the lobster, Homarus americanus, contains a diverse array of putative innexin/innexin-like proteins, including both known and novel members of this protein family.

机构信息

Békésy Laboratory of Neurobiology, Pacific Biosciences Research Center, School of Ocean and Earth Science and Technology, University of Hawaii at Manoa, 1993 East-West Road, Honolulu, HI, 96822, USA.

Pest Management and Biocontrol Research Unit, US Arid Land Agricultural Research Center, USDA Agricultural Research Services, Maricopa, AZ, 85138, USA.

出版信息

Invert Neurosci. 2020 Mar 2;20(2):5. doi: 10.1007/s10158-020-0238-6.

Abstract

Gap junctions are physical channels that connect adjacent cells, permitting the flow of small molecules/ions between the cytoplasms of the coupled units. Innexin/innexin-like proteins are responsible for the formation of invertebrate gap junctions. Within the nervous system, gap junctions often function as electrical synapses, providing a means for coordinating activity among electrically coupled neurons. While some gap junctions allow the bidirectional flow of small molecules/ions between coupled cells, others permit flow in one direction only or preferentially. The complement of innexins present in a gap junction determines its specific properties. Thus, understanding innexin diversity is key for understanding the full potential of electrical coupling in a species/system. The decapod crustacean cardiac ganglion (CG), which controls cardiac muscle contractions, is a simple pattern-generating neural network with extensive electrical coupling among its circuit elements. In the lobster, Homarus americanus, prior work suggested that the adult neuronal innexin complement consists of six innexins (Homam-Inx1-4 and Homam-Inx6-7). Here, using a H. americanus CG-specific transcriptome, we explored innexin complement in this portion of the lobster nervous system. With the exception of Homam-Inx4, all of the previously described innexins appear to be expressed in the H. americanus CG. In addition, transcripts encoding seven novel putative innexins (Homam-Inx8-14) were identified, four (Homam-Inx8-11) having multiple splice variants, e.g., six for Homam-Inx8. Collectively, these data indicate that the innexin complement of the lobster nervous system in general, and the CG specifically, is likely significantly greater than previously reported, suggesting the possibility of expanded gap junction diversity and function in H. americanus.

摘要

缝隙连接是连接相邻细胞的物理通道,允许小分子/离子在偶联单元的细胞质之间流动。连接蛋白/连接蛋白样蛋白负责形成无脊椎动物缝隙连接。在神经系统中,缝隙连接通常作为电突触发挥作用,为电偶联神经元之间的活动协调提供一种手段。虽然一些缝隙连接允许小分子/离子在偶联细胞之间双向流动,但其他缝隙连接只允许单向或优先单向流动。存在于缝隙连接中的连接蛋白的组合决定了其特定的性质。因此,了解连接蛋白的多样性是理解物种/系统中电偶联的全部潜力的关键。控制心肌收缩的十足目甲壳动物心脏神经节(CG)是一个具有广泛电偶联的简单模式生成神经网络,其电路元件之间具有广泛的电偶联。在龙虾 Homarus americanus 中,先前的工作表明,成年神经元连接蛋白的组成包括六个连接蛋白(Homam-Inx1-4 和 Homam-Inx6-7)。在这里,我们使用 Homarus americanus CG 特异性转录组,探索了龙虾神经系统中这部分的连接蛋白组成。除了 Homam-Inx4 之外,所有先前描述的连接蛋白似乎都在 H. americanus CG 中表达。此外,还鉴定了七个新的推定连接蛋白(Homam-Inx8-14)的转录本,其中四个(Homam-Inx8-11)具有多个剪接变体,例如 Homam-Inx8 有六个。总的来说,这些数据表明,龙虾神经系统的连接蛋白组成,特别是 CG,可能明显大于先前报道的,表明 H. americanus 中可能存在扩展的缝隙连接多样性和功能。

相似文献

5
Innexin expression in electrically coupled motor circuits.电耦合运动回路中的Innexin表达
Neurosci Lett. 2019 Mar 16;695:19-24. doi: 10.1016/j.neulet.2017.07.016. Epub 2017 Jul 13.

本文引用的文献

3
Electrical coupling and its channels.电耦合及其通道。
J Gen Physiol. 2018 Dec 3;150(12):1606-1639. doi: 10.1085/jgp.201812203. Epub 2018 Nov 2.
4
FlyBase 2.0: the next generation.FlyBase 2.0:下一代。
Nucleic Acids Res. 2019 Jan 8;47(D1):D759-D765. doi: 10.1093/nar/gky1003.
10
20 years of the SMART protein domain annotation resource.SMART 蛋白质结构域注释资源 20 年。
Nucleic Acids Res. 2018 Jan 4;46(D1):D493-D496. doi: 10.1093/nar/gkx922.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验