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三体胸蛋白是果蝇胚胎心脏管中心脏同源盒基因表达和前后模式形成的重要调节因子。

trithorax is an essential regulator of cardiac Hox gene expression and anterior-posterior patterning of the Drosophila embryonic heart tube.

作者信息

Farmer Adam J, Katariya Rajnandani, Islam Sumaiya, Rayhan Md Sayeed Abu, Inlow Mark H, Ahmad Shaad M, Schwab Kristopher R

机构信息

Department of Biology, Indiana State University, Terre Haute, IN 47809, USA.

The Rich and Robin Porter Cancer Research Center, Indiana State University, Terre Haute, IN 47809, USA.

出版信息

Biol Open. 2025 Apr 15;14(4). doi: 10.1242/bio.061919. Epub 2025 Apr 2.

Abstract

The precise regulation of transcription required for embryonic development is partially controlled by the actions of the Trithorax group (TrxG) and Polycomb group (PcG) proteins. The genes trithorax (trx), trithorax-related (trr), and SET domain containing 1 (Set1) encode COMPASS-like histone methyltransferases, a subgroup of TrxG proteins that impart H3K4 methylation modifications onto chromatin in order to activate and maintain transcription. In this study, we identify the role of these genes in the development of the embryonic heart of the fruit fly Drosophila melanogaster. trx, trr, and Set1 independently ensure proper cardiac cell divisions. Additionally, trx regulation of collinear Hox expression is necessary for the anterior-posterior cardiac patterning of the linear heart tube. trx inactivation in Drosophila results in a remarkable homeotic transformation of the posterior heart-proper segment into an aorta-like fate due to the loss of posterior abdominal A expression. Furthermore, cardiac expression of Antennapedia, Ultrabithorax, and Abdominal B is also deregulated in trx mutants. Together, these data suggest that the COMPASS-like histone methyltransferases are essential developmental regulators of cardiogenesis, being necessary for both cardiac cell divisions and heart patterning.

摘要

胚胎发育所需的转录精确调控部分受三胸复合物(TrxG)和多梳复合物(PcG)蛋白的作用控制。三胸基因(trx)、三胸相关基因(trr)和含SET结构域1基因(Set1)编码类COMPASS组蛋白甲基转移酶,这是TrxG蛋白的一个亚组,可将H3K4甲基化修饰作用于染色质,以激活和维持转录。在本研究中,我们确定了这些基因在果蝇胚胎心脏发育中的作用。trx、trr和Set1独立确保心脏细胞的正常分裂。此外,trx对共线性Hox表达的调控对于线性心脏管的前后心脏模式形成是必需的。果蝇中trx失活会导致后心脏正常节段显著同源异型转化为主动脉样命运,这是由于腹部A基因在后侧的表达缺失所致。此外,触角足、超双胸和腹部B基因在trx突变体中的心脏表达也失调。总之,这些数据表明,类COMPASS组蛋白甲基转移酶是心脏发生过程中必不可少的发育调节因子,对心脏细胞分裂和心脏模式形成均至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cbe/11993250/3af0201ff193/biolopen-14-061919-g1.jpg

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