Jung M K, May G S, Oakley B R
Department of Molecular Genetics, The Ohio State University, 484 West 12th Avenue, Columbus, Ohio, 43210, USA.
Fungal Genet Biol. 1998 Jun-Jul;24(1-2):146-60. doi: 10.1006/fgbi.1998.1057.
We review and illustrate the wild-type mitotic cycle of Aspergillus nidulans and report the sequence alterations in six mutant alleles of the A. nidulans benA, beta-tubulin, gene. These alleles confer heat sensitivity and resistance to the antifungal, antimicrotubule compound benomyl, and they have been very important in the study of mitosis and microtubule function in A. nidulans. The mutations are novel and fall at amino acids 50, 134, and 257. We have examined the phenotypes conferred by the mutations at restrictive temperatures. None blocks the assembly of microtubules. One allele, benA33, blocks anaphase A and partially inhibits the disassembly of cytoplasmic microtubules in mitosis. We also often observe abnormal spindle morphologies in strains carrying benA33. Another allele, benA31, causes arrest in mitosis with short mitotic spindles and, thus, appears to inhibit spindle elongation.
我们回顾并阐述了构巢曲霉的野生型有丝分裂周期,并报告了构巢曲霉benA(β-微管蛋白)基因六个突变等位基因中的序列改变。这些等位基因赋予了对热的敏感性以及对抗真菌、抗微管化合物苯菌灵的抗性,并且它们在构巢曲霉有丝分裂和微管功能的研究中非常重要。这些突变是新发现的,位于第50、134和257位氨基酸处。我们已经在限制温度下研究了这些突变所赋予的表型。没有一个突变会阻断微管的组装。一个等位基因benA33会阻断后期A,并在有丝分裂过程中部分抑制细胞质微管的解聚。我们还经常在携带benA33的菌株中观察到异常的纺锤体形态。另一个等位基因benA31会导致有丝分裂停滞,纺锤体较短,因此似乎抑制了纺锤体的伸长。