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MRTF 规定了海绵动物中的肌肉样收缩模块。

MRTF specifies a muscle-like contractile module in Porifera.

机构信息

Department of Biological Sciences, University of Denver, Denver, USA.

Sars International Center for Marine Molecular Biology, Bergen, Norway.

出版信息

Nat Commun. 2022 Jul 15;13(1):4134. doi: 10.1038/s41467-022-31756-9.

Abstract

Muscle-based movement is a hallmark of animal biology, but the evolutionary origins of myocytes are unknown. Although believed to lack muscles, sponges (Porifera) are capable of coordinated whole-body contractions that purge debris from internal water canals. This behavior has been observed for decades, but their contractile tissues remain uncharacterized with respect to their ultrastructure, regulation, and development. We examine the sponge Ephydatia muelleri and find tissue-wide organization of a contractile module composed of actin, striated-muscle myosin II, and transgelin, and that contractions are regulated by the release of internal Ca stores upstream of the myosin-light-chain-kinase (MLCK) pathway. The development of this contractile module appears to involve myocardin-related transcription factor (MRTF) as part of an environmentally inducible transcriptional complex that also functions in muscle development, plasticity, and regeneration. As an actin-regulated force-sensor, MRTF-activity offers a mechanism for how the contractile tissues that line water canals can dynamically remodel in response to flow and can re-form normally from stem-cells in the absence of the intrinsic spatial cues typical of animal embryogenesis. We conclude that the contractile module of sponge tissues shares elements of homology with contractile tissues in other animals, including muscles, indicating descent from a common, multifunctional tissue in the animal stem-lineage.

摘要

肌肉运动是动物生物学的一个标志,但肌细胞的进化起源尚不清楚。尽管人们认为海绵(多孔动物门)缺乏肌肉,但它们能够协调全身收缩,从内部水道中清除碎片。这种行为已经观察了几十年,但它们的收缩组织在超微结构、调节和发育方面仍未被描述。我们研究了海绵 Ephydatia muelleri,发现了一种由肌动蛋白、横纹肌肌球蛋白 II 和转胶蛋白组成的收缩模块的组织广泛组织,并且收缩是由肌球蛋白轻链激酶(MLCK)途径上游的内部 Ca 库释放来调节的。这个收缩模块的发育似乎涉及到肌球蛋白相关转录因子(MRTF),作为环境诱导转录复合物的一部分,该复合物在肌肉发育、可塑性和再生中也有功能。作为一个肌动蛋白调节的力传感器,MRTF-活性提供了一种机制,说明为什么排列在水道中的收缩组织可以对流动做出动态重塑,并且可以在没有动物胚胎发生典型的内在空间线索的情况下,从干细胞中正常重新形成。我们得出结论,海绵组织的收缩模块与其他动物的收缩组织(包括肌肉)具有同源性,表明它是从动物谱系中的一个共同的、多功能组织中衍生而来的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/272c/9287330/25b21f156d24/41467_2022_31756_Fig1_HTML.jpg

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