Felix Christine, Kaplan Türköz Burcu, Ranaldi Sebastien, Koelblen Thomas, Terradot Laurent, O'Callaghan David, Vergunst Annette Caroline
INSERM, U1047, 186 Chemin du Carreau de Lanes, Nîmes, 30908, France.
Cell Commun Signal. 2014 Oct 12;12:53. doi: 10.1186/s12964-014-0053-y.
The TIR domain-containing proteins BtpA/Btp1/TcpB and BtpB are translocated into host cells by the facultative intracellular bacterial pathogen Brucella. Here, they interfere with Toll like receptor signalling to temper the host inflammatory response. BtpA has also been found to modulate microtubule dynamics. In both proteins we identified a WxxxE motif, previously shown to be an essential structural component in a family of bacterial type III secretion system effectors that modulate host actin dynamics by functioning as guanine nucleotide exchange factors of host GTPases. We analysed a role for the WxxxE motif in association of BtpA and BtpB with the cytoskeleton.
Unlike BtpA, ectopically expressed BtpB did not show a tubular localisation, but was found ubiquitously in the cytoplasm and the nucleus, and often appeared in discrete punctae in HeLa cells. BtpB was able to protect microtubules from drug-induced destabilisation similar to BtpA. The WxxxE motif was important for the ability of BtpA and BtpB to protect microtubules against destabilising drugs. Surprisingly, ectopic expression of BtpA, although not BtpB, in HeLa cells induced the formation of filopodia. This process was invariably dependent of the WxxxE motif. Our recent resolution of the crystal structure of the BtpA TIR domain reveals that the motif positions a glycine residue that has previously been shown to be essential for interaction of BtpA with microtubules.
Our results suggest a structural role for the WxxxE motif in the association of BtpA and BtpB with microtubules, as with the WxxxE GEF family proteins where the motif positions an adjacent catalytic loop important for interaction with specific Rho GTPases. In addition, the ability of ectopically expressed BtpA to induce filopodia in a WxxxE-dependent manner suggests a novel property for BtpA. A conserved WxxxE motif is found in most bacterial and several eukaryotic TIR domain proteins. Despite the similarity between ectopically expressed BtpA and WxxxE GEFs to modulate host actin dynamics, our results suggest that BtpA is not part of this WxxxE GEF family. The WxxxE motif may therefore be a more common structural motif than thus far described. BtpA may provide clues to cross-talk between the TLR and GTPase signalling pathways.
含TIR结构域的蛋白BtpA/Btp1/TcpB和BtpB可被兼性胞内细菌病原体布鲁氏菌转运至宿主细胞内。在此,它们干扰Toll样受体信号传导以调节宿主炎症反应。还发现BtpA可调节微管动力学。在这两种蛋白中,我们鉴定出一个WxxxE基序,先前已证明该基序是一类细菌III型分泌系统效应蛋白的必需结构成分,这些效应蛋白通过作为宿主GTP酶的鸟嘌呤核苷酸交换因子来调节宿主肌动蛋白动力学。我们分析了WxxxE基序在BtpA和BtpB与细胞骨架结合中的作用。
与BtpA不同,异位表达的BtpB未显示出管状定位,而是在细胞质和细胞核中普遍存在,并且在HeLa细胞中常以离散的点状出现。BtpB能够像BtpA一样保护微管免受药物诱导的不稳定影响。WxxxE基序对于BtpA和BtpB保护微管免受不稳定药物影响的能力很重要。令人惊讶的是,在HeLa细胞中异位表达BtpA(而非BtpB)会诱导丝状伪足的形成。这个过程始终依赖于WxxxE基序。我们最近解析的BtpA TIR结构域的晶体结构表明,该基序定位了一个甘氨酸残基,先前已证明该残基对于BtpA与微管的相互作用至关重要。
我们的结果表明WxxxE基序在BtpA和BtpB与微管的结合中具有结构作用,就像在WxxxE GEF家族蛋白中一样,该基序定位了一个对与特定Rho GTP酶相互作用很重要的相邻催化环。此外,异位表达的BtpA以依赖WxxxE的方式诱导丝状伪足形成的能力表明BtpA具有一种新特性。在大多数细菌和几种真核TIR结构域蛋白中发现了保守的WxxxE基序。尽管异位表达的BtpA与WxxxE GEF在调节宿主肌动蛋白动力学方面具有相似性,但我们的结果表明BtpA不是这个WxxxE GEF家族的一部分。因此,WxxxE基序可能是一个比迄今所描述的更为常见的结构基序。BtpA可能为Toll样受体和GTP酶信号通路之间的相互作用提供线索。