Burkholder G D
Chromosoma. 1981;83(4):473-80. doi: 10.1007/BF00328273.
Electron microscopy has been used to study the fine structural organization of R-banded chromosomes prepared by treatment of the chromosomes with a hot NaH2PO4 solution. The results indicate that there is a structural basis for R-banding with this technique. In comparison to untreated control chromosomes, the R-banded chromosomes had a greatly reduced electron density, suggesting that the heat treatment has a general adverse effect on chromosome structure. Chromatin fibers formed a coarse, irregular network throughout the chromosome and were often enlarged, probably as a result of the fusion of two or more native fibers. The chromatin fibers were more aggregated and had an increased electron density in the R-band regions of the chromosome than in the interbands. This indicates that the treatment has a differential effect on the structure of bands and interbands. A comparison of the ultrastructure of R- and G-banded chromosomes demonstrated that the distribution of aggregated chromatin was reversed by these two types of banding techniques; however, the treatments producing the R-banding appeared to induce less extreme differences in the degree of chromatin condensation in band and interband regions than those giving rise to G-banding. It is suggested that alterations of DNA-protein interactions may arise from the differential denaturation of proteins and/or DNA in R-band and interband regions during the heat pretreatment. Such differential alterations in DNA-protein interactions may induce localized changes in the organization of chromatin and may account for the subtle morphological differences observed between the band and interband regions.
电子显微镜已被用于研究用热的NaH2PO4溶液处理染色体后制备的R带染色体的精细结构组织。结果表明,这种技术的R带存在结构基础。与未处理的对照染色体相比,R带染色体的电子密度大大降低,这表明热处理对染色体结构有普遍的不利影响。染色质纤维在整个染色体中形成粗糙、不规则的网络,并且经常增大,这可能是由于两根或更多根天然纤维融合的结果。染色质纤维在染色体的R带区域比在带间区域更聚集且电子密度增加。这表明该处理对带和带间的结构有不同的影响。对R带和G带染色体超微结构的比较表明,这两种带型技术使聚集染色质的分布发生了逆转;然而,产生R带的处理似乎比产生G带的处理在带和带间区域的染色质凝聚程度上引起的极端差异更小。有人提出,在热预处理过程中,R带和带间区域蛋白质和/或DNA的差异变性可能导致DNA-蛋白质相互作用的改变。DNA-蛋白质相互作用的这种差异改变可能会引起染色质组织的局部变化,并可能解释在带和带间区域观察到的细微形态差异。