首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >GTPase Ran strongly accumulates at the kinetochores of somatic chromosomes in the spermatogonial mitoses of Acricotopus lucidus (Diptera, Chironomidae)
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GTPase Ran strongly accumulates at the kinetochores of somatic chromosomes in the spermatogonial mitoses of Acricotopus lucidus (Diptera, Chironomidae)

机译:GTPase Ran强烈积累在Acricotopus lucidus(Diptera,Chironomidae)的精原细胞有丝分裂的体细胞染色体的动植物中。

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摘要

Unequal chromosome segregation and spindle formation occurs in the last gonial mitosis in the germ line of the chironomid Acricotopus lucidus. During this differential mitosis, all germ line-limited chromosomes (=Ks) migrate undivided to only one pole of the cell, while the somatic chromosomes (=Ss) first remain in the metaphase plane, and with the arrival of the Ks at the pole, they then separate equally. The evolutionarily conserved GTPase Ran plays a crucial role in many cellular processes. This includes the regulation of microtubule nucleation and stabilisation at kinetochores and of spindle assembly during mitosis, which is promoted by a RanGTP concentration gradient that forms around the mitotic chromosomes (Kalab et al. in Science 295:2452-2456, 2002, Nature 440:697-701, 2006). In the present study, a strong accumulation of Ran was detected by immunofluorescence at the kinetochores of the Ss in normal gonial and differential gonial mitoses of males of A. lucidus. In contrast, no Ran accumulation was observed at the kinetochores of the Ss in the metaphases of brain ganglia mitoses or of aberrant spermatocytes or in metaphases I and II of spermatocyte meiotic divisions. Likewise, there was no accumulation at the kinetochores of Drosophila melanogaster mitotic chromosomes from larval brains. The specific accumulation of Ran at the kinetochores of the Ss in differential gonial mitoses of A. lucidus strongly suggests that Ran is involved in a mechanism acting in this exceptional mitosis, which retains the Ss at the metaphase plane and prevents a premature separation and unequal segregation of the Ss during monopolar migration of the Ks.
机译:不平等的染色体分离和纺锤体形成发生在手足纲Acricotopus lucidus的种系的最后一个有角的有丝分裂中。在这种差异性有丝分裂过程中,所有受生殖系限制的染色体(= Ks)均不分开地迁移至细胞的一个极点,而体细胞染色体(= Ss)首先保留在中期平面中,并且随着Ks到达极点,然后将它们平均分开。进化上保守的GTPase Ran在许多细胞过程中起着至关重要的作用。这包括在有丝分裂期间调节动植物的微管成核和稳定以及在有丝分裂期间纺锤体组装,这由有丝分裂染色体周围形成的RanGTP浓度梯度促进(Kalab等人,Science 295:2452-2456,2002,Nature 440: 697-701,2006)。在本研究中,通过免疫荧光检测到A. lucidus男性正常角和有角性有丝分裂中Ss的动植物体内Ran的强烈积累。相反,在脑神经节有丝分裂中期或精子细胞异常的中期,或在精子细胞减数分裂的中期I和II的Ss的动植物体中未观察到Ran积累。同样,在幼虫果蝇的果蝇的有丝分裂染色体的动植物中也没有积累。 Ran在A. lucidus的不同角向有丝分裂中Ss的动植物体中的特定积累强烈表明Ran参与了这种异常有丝分裂的作用机制,该机制将Ss保留在中期平面上并防止过早分离和不平等的分离Ks单极迁移过程中Ss的变化。

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