Siera Scott G, Cline Thomas W
Department of Molecular and Cell Biology, Division of Genetics, Genomics and Development, University of California, Berkeley, California 94720-3204, USA.
Genetics. 2008 Dec;180(4):1963-81. doi: 10.1534/genetics.108.093898. Epub 2008 Oct 9.
We describe a surprising new regulatory relationship between two key genes of the Drosophila sex-determination gene hierarchy, Sex-lethal (Sxl) and transformer (tra). A positive autoregulatory feedback loop for Sxl was known to maintain somatic cell female identity by producing SXL-F protein to continually instruct the target gene transformer (tra) to make its feminizing product, TRA-F. We discovered the reciprocal regulatory effect by studying genetically sensitized females: TRA-F from either maternal or zygotic tra expression stimulates Sxl-positive autoregulation. We found female-specific tra mRNA in eggs as predicted by this tra maternal effect, but not predicted by the prevailing view that tra has no germline function. TRA-F stimulation of Sxl seems to be direct at some point, since Sxl harbors highly conserved predicted TRA-F binding sites. Nevertheless, TRA-F stimulation of Sxl autoregulation in the gonadal soma also appears to have a cell-nonautonomous aspect, unprecedented for somatic Sxl regulation. This tra-Sxl retrograde regulatory circuit has evolutionary implications. In some Diptera, tra occupies Sxl's position as the gene that epigenetically maintains female identity through direct positive feedback on pre-mRNA splicing. The tra-mediated Sxl feedback in Drosophila may be a vestige of regulatory redundancy that facilitated the evolutionary transition from tra to Sxl as the master sex switch.
我们描述了果蝇性别决定基因层级中两个关键基因——性别致死基因(Sex-lethal,Sxl)和变异性状基因(transformer,tra)之间一种令人惊讶的新调控关系。已知Sxl存在一个正向自调控反馈环,通过产生SXL-F蛋白来维持体细胞的雌性身份,该蛋白持续指导靶基因变异性状基因(tra)产生其雌性化产物TRA-F。我们通过研究基因敏感型雌性果蝇发现了这种相互调控作用:来自母本或合子tra表达的TRA-F刺激Sxl正向自调控。正如这种tra母本效应所预测的那样,我们在卵中发现了雌性特异性的tra mRNA,但这与tra没有生殖系功能的主流观点相悖。TRA-F对Sxl的刺激在某些方面似乎是直接的,因为Sxl含有高度保守的预测TRA-F结合位点。然而,TRA-F对性腺体细胞中Sxl自调控的刺激似乎也具有细胞非自主性的一面,这在体细胞Sxl调控中是前所未有的。这种tra-Sxl逆行调控回路具有进化意义。在一些双翅目昆虫中,tra占据了Sxl的位置,即通过对前体mRNA剪接的直接正反馈从表观遗传学上维持雌性身份的基因。果蝇中tra介导的Sxl反馈可能是调控冗余的遗迹,这种冗余促进了从tra到Sxl作为主要性别开关这一进化转变。