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Incomplete Chromatin Condensation in Enlarged Rat Myelocytic Leukemia Cells

机译:大鼠骨髓白血病细胞中染色质的不完全浓缩

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The distinguishable morphologic features of nuclei of acute myelogenous leukemia cells with enlarged size and finely distributed nuclear chromatin indicate incomplete chromosome condensation that can be related to elevated gene expression. To confirm this, interphase chromosome structures were studied in exponentially growing rat myelomonocytic leukemia 1 cells isolated at the University of Debrecen (My1/De cells). This cell line was established from primary rat leukemia chemically induced by 7,12-dimethylbenz[a]anthracene treatment. The enlarged nuclei of My1/De cells allowed improved fluorescent visualization of chromosomal structures. Increased resolution revealed major interphase intermediates consisting of (1) veil-like chromatin, (2) chromatin ribbon, (3) chromatin funnel, (4) chromatin bodies, (5) elongated prechromosomes, (6) seal-ring, spiral shaped, and circular chromosomal subunits, (7) elongated, bent, u- and v-shaped prechromosomes, and (8) metaphase chromosomes. Results confirmed the existence of the chromatin funnel, the first visible interphase chromosome generated by the supercoiling of the chromatin ribbon. Other intermediates not seen previously included the spiral subunits that are involved in the chromonemic folding of metaphase chromosomes. The existence of spiral subunits favors the helical coil model of chromosome condensation. Incomplete chromatin condensation in leukemia cells throughout the cell cycle is an indication of euchromatization contributing to enhanced gene expression and is regarded as a leukemic factor.
机译:急性骨髓性白血病细胞具有明显的核形态学特征,具有增大的大小和精细分布的核染色质,表明染色体凝缩不完全,这可能与基因表达升高有关。为了证实这一点,在德布勒森大学分离的成倍增长的大鼠骨髓单核细胞白血病细胞1(My1 / De cells)中研究了相间染色体结构。该细胞系是由通过7,12-二甲基苯并[a]蒽处理化学诱导的原发性大鼠白血病建立的。 My1 / De细胞核的扩大使染色体结构的荧光可视化得以改善。分离度提高显示出主要的相间中间体,包括(1)面纱状染色质,(2)染色质色带,(3)染色质漏斗,(4)染色质体,(5)细长的前染色体,(6)密封环,螺旋形,环状染色体亚基;(7)细长,弯曲,u和v形的前染色体,以及(8)中期染色体。结果证实了染色质漏斗的存在,染色质漏斗是由染色质色带的超螺旋产生的第一个可见的相间染色体。以前未见的其他中间体包括参与中期染色体色谱折叠的螺旋亚基。螺旋亚基的存在有利于染色体凝聚的螺旋线圈模型。在整个细胞周期中,白血病细胞中染色质的不完全凝缩是常染色体染色的迹象,有助于基因表达增强,并被认为是白血病因素。

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