Enhancer adoption by an LTR retrotransposon generates viral-like particles causing developmental limb phenotypes

Juliane Glaser, Giulia Cova, Beatrix Fauler, Cesar Prada-Medina, Virginie Stanislas, Mai H.Q. Phan, Robert Schopflin, Yasmin Aktas, Martin Franke, Guillaume Andrey, Christina Paliou, Verena Laupert, Wing-Lee Chan, Lars Wittler, Thorsten Mielke, Stefan Mundlos
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Abstract

Mammalian genomes are scattered with transposable elements (TEs). TEs are epigenetically silenced to prevent harmful effects caused by either global activation leading to genome instability or insertional mutation disturbing gene transcription. However, whether the activation of a single element can contribute to pathological phenotypes without directly affecting gene expression is largely unknown. Here, we show that tissue-specific expression of a TE in the embryo leads to the production of viral-like particles (VLPs) which can affect organ formation. Failure to silence an LTR retrotransposon inserted upstream of the Fgf8 gene results in its coexpression with Fgf8 in the developing embryo. While local gene regulation is unaffected, the LTR retrotransposon participates in chromatin folding at the locus and adopts the expression of the regulatory domain it is located in. This drives the production of VLPs in the Fgf8-expressing cells of the developing limb, triggering apoptotic cell death at the time of digit outgrowth and resulting in a limb malformation resembling human ectrodactyly. This phenotype can be rescued by knock-out or knock-in of the retrotransposon causing mutations preventing its full retroviral cycle. Insertion of the same element at other developmental loci faithfully recapitulates expression according to the neighboring regulatory activity. Our findings provide a mechanism by which TE insertion is incorporated into the local genomic regulatory landscape and show how VLP production in post-implantation embryos can interfere with organ formation.
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LTR逆转录质子通过增强子产生病毒样颗粒,导致肢体发育表型
哺乳动物基因组中散布着转座元件(TE)。转座元件在表观遗传学上被沉默,以防止因全局激活导致基因组不稳定或插入突变干扰基因转录而产生有害影响。然而,单个元素的激活是否会导致病理表型,而不直接影响基因表达,这在很大程度上还是未知数。在这里,我们展示了在胚胎中组织特异性表达 TE 会导致病毒样颗粒(VLPs)的产生,从而影响器官的形成。如果不能使插入 Fgf8 基因上游的 LTR 逆转录质子沉默,就会导致其在发育中的胚胎中与 Fgf8 基因共表达。虽然局部基因调控不受影响,但 LTR 反转座子会参与基因座的染色质折叠,并采用其所在调控域的表达方式。这促使发育中的肢体中表达 Fgf8 的细胞产生 VLPs,在手指长出时引发细胞凋亡,导致类似人类外八字的肢体畸形。这种表型可以通过基因敲除或基因敲入逆转录转座子而得到挽救,因为基因敲除或基因敲入会导致逆转录转座子不能完全循环。根据邻近的调控活动,在其他发育位点插入相同的元件可忠实地重现表达。我们的研究结果提供了一种机制,通过这种机制,TE 插入被纳入了本地基因组调控图谱,并显示了植入后胚胎中 VLP 的产生如何干扰器官的形成。
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