Tailup expression in Drosophila larval and adult cardiac valve cells

IF 2.4 4区 生物学 Q2 DEVELOPMENTAL BIOLOGY genesis Pub Date : 2022-12-22 DOI:10.1002/dvg.23506
Christian Meyer, Laetitia Bataillé, Maik Drechsler, Achim Paululat
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引用次数: 1

Abstract

In Drosophila larvae, the direction of blood flow within the heart tube, as well as the diastolic filling of the posterior heart chamber, is regulated by a single cardiac valve. This valve is sufficient to close the heart tube at the junction of the ventricle and the aorta and is formed by only two cells; both are integral parts of the heart tube. The valve cells regulate hemolymph flow by oscillating between a spherical and a flattened cell shape during heartbeats. At the spherical stage, the opposing valve cells close the heart lumen. The dynamic cell shape changes of valve cells are supported by a dense, criss-cross orientation of myofibrils and the presence of the valvosomal compartment, a large intracellular cavity. Both structures are essential for the valve cells' function. In a screen for factors specifically expressed in cardiac valve cells, we identified the transcription factor Tailup. Knockdown of tailup causes abnormal orientation and differentiation of cardiac muscle fibers in the larval aorta and inhibits the formation of the ventral longitudinal muscle layer located underneath the heart tube in the adult fly and affects myofibrillar orientation of valve cells. Furthermore, we have identified regulatory sequences of tup that control the expression of tailup in the larval and adult valve cells.

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果蝇幼虫和成虫心脏瓣膜细胞中Tailup的表达
在果蝇幼虫中,心脏管内的血流方向以及心脏后腔的舒张充盈都是由一个心脏瓣膜调节的。这个瓣膜足以关闭位于心室和主动脉交界处的心管,它仅由两个细胞组成;两者都是心管的组成部分。在心跳期间,瓣膜细胞通过在球形和扁平细胞形状之间摆动来调节血淋巴的流动。在球形阶段,相对的瓣膜细胞闭合心腔。瓣膜细胞的动态细胞形状变化是由致密的、纵横交错的肌原纤维和瓣膜体室(一个大的细胞内腔)的存在所支持的。这两种结构对于瓣膜细胞的功能都是必不可少的。在筛选心脏瓣膜细胞特异性表达的因子时,我们确定了转录因子Tailup。尾up的敲低导致幼虫主动脉内心肌纤维定向和分化异常,抑制成虫心管下方腹侧纵肌层的形成,影响瓣膜细胞的肌纤维定向。此外,我们已经确定了tup的调控序列,控制tailup在幼虫和成虫瓣膜细胞中的表达。
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来源期刊
genesis
genesis 生物-发育生物学
CiteScore
3.60
自引率
0.00%
发文量
40
审稿时长
6-12 weeks
期刊介绍: As of January 2000, Developmental Genetics was renamed and relaunched as genesis: The Journal of Genetics and Development, with a new scope and Editorial Board. The journal focuses on work that addresses the genetics of development and the fundamental mechanisms of embryological processes in animals and plants. With increased awareness of the interplay between genetics and evolutionary change, particularly during developmental processes, we encourage submission of manuscripts from all ecological niches. The expanded numbers of genomes for which sequencing is being completed will facilitate genetic and genomic examination of developmental issues, even if the model system does not fit the “classical genetic” mold. Therefore, we encourage submission of manuscripts from all species. Other areas of particular interest include: 1) the roles of epigenetics, microRNAs and environment on developmental processes; 2) genome-wide studies; 3) novel imaging techniques for the study of gene expression and cellular function; 4) comparative genetics and genomics and 5) animal models of human genetic and developmental disorders. genesis presents reviews, full research articles, short research letters, and state-of-the-art technology reports that promote an understanding of the function of genes and the roles they play in complex developmental processes.
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