首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The 8-kD Cytoplasmic Dynein Light Chain Is Required for Nuclear Migration and for Dynein Heavy Chain Localization in Aspergillus nidulans
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The 8-kD Cytoplasmic Dynein Light Chain Is Required for Nuclear Migration and for Dynein Heavy Chain Localization in Aspergillus nidulans

机译:nidulans中的核迁移和动力蛋白重链定位需要 8 kD细胞质动力蛋白轻链。

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摘要

The heavy chain of cytoplasmic dynein is required for nuclear migration in Aspergillus nidulans and other fungi. Here we report on a new gene required for nuclear migration, nudG, which encodes a homologue of the “8-kD” cytoplasmic dynein light chain (CDLC). We demonstrate that the temperature sensitive nudG8 mutation inhibits nuclear migration and growth at restrictive temperature. This mutation also inhibits asexual and sexual sporulation, decreases the intracellular concentration of the nudG CDLC protein and causes the cytoplasmic dynein heavy chain to be absent from the mycelial tip, where it is normally located in wild-type mycelia. Coimmunoprecipitation experiments with antibodies against the cytoplasmic dynein heavy chain (CDHC) and the nudG CDLC demonstrated that some fraction of the cytoplasmic dynein light chain is in a protein complex with the CDHC. Sucrose gradient sedimentation analysis, however, showed that not all of the NUDG protein is complexed with the heavy chain. A double mutant carrying a cytoplasmic dynein heavy chain deletion plus a temperature-sensitive nudG mutation grew no more slowly at restrictive temperature than a strain with only the CDHC deletion. This result demonstrates that the effect of the nudG mutation on nuclear migration and growth is mediated through an interaction with the CDHC rather than with some other molecule (e.g., myosin-V) with which the 8-kD CDLC might theoretically interact.
机译:构巢曲霉和其他真菌中的核迁移需要细胞质动力蛋白的重链。在这里,我们报道了核迁移所需的新基因nudG,其编码“ 8-kD”胞质动力蛋白轻链(CDLC)的同源物。我们证明温度敏感的nudG8突变抑制核迁移和限制温度下的增长。这种突变还抑制了无性和有性孢子形成,降低了nudG CDLC蛋白的细胞内浓度,并导致通常位于野生型菌丝体的菌丝体顶端缺少胞质动力蛋白重链。用针对细胞质动力蛋白重链(CDHC)和nudG CDLC的抗体进行的免疫共沉淀实验表明,细胞质动力蛋白轻链的某些部分与CDHC处于蛋白质复合物中。然而,蔗糖梯度沉降分析表明并非所有的NUDG蛋白都与重链复合。携带细胞质动力蛋白重链缺失加上温度敏感的nudG突变的双突变体在限制性温度下的生长不会比仅具有CDHC缺失的菌株慢。该结果表明,nudG突变对核迁移和生长的作用是通过与CDHC的相互作用而不是与8-kD CDLC理论上可能与之相互作用的其他分子(例如,肌球蛋白-V)的相互作用来介导的。

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