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Predominant regulators of tubulin monomer-polymer partitioning and their implication for cell polarization

机译:微管蛋白单体-聚合物分配的主要调节剂及其对细胞极化的影响

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摘要

The microtubule-system organizes the cytoplasm during interphase and segregates condensed chromosomes during mitosis. Four unrelated conserved proteins, XMAP215/Dis1/TOGp, MCAK, MAP4 and Op18/stathmin, have all been implicated as predominant regulators of tubulin monomer-polymer partitioning in animal cells. However, while studies employing the Xenopus egg extract model system indicate that the partitioning is largely governed by the counteractive activities of XMAP215 and MCAK, studies of human cell lines indicate that MAP4 and Op18 are the predominant regulators of the interphase microtubule-array. Here, we review functional interplay of these proteins during interphase and mitosis in various cell model systems. We also review the evidence that MAP4 and Op18 have interphase-specific, counteractive and phosphorylation-inactivated activities that govern tubulin subunit partitioning in many mammalian cell types. Finally, we discuss evidence indicating that partitioning regulation by MAP4 and Op18 may be of significance to establish cell polarity.
机译:微管系统在相间组织细胞质并在有丝分裂期间分离浓缩的染色体。 XMAP215 / Dis1 / TOGp,MCAK,MAP4和Op18 / stathmin四个无关的保守蛋白都被认为是动物细胞中微管蛋白单体-聚合物分配的主要调节剂。然而,尽管采用非洲爪蟾卵提取物模型系统的研究表明,该分区主要受XMAP215和MCAK的反活性控制,但对人类细胞系的研究表明,MAP4和Op18是相间微管阵列的主要调节因子。在这里,我们审查了在各种细胞模型系统的相间和有丝分裂过程中这些蛋白质的功能相互作用。我们还审查了证据,证明MAP4和Op18具有控制许多哺乳动物细胞类型中微管蛋白亚基分配的相间特异性,反活性和磷酸化灭活的活性。最后,我们讨论了表明MAP4和Op18进行分区调节可能对建立细胞极性具有重要意义的证据。

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