[毛斑动物(Placozoa)的压电蛋白和蛋白-蛋白相互作用网络的空间模型]。

A V Kuznetsov, I Yu Grishin, D N Vtyurina
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引用次数: 0

摘要

海洋自由生物Trichoplax(Placozoa门)在形状和运动类型上类似于单细胞变形虫。Trichoplax起源于新元古代的主要进化树。Trichoplax提供了多细胞动物最简单的模型之一,也是生物体细胞在发育和运动过程中如何相互作用形成群落的有力例子。在NCBI数据库中搜索相似序列的结果是,在两个Trichoplax单倍型H1和H2中发现了小鼠Piezo1蛋白(6B3R)的两个直向同源物。通过与6KG7(小鼠Piezo2)模板的结构比对,创建了各自蛋白质XP_002112008.1和RDD46920.1的空间模型。分析了它们的结构域结构,并为假设的机械传感器XP_002112008.1构建了蛋白质-蛋白质相互作用的有限图。显示了从机械感受器到膜复合体、细胞质和细胞核的信号转导的可能性。Trichoplax机械感受器被认为在感知来自邻近细胞和环境的力刺激中发挥作用。基于这些结果,原始毛霉菌被认为是最简单的机械和形态发生运动的多细胞模型。
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[Spatial Models of Piezo Proteins and Protein-Protein Interaction Networks in Trichoplax Animals (Placozoa)].

The marine free-living organism Trichoplax (phylum Placozoa) resembles a unicellular amoeba in shape and type of movement. Trichoplax diverged from the main evolutionary tree in the Neoproterozoic Era. Trichoplax provides one of the simplest models of multicellular animals and a strong example of how cells of an organism interact to form an ensemble during its development and movement. Two orthologs of the mouse Piezo1 protein (6B3R) were found in two Trichoplax haplotypes, H1 and H2, as a result of a search for similar sequences in the NCBI databases. Spatial models of the respective proteins XP_002112008.1 and RDD46920.1 were created via a structural alignment with 6KG7 (mouse Piezo2) template. Their domain structures were analyzed, and a limited graph of protein-protein interactions was constructed for the hypothetical mechanosensor XP_002112008.1. The possibility of signal transduction from the mechanoreceptor to membrane complexes, the cytoplasm, and the cell nucleus was shown. Trichoplax mechanoreceptors were assumed to play a role in perception of force stimuli from neighbor cells and the environment. Based on the results, the primitive Trichoplax organism was proposed as the simplest multicellular model of mechanical and morphogenetic movements.

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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
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