Tange Yoshie, Chikashige Yuji, Takahata Shinya, Kawakami Kei, Higashi Masato, Mori Chie, Kojidani Tomoko, Hirano Yasuhiro, Asakawa Haruhiko, Murakami Yota, Haraguchi Tokuko, Hiraoka Yasushi
Graduate School of Frontier Biosciences, Osaka University, 1-3 Yamadaoka, Suita, 565-0871, Japan.
Advanced ICT Research Institute Kobe, National Institute of Information and Communications Technology, 588-2 Iwaoka, Iwaoka-cho, Nishi-ku, Kobe, 651-2492, Japan.
Genes Cells. 2016 Aug;21(8):812-32. doi: 10.1111/gtc.12385. Epub 2016 Jun 23.
Inner nuclear membrane proteins interact with chromosomes in the nucleus and are important for chromosome activity. Lem2 and Man1 are conserved members of the LEM-domain nuclear membrane protein family. Mutations of LEM-domain proteins are associated with laminopathy, but their cellular functions remain unclear. Here, we report that Lem2 maintains genome stability in the fission yeast Schizosaccharomyces pombe. S. pombe cells disrupted for the lem2(+) gene (lem2∆) showed slow growth and increased rate of the minichromosome loss. These phenotypes were prominent in the rich culture medium, but not in the minimum medium. Centromeric heterochromatin formation was augmented upon transfer to the rich medium in wild-type cells. This augmentation of heterochromatin formation was impaired in lem2∆ cells. Notably, lem2∆ cells occasionally exhibited spontaneous duplication of genome sequences flanked by the long-terminal repeats of retrotransposons. The resulting duplication of the lnp1(+) gene, which encodes an endoplasmic reticulum membrane protein, suppressed lem2∆ phenotypes, whereas the lem2∆ lnp1∆ double mutant showed a severe growth defect. A combination of mutations in Lem2 and Bqt4, which encodes a nuclear membrane protein that anchors telomeres to the nuclear membrane, caused synthetic lethality. These genetic interactions imply that Lem2 cooperates with the nuclear membrane protein network to regulate genome stability.
内核膜蛋白在细胞核内与染色体相互作用,对染色体活性至关重要。Lem2和Man1是LEM结构域核膜蛋白家族的保守成员。LEM结构域蛋白的突变与核纤层病相关,但其细胞功能仍不清楚。在此,我们报道Lem2在裂殖酵母粟酒裂殖酵母中维持基因组稳定性。缺失lem2(+)基因(lem2∆)的粟酒裂殖酵母细胞生长缓慢,小染色体丢失率增加。这些表型在丰富培养基中很明显,但在基本培养基中不明显。野生型细胞转移到丰富培养基后着丝粒异染色质形成增加。lem2∆细胞中这种异染色质形成的增加受到损害。值得注意的是,lem2∆细胞偶尔会出现由逆转录转座子的长末端重复序列侧翼的基因组序列自发复制。由此产生的编码内质网膜蛋白的lnp1(+)基因的复制抑制了lem2∆表型,而lem2∆ lnp1∆双突变体表现出严重的生长缺陷。Lem2和Bqt4(一种将端粒锚定到核膜的核膜蛋白)的突变组合导致合成致死。这些遗传相互作用表明Lem2与核膜蛋白网络协同调节基因组稳定性。