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鉴定在斑马鱼包被层和胚胎周皮中重现L-原肌球蛋白早期表达的调控元件。

Identification of regulatory elements recapitulating early expression of L-plastin in the zebrafish enveloping layer and embryonic periderm.

作者信息

Baumgartner Emily A, Compton Zachary J, Evans Spencer, Topczewski Jacek, LeClair Elizabeth E

机构信息

Department of Biological Sciences, DePaul University, USA.

Stanley Manne Children's Research Institute, Ann & Robert H. Lurie Children's Hospital of Chicago, USA.

出版信息

Gene Expr Patterns. 2019 Jun;32:53-66. doi: 10.1016/j.gep.2019.03.001. Epub 2019 Mar 30.

Abstract

We have cloned and characterized an intronic fragment of zebrafish lymphocyte cytosolic protein 1 (lcp1, also called L-plastin) that drives expression to the zebrafish enveloping layer (EVL). L-plastin is a calcium-dependent actin-bundling protein belonging to the plastin/fimbrin family of proteins, and is necessary for the proper migration and attachment of several adult cell types, including leukocytes and osteoclasts. However, in zebrafish lcp1 is abundantly expressed much earlier, during differentiation of the EVL. The cells of this epithelial layer migrate collectively, spreading vegetally over the yolk. L-plastin expression persists into the larval periderm, a transient epithelial tissue that forms the first larval skin. This finding establishes that L-plastin is activated in two different embryonic waves, with a distinct regulatory switch between the early EVL and the later leukocyte. To better study L-plastin expressing cells we attempted CRISPR/Cas9 homology-driven recombination (HDR) to insert a self-cleaving peptide (Cre-P2A-EGFP-CAAX) downstream of the native lcp1 promoter. This produced a stable zebrafish line expressing Cre recombinase in EVL nuclei and green fluorescence in EVL cell membranes. In vivo tracking of these labeled cells provided enhanced views of EVL migration behavior, membrane extensions, and mitotic events. Finally, we experimentally dissected key elements of the targeted lcp1 locus, discovering a ∼300 bp intronic sequence sufficient to drive EVL expression. The lcp1: Cre-P2A-EGFP-CAAX zebrafish should be useful for studying enveloping layer specification, gastrulation movements and periderm development in this widely used vertebrate model. In addition, the conserved regulatory sequences we have isolated predict that L-plastin orthologs may have a similar early expression pattern in other vertebrate embryos.

摘要

我们克隆并鉴定了斑马鱼淋巴细胞胞质蛋白1(lcp1,也称为L-肌动蛋白)的一个内含子片段,该片段可驱动斑马鱼包被层(EVL)的表达。L-肌动蛋白是一种钙依赖性肌动蛋白束集蛋白,属于肌动蛋白/丝束蛋白家族,是包括白细胞和破骨细胞在内的几种成年细胞类型正常迁移和附着所必需的。然而,在斑马鱼中,lcp1在EVL分化期间更早大量表达。这个上皮层的细胞集体迁移,向植物极方向在卵黄上扩散。L-肌动蛋白的表达持续到幼虫的周皮,这是一种形成幼虫第一层皮肤的短暂上皮组织。这一发现表明,L-肌动蛋白在两个不同的胚胎阶段被激活,在早期的EVL和后期的白细胞之间有一个明显的调控转换。为了更好地研究表达L-肌动蛋白的细胞,我们尝试通过CRISPR/Cas9同源驱动重组(HDR)在天然lcp1启动子下游插入一个自切割肽(Cre-P2A-EGFP-CAAX)。这产生了一个稳定的斑马鱼品系,在EVL细胞核中表达Cre重组酶,在EVL细胞膜中表达绿色荧光。对这些标记细胞的体内追踪提供了对EVL迁移行为、膜延伸和有丝分裂事件的增强观察。最后,我们通过实验剖析了靶向lcp1位点的关键元件,发现了一个约300bp的内含子序列足以驱动EVL表达。lcp1:Cre-P2A-EGFP-CAAX斑马鱼应该有助于研究这个广泛使用的脊椎动物模型中的包被层特化、原肠胚形成运动和周皮发育。此外,我们分离出的保守调控序列预测,L-肌动蛋白直系同源物在其他脊椎动物胚胎中可能有类似的早期表达模式。

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