首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >BLAP18/RMI2, a novel OB-fold-containing protein, is an essential component of the Bloom helicase-double Holliday junction dissolvasome.
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BLAP18/RMI2, a novel OB-fold-containing protein, is an essential component of the Bloom helicase-double Holliday junction dissolvasome.

机译:BLAP18 / RMI2是一种新型的含OB折叠的蛋白质,是Bloom解旋酶-双Holliday连接溶酶体的重要组成部分。

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Bloom Syndrome is an autosomal recessive cancer-prone disorder caused by mutations in the BLM gene. BLM encodes a DNA helicase of the RECQ family, and associates with Topo IIIalpha and BLAP75/RMI1 (BLAP for BLM-associated polypeptide/RecQ-mediated genome instability) to form the BTB (BLM-Topo IIIalpha-BLAP75/RMI1) complex. This complex can resolve the double Holliday junction (dHJ), a DNA intermediate generated during homologous recombination, to yield noncrossover recombinants exclusively. This attribute of the BTB complex likely serves to prevent chromosomal aberrations and rearrangements. Here we report the isolation and characterization of a novel member of the BTB complex termed BLAP18/RMI2. BLAP18/RMI2 contains a putative OB-fold domain, and several lines of evidence suggest that it is essential for BTB complex function. First, the majority of BLAP18/RMI2 exists in complex with Topo IIIalpha and BLAP75/RMI1. Second, depletion of BLAP18/RMI2 results in the destabilization of the BTB complex. Third, BLAP18/RMI2-depleted cells show spontaneous chromosomal breaks and are sensitive to methyl methanesulfonate treatment. Fourth, BLAP18/RMI2 is required to target BLM to chromatin and for the assembly of BLM foci upon hydroxyurea treatment. Finally, BLAP18/RMI2 stimulates the dHJ resolution capability of the BTB complex. Together, these results establish BLAP18/RMI2 as an essential member of the BTB dHJ dissolvasome that is required for the maintenance of a stable genome.
机译:布鲁姆综合症是由BLM基因突变引起的常染色体隐性遗传性癌症。 BLM编码RECQ家族的DNA解旋酶,并与Topo IIIalpha和BLAP75 / RMI1(用于BLM相关多肽/ RecQ介导的基因组不稳定性的BLAP)结合形成BTB(BLM-Topo IIIalpha-BLAP75 / RMI1)复合物。该复合物可以解析双霍利迪连接(dHJ),即同源重组过程中产生的DNA中间体,仅产生非交叉重组体。 BTB复合物的这一属性可能有助于防止染色体畸变和重排。在这里,我们报告了称为BLAP18 / RMI2的BTB复合物新成员的分离和表征。 BLAP18 / RMI2包含一个推定的OB折叠结构域,几条证据表明它对BTB复杂功能至关重要。首先,大多数BLAP18 / RMI2与Topo IIIalpha和BLAP75 / RMI1形成复合物。其次,BLAP18 / RMI2的消耗导致BTB复合物的不稳定。第三,耗尽BLAP18 / RMI2的细胞显示出自发的染色体断裂,并且对甲磺酸甲酯处理敏感。第四,需要BLAP18 / RMI2将BLM靶向染色质,并在羟基脲处理后组装BLM灶。最后,BLAP18 / RMI2刺激了BTB复合体的dHJ解析能力。总之,这些结果将BLAP18 / RMI2确立为维持稳定基因组所必需的BTB dHJ溶解体的重要成员。

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