Department of Molecular Bioscience, College of Biomedical Science, Kangwon National University, Chuncheon 24341, Republic of Korea; Institute of Life Sciences, Kangwon National University, Chuncheon 24341, Republic of Korea.
Department of Molecular Bioscience, College of Biomedical Science, Kangwon National University, Chuncheon 24341, Republic of Korea.
Biochim Biophys Acta Gene Regul Mech. 2024 Jun;1867(2):195009. doi: 10.1016/j.bbagrm.2024.195009. Epub 2024 Feb 6.
Swd2/Cps35 is a common component of the COMPASS H3K4 methyltransferase and CPF transcription termination complex in Saccharomyces cerevisiae. The deletion of SWD2 is lethal, which results from transcription termination defects in snoRNA genes. This study isolated a yeast strain that showed significantly reduced protein level of Swd2 following epitope tagging at its N-terminus (9MYC-SWD2). The reduced level of Swd2 in the 9MYC-SWD2 strain was insufficient for the stability of the Set1 H3K4 methyltransferase, H3K4me3 and snoRNA termination, but the level was enough for viability and growth similar to the wildtype strain. In addition, we presented the genes differentially regulated by the essential protein Swd2 under optimal culture conditions for the first time. The expression of genes known to be decreased in the absence of Set1 and H3K4me3, including NAD biosynthetic process genes and histone genes, was decreased in the 9MYC-SWD2 strain, as expected. However, the effects of Swd2 on the ribosome biogenesis (RiBi) genes were opposite to those of Set1, suggesting that the expression of RiBi genes is regulated by more complex relationship between COMPASS and other Swd2-containing complexes. These data suggest that different concentrations of Swd2 are required for its roles in H3K4me3 and viability and that it may be either contributory or contrary to the transcriptional regulation of Set1/H3K4me3, depending on the gene group.
Swd2/Cps35 是酿酒酵母 COMPASS H3K4 甲基转移酶和 CPF 转录终止复合物的常见组成部分。SWD2 的缺失是致命的,这是由于 snoRNA 基因的转录终止缺陷所致。本研究分离到一种酵母菌株,该菌株在其 N 端进行表位标记(9MYC-SWD2)后,Swd2 的蛋白水平显著降低。9MYC-SWD2 菌株中 Swd2 水平的降低不足以稳定 Set1 H3K4 甲基转移酶、H3K4me3 和 snoRNA 终止,但足以维持与野生型菌株相似的生存力和生长。此外,我们首次在最佳培养条件下,展示了必需蛋白 Swd2 调控的差异表达基因。已知在 Set1 和 H3K4me3 缺失的情况下表达下调的基因,包括 NAD 生物合成过程基因和组蛋白基因,在 9MYC-SWD2 菌株中表达下调,这是意料之中的。然而,Swd2 对核糖体生物发生(RiBi)基因的影响与 Set1 相反,这表明 RiBi 基因的表达受到 COMPASS 和其他含有 Swd2 的复合物之间更复杂关系的调控。这些数据表明,Swd2 发挥 H3K4me3 和生存能力作用所需的浓度不同,并且根据基因群,它可能对 Set1/H3K4me3 的转录调控既有贡献又有相反作用。