首页> 美国卫生研究院文献>Genetics >Molecular Cloning of a Gene (Cfp) Encoding the Cytoplasmic Filament Protein P59nc and Its Genetic Relationship to the Snowflake Locus of Neurospora Crassa
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Molecular Cloning of a Gene (Cfp) Encoding the Cytoplasmic Filament Protein P59nc and Its Genetic Relationship to the Snowflake Locus of Neurospora Crassa

机译:编码胞质丝蛋白P59nc的基因(Cfp)的分子克隆及其与神经孢子囊的雪花基因座的遗传关系

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摘要

P59Nc is a 59-kD polypeptide associated with 8-10-nm diameter cellular filaments in normal Neurospora crassa strains. Abnormally sized and shaped bundles of these structures are present in N. crassa strains carrying mutations at the locus sn (snowflake). By using molecular cloning and restriction fragment length polymorphism (RFLP) segregation analysis strategies we show here that sn is not the genetic locus of P59Nc. Several P59Nc cDNAs were cloned from a N. crassa λGT11 library after immunoscreening with specific polyclonal anti-P59Nc antibodies. Additional longer cDNAs were obtained from a N. crassa cDNA-λZAP library. When used as probes in Southern blots of total DNA from wild-type strains, multicent-2 (a multiple mutant strain), and snowflake mutants, the P59Nc cDNAs revealed comparable patterns of hybridizing bands for all of the restriction enzymes tested. Analysis of segregation of BclI and ClaI RFLPs, detected in the genomic region of the P59Nc gene (locus cfp: cellular filament polypeptide), among a set of strains designed for RFLP mapping, or among selected progeny of crosses involving a snowflake parent, respectively, indicate that (i) there is in N. crassa a single cfp locus positioned on the right arm of linkage group VII between the locus for and the proximal breakpoint of the translocation T(VII -> I)5936; (ii) the sn mutations in the centromere region of chromosome I do not represent translocations of cfp; and (iii) the snowflake mutants possesses a normal copy of the P59Nc gene on their chromosomes VII. Taken together the results indicate that the aberrant in vivo arrangement of the P59Nc 8-10-nm filaments occurring in snowflake mutants are not due to alterations in the P59Nc gene.
机译:P59Nc是与正常Neurospora crassa菌株中直径8-10-nm的细胞细丝相关的59-kD多肽。这些结构的异常大小和形状的束存在于携带基因座sn(雪花)的突变猪笼草菌株中。通过使用分子克隆和限制性片段长度多态性(RFLP)分离分析策略,我们在这里显示sn不是P59Nc的遗传位点。在用特异性多克隆抗P59Nc抗体进行免疫筛选后,从N. crassaλGT11文库中克隆了几个P59Nc cDNA。另外的更长的cDNA从N.crassacDNA-λZAP文库获得。当用作野生型菌株,multicent-2(多重突变菌株)和snowflakes突变体的总DNA Southern印迹的探针时,P59Nc cDNA揭示了所有测试的限制性​​内切酶杂交带的可比模式。在P59Nc基因的基因组区域(基因座cfp:细胞细丝多肽)中检测到的BclI和ClaI RFLP的分离分析,这些菌株设计用于RFLP定位的一组菌株之间,或在涉及雪花亲本的选定杂交后代中,表明(i)景天猪笼草中有一个单一的cfp基因座位于第VII位连锁群的位点和易位T(VII-> I)5936的近端断点之间; (ii)I号染色体着丝粒区域的sn突变不代表cfp易位; (iii)雪花突变体在其VII号染色体上具有P59Nc基因的正常拷贝。综上所述,结果表明雪花突变体中发生的P59Nc 8-10-nm细丝的异常体内排列不是由于P59Nc基因的改变引起的。

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