首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >GENETIC INTERACTIONS AMONG CYTOPLASMIC DYNEIN, DYNACTIN, AND NUCLEAR DISTRIBUTION MUTANTS OF NEUROSPORA CRASSA
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GENETIC INTERACTIONS AMONG CYTOPLASMIC DYNEIN, DYNACTIN, AND NUCLEAR DISTRIBUTION MUTANTS OF NEUROSPORA CRASSA

机译:核神经元胞浆动力蛋白,动力蛋白和核分布突变之间的遗传相互作用

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Cytoplasmic dynein is a multisubunit, microtubule-associated, mechanochemical enzyme that has been identified as a retrograde transporter of various membranous organelles. Dynactin, an additional multisubunit complex, is required for efficient dynein-mediated transport of vesicles in vitro. Recently, we showed that three genes defined by a group of phenotypically identical mutants of the filamentous fungus Neurospora crassa encode proteins that are apparent subunits of either cytoplasmic dynein or dynactin. These mutants, designated ropy (ro), display abnormal hyphal growth and are defective in nuclear distribution. We propose that mutations in other genes encoding dynein/dynactin subunits are likely to result in a ropy phenotype and have devised a genetic screen for the isolation of additional ro mutants. Cytoplasmic dynein/dynactin is the largest and most complex of the cytoplasmic motor proteins, and the genetic system described here is unique in its potentiality for identifying mutations in undefined genes encoding dynein/dynactin subunits or regulators. We used this screen to isolate > 1000 ro mutants, which were found to define 23 complementation groups. Unexpectedly, interallelic complementation was observed with some allele pairs of ro-1 and ro-3, which are predicted to encode the largest subunits of cytoplasmic dynein and dynactin, respectively. The results suggest that the Ro1 and Ro3 polypeptides may consist of multiple, functionally independent domains. In addition, approximate to 10% of all newly isolated ro mutants display unlinked noncomplementation with two or more of the mutants that define the 23 complementation groups. The frequent appearance of ro mutants showing noncomplementation with multiple ro mutants having unlinked mutations suggests that nuclear distribution in filamentous fungi is a process that is easily disrupted by affecting either dosage or activity of cytoplasmic dynein, dynactin, and perhaps other cytoskeletal proteins or regulators. [References: 25]
机译:细胞质动力蛋白是一种多亚基,与微管相关的机械化学酶,已被鉴定为各种膜细胞器的逆行转运蛋白。动力蛋白是另外的多亚基复合物,是动力蛋白在体外有效介导的囊泡转运所必需的。最近,我们发现由一组表型相同的丝状真菌Neurospora crassa突变体定义的三个基因编码的蛋白质是细胞质动力蛋白或动力蛋白的明显亚基。这些突变体称为ropy(ro),表现出异常的菌丝生长,并且在核分布方面存在缺陷。我们建议编码动力蛋白/动力蛋白亚基的其他基因中的突变可能会导致ropy表型,并已设计出用于筛选其他ro突变体的基因筛选。细胞质动力蛋白/动力蛋白是胞质运动蛋白中最大,最复杂的,此处描述的遗传系统在识别动力蛋白/动力蛋白亚基或调节子的不确定基因突变中具有独特的潜力。我们使用该筛选来分离> 1000个ro突变体,发现它们定义了23个互补基团。出乎意料的是,观察到ro-1和ro-3的一些等位基因对的等位基因互补,它们分别编码胞质动力蛋白和动力蛋白的最大亚基。结果表明Ro1和Ro3多肽可能由多个功能独立的域组成。此外,大约有10%的新分离出的ro突变体与定义23个互补基团的两个或多个突变体表现出非连锁的非互补性。 ro突变体的频繁出现显示出与具有未连锁突变的多个ro突变体不互补,这表明丝状真菌中的核分布是一个容易受到影响的过程,因为它会影响细胞质动力蛋白,动力蛋白,也许还有其他细胞骨架蛋白或调节剂的剂量或活性。 [参考:25]

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