Campbell Patrick K, Waymire Katrina G, Heier Robb L, Sharer Catherine, Day Diane E, Reimann Heike, Jaje J Michael, Friedrich Glenn A, Burmeister Margit, Bartness Timothy J, Russell Lonnie D, Young Larry J, Zimmer Michael, Jenne Dieter E, MacGregor Grant R
Emory University School of Medicine, Atlanta, Georgia 30322, USA.
Genetics. 2002 Sep;162(1):307-20. doi: 10.1093/genetics/162.1.307.
ROSA22 male mice are sterile due to a recessive gene-trap mutation that affects development of the spermatid flagellum. The defect involves the flagellar axoneme, which becomes unstable around the time of its assembly. Despite a subsequent complete failure in flagellar assembly, development of the spermatid head appears normal and the spermatid head is released at the correct stage in spermatogenesis. The mutation is pleiotropic. Although ROSA22 homozygote males have normal levels of circulating testosterone and display normal mating behavior, they do not exhibit intermale aggressive behavior and have reduced body fat. The mutated gene (Gtrgeo22) maps to mouse chromosome 10 and is closely flanked by two known genes, Madcam1 and Cdc34. Ribonuclease protection analysis indicates that expression of the flanking genes is unaffected by the mutation. Gtrgeo22 is expressed at low levels in epithelial cells in several tissues, as well as in testis and brain. Analysis of the peptide coding sequence suggests that Gtrgeo22 encodes a novel transmembrane protein, which contains dileucine and tyrosine-based motifs involved in intracellular sorting of transmembrane proteins. Analysis of the Gtrgeo22 gene product should provide novel insight into the molecular basis for intermale aggression and sperm flagellar development.
ROSA22雄性小鼠因隐性基因捕获突变而不育,该突变影响精子鞭毛的发育。缺陷涉及鞭毛轴丝,轴丝在组装时变得不稳定。尽管随后鞭毛组装完全失败,但精子头部的发育看起来正常,且精子头部在精子发生的正确阶段释放。该突变具有多效性。虽然ROSA22纯合子雄性小鼠的循环睾酮水平正常且表现出正常的交配行为,但它们不表现出雄性间的攻击行为且体脂减少。突变基因(Gtrgeo22)定位于小鼠第10号染色体,且紧密位于两个已知基因Madcam1和Cdc34之间。核糖核酸酶保护分析表明侧翼基因的表达不受该突变影响。Gtrgeo22在几种组织的上皮细胞以及睾丸和大脑中低水平表达。对肽编码序列的分析表明,Gtrgeo22编码一种新型跨膜蛋白,该蛋白含有参与跨膜蛋白细胞内分选的双亮氨酸和基于酪氨酸的基序。对Gtrgeo22基因产物的分析应能为雄性间攻击行为和精子鞭毛发育的分子基础提供新的见解。