Tenzen T, Yamagata T, Fukagawa T, Sugaya K, Ando A, Inoko H, Gojobori T, Fujiyama A, Okumura K, Ikemura T
Department of Evolutionary Genetics, National Institute of Genetics, and The Graduate University for Advanced Studies, Shizuoka-ken, Japan.
Mol Cell Biol. 1997 Jul;17(7):4043-50. doi: 10.1128/MCB.17.7.4043.
The human genome is composed of long-range G+C% (GC%) mosaic structures thought to be related to chromosome bands. We previously reported a boundary of megabase-sized GC% mosaic domains at the junction area between major histocompatibility complex (MHC) classes II and III, proposing it as a possible chromosome band boundary. DNA replication timing during the S phase is known to be correlated cytogenetically with chromosome band zones, and thus the band boundaries have been predicted to contain a switch point for DNA replication timing. In this study, to identify to the nucleotide sequence level the replication switch point during the S phase, we determined the precise DNA replication timing for MHC classes II and III, focusing on the junction area. To do this, we used PCR-based quantitation of nascent DNA obtained from synchronized human myeloid leukemia HL60 cells. The replication timing changed precisely in the boundary region with a 2-h difference between the two sides, supporting the prediction that this region may be a chromosome band boundary. We supposed that replication fork movement terminates (pauses) or significantly slows in the switch region, which contains dense Alu clusters; polypurine/polypyrimidine tracts; di-, tri-, or tetranucleotide repeats; and medium-reiteration-frequency sequences. Because the nascent DNA in the switch region was recovered at low efficiency, we investigated whether this region is associated with the nuclear scaffold and found three scaffold-associated regions in and around the switch region.
人类基因组由与染色体带相关的长程鸟嘌呤 + 胞嘧啶含量百分比(GC%)镶嵌结构组成。我们之前报道过,在主要组织相容性复合体(MHC)II 类和 III 类之间的交界区域存在百万碱基大小的 GC% 镶嵌结构域边界,并提出它可能是染色体带边界。已知 S 期的 DNA 复制时间在细胞遗传学上与染色体带区域相关,因此预测带边界包含 DNA 复制时间的转换点。在本研究中,为了在核苷酸序列水平上鉴定 S 期的复制转换点,我们确定了 MHC II 类和 III 类的精确 DNA 复制时间,重点关注交界区域。为此,我们使用基于 PCR 的方法对从同步化的人类髓系白血病 HL60 细胞中获得的新生 DNA 进行定量。复制时间在边界区域精确变化,两侧相差 2 小时,这支持了该区域可能是染色体带边界的预测。我们推测复制叉运动在包含密集 Alu 簇、聚嘌呤 / 聚嘧啶序列、二核苷酸、三核苷酸或四核苷酸重复序列以及中等重复频率序列的转换区域终止(暂停)或显著减慢。由于转换区域的新生 DNA 回收效率较低,我们研究了该区域是否与核支架相关,并在转换区域及其周围发现了三个支架相关区域。