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Isolation of a distinct Mycobacterium tuberculosis mannose-capped lipoarabinomannan isoform responsible for recognition by CD1b-restricted T cells

机译:分离一个独特的结核分枝杆菌甘露糖帽的脂阿拉伯糖甘露聚糖同工型负责识别受CD1b限制的T细胞

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摘要

Mannose-capped lipoarabinomannan (ManLAM) is a complex lipoglycan abundantly present in the Mycobacterium tuberculosis cell envelope. Many biological properties have been ascribed to ManLAM, from directly interacting with the host and participating in the intracellular survival of M. tuberculosis, to triggering innate and adaptive immune responses, including the activation of CD1b-restricted T cells. Due to its structural complexity, ManLAM is considered a heterogeneous population of molecules which may explain its different biological properties. The presence of various modifications such as fatty acids, succinates, lactates, phosphoinositides and methylthioxylose in ManLAM have proven to correlate directly with its biological activity and may potentially be involved in the interactions between CD1b and the T cell population. To further delineate the specific ManLAM epitopes involved in CD1b-restricted T cell recognition, and their potential roles in mediating immune responses in M. tuberculosis infection, we established a method to resolve ManLAM into eight different isoforms based on their different isoelectric values. Our results show that a ManLAM isoform with an isoelectric value of 5.8 was the most potent in stimulating the production of interferon-γ in different CD1b-restricted T-cell lines. Compositional analyses of these isoforms of ManLAM revealed a direct relationship between the overall charge of the ManLAM molecule and its capacity to be presented to T cells via the CD1 compartment.
机译:甘露糖封端的脂肪阿拉伯甘露聚糖(ManLAM)是一种复杂的脂多糖,大量存在于结核分枝杆菌细胞的被膜中。从与宿主直接相互作用并参与结核分枝杆菌的细胞内存活到触发先天性和适应性免疫应答,包括激活CD1b限制性T细胞,ManLAM都具有许多生物学特性。由于其结构的复杂性,ManLAM被认为是分子的异质群体,可以解释其不同的生物学特性。 ManLAM中脂肪酸,琥珀酸酯,乳酸酯,磷酸肌醇和甲基硫代木糖等各种修饰物的存在已被证明与其生物学活性直接相关,并且可能与CD1b和T细胞群体之间的相互作用有关。为了进一步描述参与CD1b限制性T细胞识别的特定ManLAM表位,以及它们在介导结核分枝杆菌感染中的免疫反应中的潜在作用,我们基于其不同的等电值,建立了一种将ManLAM分解为八种不同同工型的方法。我们的结果表明,等电点值为5.8的ManLAM同工型在刺激不同CD1b限制性T细胞系中干扰素-γ的产生方面最有效。对ManLAM这些同工型的成分分析表明,ManLAM分子的总电荷与其通过CD1区带给T细胞的能力之间存在直接关系。

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