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首页> 外文期刊>Journal of Molecular Biology >NMR model of PrgI-SipD interaction and its implications in the needle-tip assembly of the salmonella type III secretion system
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NMR model of PrgI-SipD interaction and its implications in the needle-tip assembly of the salmonella type III secretion system

机译:PrgI-SipD相互作用的NMR模型及其在III型沙门氏菌分泌系统针尖组装中的意义

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Salmonella and other pathogenic bacteria use the type III secretion system (T3SS) to inject virulence proteins into human cells to initiate infections. The structural component of the T3SS contains a needle and a needle tip. The needle is assembled from PrgI needle protomers and the needle tip is capped with several copies of the SipD tip protein. How a tip protein docks on the needle is unclear. A crystal structure of a PrgI-SipD fusion protein docked on the PrgI needle results in steric clash of SipD at the needle tip when modeled on the recent atomic structure of the needle. Thus, there is currently no good model of how SipD is docked on the PrgI needle tip. Previously, we showed by NMR paramagnetic relaxation enhancement (PRE) methods that a specific region in the SipD coiled coil is the binding site for PrgI. Others have hypothesized that a domain of the tip protein - the N-terminal α-helical hairpin - has to swing away during the assembly of the needle apparatus. Here, we show by PRE methods that a truncated form of SipD lacking the α-helical hairpin domain binds more tightly to PrgI. Further, PRE-based structure calculations revealed multiple PrgI binding sites on the SipD coiled coil. Our PRE results together with the recent NMR-derived atomic structure of the Salmonella needle suggest a possible model of how SipD might dock at the PrgI needle tip. SipD and PrgI are conserved in other bacterial T3SSs; thus, our results have wider implication in understanding other needle-tip complexes.
机译:沙门氏菌和其他致病细菌使用III型分泌系统(T3SS)将毒力蛋白注入人细胞以引发感染。 T3SS的结构部件包含一个针头和一个针尖。针头是由PrgI针头假体组装而成的,并且针尖上盖有SipD针尖蛋白质的多个副本。尖端蛋白质如何在针头上对接尚不清楚。当对针的最新原子结构进行建模时,停靠在PrgI针上的PrgI-SipD融合蛋白的晶体结构会导致SipD在针尖发生空间碰撞。因此,目前尚无关于SipD如何停靠在PrgI针尖上的良好模型。以前,我们通过NMR顺磁弛豫增强(PRE)方法显示,SipD卷曲螺旋中的特定区域是PrgI的结合位点。其他人假设,在针头装置的组装过程中,尖端蛋白的结构域-N末端α-螺旋发夹-必须摆动。在这里,我们通过PRE方法显示缺少α-螺旋发夹结构域的SipD的截短形式与PrgI紧密结合。此外,基于PRE的结构计算显示SipD卷曲螺旋上有多个PrgI结合位点。我们的PRE结果与沙门氏菌针的最近NMR衍生的原子结构一起,提示了SipD如何停靠在PrgI针尖上的可能模型。 SipD和PrgI在其他细菌T3SS中是保守的;因此,我们的结果对理解其他针尖复合物具有更广泛的意义。

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