Weith A
Chromosoma. 1985;91(3-4):287-96. doi: 10.1007/BF00328224.
The fine structure of constitutive heterochromatin and euchromatin was compared in electron microscope whole-mount preparations of Tenebrio molitor (Insecta, Coleoptera) spermatocyte nuclei. Tenebrio molitor pachytene chromosomes display extended segments of centromeric heterochromatin and thus are especially suitable for this purpose. When nuclei were incubated in solutions containing different concentrations of NaCl or of MgCl2, two levels of chromatin fine structures were observed in the euchromatic segments: nucleosome fibers (0.1 mM-20 mM NaCl) and supranucleosomal fibers with 28 nm in diameter (40 mM-100 mM NaCl, 0.2 mM-1.0 mM MgCl2). The fine structure in the heterochromatic segments was the same as that in the euchromatic segments in all NaCl concentrations and in MgCl2 concentrations up to 0.4 mM. In higher MgCl2 concentrations the heterochromatin remained more compact than the euchromatin and consisted of 37-nm-thick fibers in 0.6 mM MgCl2 and of 65-nm-thick fibers in 1.0 mM MgCl2. After the 37-nm and the 65-nm fibers had been dispersed in Mg2+-free solutions they could be recondensed by incubation in 0.6 mM and 1.0 mM MgCl2, respectively. It is concluded that a Mg2+-sensitive component of the heterochromatin is responsible for the folding of the nucleosome chain to heterochromatin-specific supranucleosomal structures.
在黄粉虫(昆虫纲,鞘翅目)精母细胞核的电子显微镜整装标本中,对组成型异染色质和常染色质的精细结构进行了比较。黄粉虫粗线期染色体显示出着丝粒异染色质的延伸片段,因此特别适合用于此目的。当细胞核在含有不同浓度NaCl或MgCl2的溶液中孵育时,在常染色质片段中观察到两种染色质精细结构水平:核小体纤维(0.1 mM - 20 mM NaCl)和直径为28 nm的超核小体纤维(40 mM - 100 mM NaCl,0.2 mM - 1.0 mM MgCl2)。在所有NaCl浓度以及高达0.4 mM的MgCl2浓度下,异染色质片段中的精细结构与常染色质片段中的相同。在较高的MgCl2浓度下,异染色质比常染色质保持更紧密,在0.6 mM MgCl2中由37 nm厚的纤维组成,在1.0 mM MgCl2中由65 nm厚的纤维组成。在37 nm和65 nm的纤维分散在无Mg2+的溶液中后,分别通过在0.6 mM和1.0 mM MgCl2中孵育可以使其重新凝聚。结论是,异染色质中对Mg2+敏感的成分负责核小体链折叠成异染色质特异性的超核小体结构。