Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstrasse 3, 06466 Gatersleben, Germany.
Plant Mol Biol. 2011 Feb;75(3):253-61. doi: 10.1007/s11103-010-9723-3. Epub 2010 Dec 29.
The centromere is an essential chromosomal component assembling the kinetochore for chromosome attachment to the spindle microtubules and for directing the chromosome segregation during nuclear division. Kinetochore assembly requires deposition of the centromeric histone H3 variant (CENH3) into centromeric nucleosomes. CENH3 has a variable N-terminal and a more conserved C-terminal part, including the loop1 region of the histone fold domain, which is considered to be critical for centromere targeting. To investigate the structural requirements for centromere targeting, constructs for EYFP-tagged CENH3 of A. lyrata, A. arenosa, Capsella bursa-pastoris, Zea mays and Luzula nivea (the latter with holocentric chromosomes) were transformed into A. thaliana. Except for LnCENH3, all recombinant CENH3 proteins targeted A. thaliana centromeres, but the more distantly related the heterologous protein is, the lower is the efficiency of targeting. Alignment of CENH3 sequences revealed that the tested species share only three amino acids at loop1 region: threonine2, arginine12 and alanine15. These three amino acids were substituted by asparagine, proline and valine encoding sequences within a recombinant EYFP-AtCENH3 construct via PCR mutagenesis prior to transformation of A. thaliana. After transformation, immunostaining of root tip nuclei with anti-GFP antibodies yielded only diffuse signals, indicating that the original three amino acids are necessary but not sufficient for targeting A. thaliana centromeres.
着丝粒是染色体的一个重要组成部分,它组装着动粒,使染色体附着到纺锤体微管上,并在核分裂过程中指导染色体分离。动粒组装需要将着丝粒组蛋白 H3 变体 (CENH3) 沉积到着丝粒核小体中。CENH3 具有可变的 N 端和更保守的 C 端部分,包括组蛋白折叠结构域的 loop1 区域,该区域被认为对着丝粒靶向至关重要。为了研究着丝粒靶向的结构要求,构建了 A. lyrata、A. arenosa、Capsella bursa-pastoris、Zea mays 和 Luzula nivea(后者具有全染色体)的 EYFP 标记 CENH3 构建体,并转化到拟南芥中。除了 LnCENH3 之外,所有重组的 CENH3 蛋白都靶向拟南芥着丝粒,但异源蛋白的亲缘关系越远,靶向的效率越低。CENH3 序列的比对表明,测试的物种在 loop1 区域仅共享三个氨基酸:苏氨酸 2、精氨酸 12 和丙氨酸 15。这三个氨基酸通过 PCR 诱变被替换为天冬酰胺、脯氨酸和缬氨酸编码序列,然后在转化拟南芥之前构建在 EYFP-AtCENH3 重组体中。转化后,用抗 GFP 抗体对根尖核进行免疫染色只产生弥散信号,表明原始的三个氨基酸是靶向拟南芥着丝粒所必需的,但不是充分的。