Fukuda Yasuhiro, Akematsu Takahiko, Bando Hironori, Kato Kentaro
Graduate School of Agricultural Science, Tohoku University, Osaki 989-6711, Miyagi, Japan.
Department of Biosciences, College of Humanities and Sciences, Nihon University, Tokyo 156-8550, Japan.
Microorganisms. 2022 Dec 7;10(12):2426. doi: 10.3390/microorganisms10122426.
During sexual reproduction/conjugation of the ciliate Tetrahymena thermophila, the germinal micronucleus undergoes meiosis resulting in four haploid micronuclei (hMICs). All hMICs undergo post-meiotic DNA double-strand break (PM-DSB) formation, cleaving their genome. DNA lesions are subsequently repaired in only one ‘selected’ hMIC, which eventually produces gametic pronuclei. DNA repair in the selected hMIC involves chromatin remodeling by switching from the heterochromatic to the euchromatic state of its genome. Here, we demonstrate that, among the 15 Tetrahymena Snf2 family proteins, a core of the ATP-dependent chromatin remodeling complex in Tetrahymena, the germline nucleus specific Iswi in Tetrahymena IswiGTt and Rad5Tt is crucial for the generation of gametic pronuclei. In either gene knockout, the selected hMIC which shows euchromatin markers such as lysine-acetylated histone H3 does not appear, but all hMICs in which markers for DNA lesions persist are degraded, indicating that both IswiGTt and Rad5Tt have important roles in repairing PM-DSB DNA lesions and remodeling chromatin for the euchromatic state in the selected hMIC.
在嗜热四膜虫进行有性生殖/接合的过程中,生殖微核经历减数分裂,产生四个单倍体微核(hMICs)。所有hMICs都会发生减数分裂后DNA双链断裂(PM-DSB)形成,切割其基因组。随后,DNA损伤仅在一个“选定”的hMIC中得到修复,该hMIC最终产生配子原核。选定hMIC中的DNA修复涉及染色质重塑,即从基因组的异染色质状态转变为常染色质状态。在此,我们证明,在15种四膜虫Snf2家族蛋白中,四膜虫ATP依赖染色质重塑复合体的核心成分,即四膜虫种系细胞核特异性Iswi(IswiGTt)和Rad5Tt,对于配子原核的产生至关重要。在任何一种基因敲除中,显示常染色质标记(如赖氨酸乙酰化组蛋白H3)的选定hMIC均未出现,但所有DNA损伤标记持续存在的hMIC都会被降解,这表明IswiGTt和Rad5Tt在修复PM-DSB DNA损伤以及为选定hMIC中的常染色质状态重塑染色质方面均发挥着重要作用。