Key Laboratory of Cell Proliferation and Regulatory Biology, Ministry of Education, College of Life Sciences, Beijing Normal University, Beijing 100875, China.
Beijing Key Laboratory of Gene Resource and Molecular Development, College of Life Sciences, Beijing Normal University, Beijing 100875, China.
Cells. 2024 Nov 20;13(22):1923. doi: 10.3390/cells13221923.
Aneuploidy is highly detrimental to organisms due to genomic imbalance. However, the influence of parental unbalanced genome conditions on gene expression of their offspring remains unclear, particularly in animals. To further explore the molecular regulatory mechanisms, we firstly analyzed the expression patterns of aneuploid offspring from different parents with unbalanced genomes via reciprocal crosses and studied the potential functions of male-specific lethal 2 (MSL2) in this process. The results showed that the ectopic expression of MSL2 in aneuploidy resulted in gene expression patterns closer to those of diploidy, including MSL2 target genes, maternal genes, mitochondrial genes, and transposable elements. In addition, it was also found that , the key target gene of MSL2, played a crucial role in regulating endoplasmic reticulum (ER) Ca homeostasis through its interaction with the STIM1 protein. When it was overexpressed, ER Ca levels and the survival of aneuploid females were significantly increased. Furthermore, we observed upregulated ER Ca levels identified in aneuploid brains, which suggested that Ca homeostasis may be involved in the regulation mediated by MSL2 in aneuploid genomes.
非整倍体由于基因组失衡对生物体有很大的危害。然而,双亲非平衡基因组条件对其后代基因表达的影响尚不清楚,特别是在动物中。为了进一步探讨分子调控机制,我们首先通过正反交分析了来自不同双亲非平衡基因组的非整倍体后代的表达模式,并研究了雄性特异致死 2(MSL2)在这一过程中的潜在功能。结果表明,MSL2 在非整倍体中的异位表达导致基因表达模式更接近二倍体,包括 MSL2 靶基因、母系基因、线粒体基因和转座元件。此外,还发现 MSL2 的关键靶基因,通过与 STIM1 蛋白相互作用,在调节内质网(ER)Ca 稳态中起着关键作用。当它过表达时,ER Ca 水平和非整倍体雌性的存活率显著增加。此外,我们观察到非整倍体大脑中上调的 ER Ca 水平,这表明 Ca 稳态可能参与了 MSL2 在非整倍体基因组中介导的调节。