Centre de Biologie du développement, UMR5547 CNRS/UPS, Université de Toulouse, Toulouse, France.
PLoS Genet. 2013 Jun;9(6):e1003581. doi: 10.1371/journal.pgen.1003581. Epub 2013 Jun 27.
Most identified Drosophila appendage-patterning genes encode DNA-binding proteins, whose cross-regulatory interactions remain to be better characterized at the molecular level, notably by studying their direct binding to tissue-specific transcriptional enhancers. A fine-tuned spatio-temporal expression of bric-a-brac2 (bab2) along concentric rings is essential for proper proximo-distal (P-D) differentiation of legs and antennae. However, within the genetic interaction landscape governing limb development, no transcription factor directly controlling bab2 expression has been identified to date. Using site-targeted GFP reporter assay and BAC recombineering, we show here that restricted bab2 expression in leg and antennal imaginal discs relies on a single 567-bp-long cis-regulatory module (CRM), termed LAE (for leg and antennal enhancer). We show that this CRM (i) is necessary and sufficient to ensure normal bab2 activity in developing leg and antenna, and (ii) is structurally and functionally conserved among Drosophilidae. Through deletion and site-directed mutagenesis approaches, we identified within the LAE essential sequence motifs required in both leg and antennal tissues. Using genetic and biochemical tests, we establish that in the LAE (i) a key TAAT-rich activator motif interacts with the homeodomain P-D protein Distal-less (Dll) and (ii) a single T-rich activator motif binds the C2H2 zinc-finger P-D protein Rotund (Rn), leading to bab2 up-regulation respectively in all or specifically in the proximal-most ring(s), both in leg and antenna. Joint ectopic expression of Dll and Rn is sufficient to cell-autonomously activate endogenous bab2 and LAE-driven reporter expression in wing and haltere cells. Our findings indicate that accuracy, reliability and robustness of developmental gene expression do not necessarily require cis-regulatory information redundancy.
大多数鉴定的果蝇附肢模式形成基因编码 DNA 结合蛋白,其交叉调节相互作用在分子水平上仍有待更好地表征,特别是通过研究它们与组织特异性转录增强子的直接结合。bric-a-brac2 (bab2) 的精细时空表达沿着同心环是腿和触角的正确近-远(P-D)分化所必需的。然而,在控制肢体发育的遗传相互作用景观中,迄今为止尚未鉴定出直接控制 bab2 表达的转录因子。使用靶向特定部位的 GFP 报告基因测定和 BAC 重组,我们在这里显示,腿和触角成虫盘的 bab2 表达受到单个 567-bp 长的顺式调控模块(CRM)的限制,称为 LAE(用于腿和触角增强子)。我们表明,该 CRM(i) 对于在发育中的腿和触角中确保正常的 bab2 活性是必要的且充分的,并且 (ii) 在果蝇科中在结构和功能上是保守的。通过缺失和定点诱变方法,我们在 LAE 中鉴定出在腿和触角组织中都需要的必需序列基序。通过遗传和生化测试,我们确定在 LAE(i) 中,一个关键的 TAAT 丰富的激活基序与同源域 P-D 蛋白 Distal-less (Dll) 相互作用,以及 (ii) 一个单一的富含 T 的激活基序与 C2H2 锌指 P-D 蛋白 Rotund (Rn) 结合,分别导致 bab2 在腿和触角中的所有或近端最环中的上调。Dll 和 Rn 的异位共表达足以细胞自主地激活内源性 bab2 和在翅膀和平衡棒细胞中 LAE 驱动的报告基因表达。我们的发现表明,发育基因表达的准确性、可靠性和稳健性不一定需要顺式调控信息冗余。