Regan C L, Fuller M T
Department of Molecular, Cellular and Developmental Biology, University of Colorado at Boulder 80309.
Genes Dev. 1988 Jan;2(1):82-92. doi: 10.1101/gad.2.1.82.
A mutation that fails to complement certain alleles of the testis-specific beta 2-tubulin gene (B2t) of Drosophila melanogaster maps to a separate locus, haywire, located at 3-34.4 map units in polytene region 67E3-F3. Second-site non-complementing mutations such as haync2 and B2t alleles could identify genes that encode products that participate in the same functions or that interact in the same structure. Consistent with a structural interaction between the hay gene product and beta 2-tubulin, the genetic interaction between haync2 and B2t requires the presence of the mutant hay gene product; a deficiency for the hay region complements the same alleles of B2t that haync2 fails to complement. haync2 is a recessive male sterile mutation in a genetic background that is wild type at the B2t locus. Homozygous males have defects in meiosis, flagellar elongation and nuclear shaping, the three major microtubule-based processes in which the testis-specific beta 2-tubulin participates. The haync2 allele also has effects outside of spermatogenesis. It is a temperature-sensitive semilethal mutation, and homozygous haync2 females have reduced fertility. These phenotypes are consistent with a role for the haywire gene product in general microtubule function. Analysis of second-site non-complementing mutations such as haync2 offers a genetic tool for analysis of interacting proteins in complex assemblies.
一个不能与果蝇睾丸特异性β2-微管蛋白基因(B2t)的某些等位基因互补的突变定位于一个独立的基因座,即位于多线区67E3 - F3中3 - 34.4图距单位处的haywire基因座。诸如haync2和B2t等位基因这样的第二位点非互补突变可以鉴定出编码参与相同功能或在相同结构中相互作用的产物的基因。与hay基因产物和β2-微管蛋白之间的结构相互作用一致,haync2和B2t之间的遗传相互作用需要突变的hay基因产物的存在;hay区域的缺失可以互补haync2不能互补的相同B2t等位基因。haync2是在B2t基因座为野生型的遗传背景中的一个隐性雄性不育突变。纯合雄性在减数分裂、鞭毛伸长和细胞核塑形方面存在缺陷,这是睾丸特异性β2-微管蛋白参与的三个主要的基于微管的过程。haync2等位基因在精子发生之外也有影响。它是一个温度敏感的半致死突变,纯合的haync2雌性生育力降低。这些表型与haywire基因产物在一般微管功能中的作用一致。对诸如haync2这样的第二位点非互补突变的分析为分析复杂装配体中相互作用的蛋白质提供了一种遗传工具。