上皮细胞甘油醛-3-磷酸脱氢酶作为结合牙龈卟啉单胞菌菌毛的第二分子的鉴定

Hakimuddin T. Sojar, Robert J. Genco
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引用次数: 28

摘要

牙龈卟啉单胞菌与宿主细胞的结合是牙周病发病的重要步骤。牙龈卟啉卟啉结合并侵入上皮细胞,而菌毛被认为参与了这一过程。在我们早期的研究中,40和50 kDa的两种主要上皮细胞成分被确定为潜在的毛受体。对50 kda成分的溴化氰消化片段进行测序,结果显示其内部序列与角蛋白I分子相同,因此该细胞角蛋白代表牙龈假单胞菌菌毛上皮细胞受体之一。本研究分离了KB细胞的40-kDa组分,并测定了其氨基末端序列。n端氨基酸序列为GKVKVGVNGF,与人甘油醛-3-磷酸脱氢酶(GAPDH)具有完全同源性。此外,纯化的牙龈假单胞菌菌毛与家兔肌肉GAPDH结合。针对纤维蛋白内部肽49-68和69-90的抗体可抑制牙龈假单胞菌和纤维与上皮细胞的结合。针对这些肽的抗体也抑制了菌毛与GAPDH的结合。我们的结果证实,纤维蛋白的氨基残基49-68对应的氨基末端结构域是GAPDH的主要结合域。这些研究表明GAPDH是牙龈卟啉单胞菌主要菌毛的主要受体,因此GAPDH可能在牙龈卟啉单胞菌粘附和口腔定植中发挥作用,并触发宿主细胞过程参与牙龈卟啉单胞菌感染的发病机制。
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Identification of glyceraldehyde-3-phosphate dehydrogenase of epithelial cells as a second molecule that binds to Porphyromonas gingivalis fimbriae

Binding of Porphyromonas gingivalis to the host cells is an essential step in the pathogenesis of periodontal disease. P. gingivalis binds to and invades epithelial cells, and fimbriae are thought to be involved in this process. In our earlier studies, two major epithelial cell components of 40 and 50 kDa were identified as potential fimbrial receptors. Sequencing of a cyanogen bromide digestion fragment of the 50-kDa component resulted in an internal sequence identical to keratin I molecules, and hence this cytokeratin represents one of the epithelial cell receptors for P. gingivalis fimbriae. In this study, the 40-kDa component of KB cells was isolated and its amino-terminal sequence determined. The N-terminal amino sequence was found to be GKVKVGVNGF and showed perfect homology with human glyceraldehyde-3-phosphate dehydrogenase (GAPDH). Furthermore, purified P. gingivalis fimbriae were found to bind to rabbit muscle GAPDH. Antibodies directed against internal peptide 49–68 and 69–90 of fimbrillin were shown to inhibit the binding of P. gingivalis and of fimbriae to epithelial cells. Antibodies against these peptides also inhibited the binding of fimbriae to GAPDH. Our results confirmed that the amino-terminal domain corresponding to amino residues 49–68 of the fimbrillin protein is the major GAPDH binding domain. These studies point to GAPDH as a major receptor for P. gingivalis major fimbriae and, as such, GAPDH likely plays a role in P. gingivalis adherence and colonization of the oral cavity, as well as triggering host cell processes involved in the pathogenesis of P. gingivalis infections.

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