Di Carluccio Cristina, Forgione Rosa Ester, Bosso Andrea, Yokoyama Shinji, Manabe Yoshiyuki, Pizzo Elio, Molinaro Antonio, Fukase Koichi, Fragai Marco, Bensing Barbara A, Marchetti Roberta, Silipo Alba
Department of Chemical Sciences, University of Naples Federico II Via Cinthia 4 80126 Naples Italy
Department of Biology, University of Naples Federico II Via Cinthia 4 80126 Naples Italy.
RSC Chem Biol. 2021 Oct 18;2(6):1618-1630. doi: 10.1039/d1cb00173f. eCollection 2021 Dec 2.
and , commensal bacteria present in the oral cavity of healthy individuals, upon entry into the bloodstream can become pathogenic, causing infective endocarditis (IE). Sialic acid-binding serine-rich repeat adhesins on the microbial surface represent an important factor of successful infection to cause IE. They contain Siglec-like binding regions (SLBRs) that variously recognize different repertoires of -glycans, with some strains displaying high selectivity and others broader specificity. We here dissect at an atomic level the mechanism of interaction of SLBR-B and SLBR-H from with a multivarious approach that combines NMR spectroscopy and computational and biophysical studies. The binding pockets of both SLBRs are broad enough to accommodate extensive interactions with sialoglycans although with key differences related to strain specificity. Furthermore, and significantly, the pattern of interactions established by the SLBRs are mechanistically very different from those reported for mammalian Siglecs despite them having a similar fold. Thus, our detailed description of the binding modes of streptococcal Siglec-like adhesins sparks the development of tailored synthetic inhibitors and therapeutics specific for Streptococcal adhesins to counteract IE, without impairing the interplay between Siglecs and glycans.
并且,健康个体口腔中的共生细菌一旦进入血液就可能致病,引发感染性心内膜炎(IE)。微生物表面的唾液酸结合富含丝氨酸重复黏附素是导致IE成功感染的一个重要因素。它们包含唾液酸结合免疫球蛋白样凝集素(Siglec)样结合区域(SLBRs),能以不同方式识别各种不同的唾液酸聚糖,有些菌株表现出高选择性,而其他菌株则具有更广泛的特异性。我们在此采用结合核磁共振波谱法以及计算和生物物理研究的多种方法,在原子水平剖析来自[具体菌株名称未给出]的SLBR-B和SLBR-H的相互作用机制。尽管与菌株特异性存在关键差异,但两种SLBRs的结合口袋都足够宽,能够容纳与唾液酸聚糖的广泛相互作用。此外,重要的是,SLBRs建立的相互作用模式在机制上与哺乳动物Siglecs报道的模式非常不同,尽管它们具有相似的折叠结构。因此,我们对链球菌Siglec样黏附素结合模式的详细描述激发了针对链球菌黏附素的定制合成抑制剂和治疗方法的开发,以对抗IE,同时又不损害Siglecs与聚糖之间的相互作用。