直接观察细胞类型特异性microRNA表达特征的进化支持内皮细胞造血起源模型

IF 2.6 3区 生物学 Q2 DEVELOPMENTAL BIOLOGY Evolution & Development Pub Date : 2023-05-08 DOI:10.1111/ede.12438
Ana E. Jenike, Katharine M. Jenike, Kevin J. Peterson, Bastian Fromm, Marc K. Halushka
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引用次数: 1

摘要

特化细胞类型的进化是生物学家长期感兴趣的问题,但由于时间尺度太长,很难重建或观察。microRNAs与细胞复杂性的进化有关,并可能为专业化提供信息。内皮是一种脊椎动物特有的循环系统的特化,它使血管调节达到了一个关键的新水平。这些内皮细胞的进化起源尚不清楚。我们假设内皮细胞特异性microRNA Mir-126可能提供信息。我们在此重建Mir-126的进化史。Mir-126可能出现在脊椎动物和被囊动物的最后一个共同祖先中,这是一个没有内皮的物种,在进化的更古老的EGF样结构域多位点(Egfl)的内含子中。由于宿主基因和microRNA的重复和丢失,Mir-126具有复杂的进化史。利用microRNA在嗅觉因子中较强的进化保守性,利用RNA原位杂交技术,我们将Mir-126定位在被囊植物琼脂(Ciona robusta)中。我们发现成熟的Mir-126在颗粒状变形虫细胞中独家表达,这支持了一个长期提出的观点,即内皮细胞起源于造血细胞,一种在无脊椎动物中发现的原内皮变形虫细胞。这一观察到的Mir-126从被囊动物的原内皮变形虫细胞到脊椎动物内皮细胞的表达变化是第一次直接观察到一种细胞类型的进化与microRNA表达的关系,表明microRNA可能是细胞类型进化的先决条件。
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Direct observation of the evolution of cell-type-specific microRNA expression signatures supports the hematopoietic origin model of endothelial cells

The evolution of specialized cell-types is a long-standing interest of biologists, but given the deep time-scales very difficult to reconstruct or observe. microRNAs have been linked to the evolution of cellular complexity and may inform on specialization. The endothelium is a vertebrate-specific specialization of the circulatory system that enabled a critical new level of vasoregulation. The evolutionary origin of these endothelial cells is unclear. We hypothesized that Mir-126, an endothelial cell-specific microRNA may be informative. We here reconstruct the evolutionary history of Mir-126. Mir-126 likely appeared in the last common ancestor of vertebrates and tunicates, which was a species without an endothelium, within an intron of the evolutionary much older EGF Like Domain Multiple (Egfl) locus. Mir-126 has a complex evolutionary history due to duplications and losses of both the host gene and the microRNA. Taking advantage of the strong evolutionary conservation of the microRNA among Olfactores, and using RNA in situ hybridization, we localized Mir-126 in the tunicate Ciona robusta. We found exclusive expression of the mature Mir-126 in granular amebocytes, supporting a long-proposed scenario that endothelial cells arose from hemoblasts, a type of proto-endothelial amoebocyte found throughout invertebrates. This observed change of expression of Mir-126 from proto-endothelial amoebocytes in the tunicate to endothelial cells in vertebrates is the first direct observation of the evolution of a cell-type in relation to microRNA expression indicating that microRNAs can be a prerequisite of cell-type evolution.

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来源期刊
Evolution & Development
Evolution & Development 生物-发育生物学
CiteScore
6.30
自引率
3.40%
发文量
26
审稿时长
>12 weeks
期刊介绍: Evolution & Development serves as a voice for the rapidly growing research community at the interface of evolutionary and developmental biology. The exciting re-integration of these two fields, after almost a century''s separation, holds much promise as the focus of a broader synthesis of biological thought. Evolution & Development publishes works that address the evolution/development interface from a diversity of angles. The journal welcomes papers from paleontologists, population biologists, developmental biologists, and molecular biologists, but also encourages submissions from professionals in other fields where relevant research is being carried out, from mathematics to the history and philosophy of science.
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Issue information A new motile animal with implications for the evolution of axial polarity from the Ediacaran of South Australia. Complex ontogeny of sexual size dimorphism in a female-larger gecko: Implications of determinate growth for lizard body size and life-history evolution Front cover Issue information
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