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首页> 外文期刊>Immunity Ageing >Mycobacterium leprae Hsp65 administration reduces the lifespan of aged high antibody producer mice
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Mycobacterium leprae Hsp65 administration reduces the lifespan of aged high antibody producer mice

机译:麻风分枝杆菌Hsp65的给药会降低高抗体产生者小鼠的寿命

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Background Aging process may result in immune modifications that lead to disruption of innate and acquired immunity mechanisms that may induce chronic-degenerative events. The heat shock proteins (Hsp), phylogeneticaly conserved among organisms, present as main function the ability of folding and refolding proteins, but they also are associated with chronic-degenerative disorders. Here were evaluated the role of M. leprae native Hsp65 (WT) and its point-mutated (K409A) on survival and anti-DNA and anti-Hsp65 antibody production of aged genetically selected mice for high (HIII) and low (LIII) antibody production; data from 120- and 270-days old mice (named “adult” or “aged”, respectively) were compared. Results WT Hsp65 administration induces reduction in the mean survival time of adult and aged female HIII mice, this effect being stronger in aged individuals. Surprisingly, the native protein administration increased the survival of aged female LIII when compared to K409A and control groups. No survival differences were observed in aged male mice after Hsp65 proteins inoculation. We observed increase in IgG1 anti-Hsp65 in WT and K409A aged HIII female mice groups and no marked changes in the anti-DNA (adult and aged HIII) and anti-Hsp65 IgG1 or IgG2a isotypes production in adult HIII female and aged male mice. LIII male mice presented increased anti-DNA and anti-Hsp65 IgG2a isotype production after WT or K409A injection, and LIII female groups showed no alterations. Conclusions The results revealed that the WT Hsp65 interferes with survival of aged HIII female mice without involvement of a remarkable IgG1 and IgG2a anti-DNA and anti-Hsp65 antibodies production. The deleterious effects of Hsp65 on survival time in aged HIII female mice could be linked to a gender-effect and are in agreement with those previously reported in lupus-prone mice.
机译:背景衰老过程可能会导致免疫修饰,从而导致先天和后天免疫机制受到破坏,从而诱发慢性变性事件。在系统发育上在生物体中保守的热激蛋白(Hsp)以折叠和再折叠蛋白的能力为主要功能,但它们也与慢性变性疾病有关。在此评估了麻风分枝杆菌天然Hsp65(WT)及其点突变(K409A)对老年遗传选择小鼠的高(HIII)和低(LIII)抗体的存活以及抗DNA和抗Hsp65抗体产生的作用生产;比较了120天和270天大的小鼠(分别称为“成年”或“年龄”)的数据。结果WT Hsp65给药导致成年和老年雌性HIII小鼠的平均存活时间减少,这种作用在老年个体中更强。令人惊奇的是,与K409A和对照组相比,天然蛋白质给药增加了老年雌性LIII的存活。接种Hsp65蛋白后,在成年雄性小鼠中未观察到生存差异。我们观察到WT和K409A老年HIII雌性小鼠组中IgG1抗Hsp65的增加,而成年HIII雌性和老年雄性小鼠中的抗DNA(成人和老年HIII)和抗Hsp65 IgG1或IgG2a亚型的产生没有明显变化。在WT或K409A注射后,LIII雄性小鼠的抗DNA和抗Hsp65 IgG2a同种型产生增加,而LIII雌性组没有任何改变。结论结果表明,WT Hsp65干扰了老年HIII雌性小鼠的存活,而没有产生明显的IgG1和IgG2a抗DNA和抗Hsp65抗体。 Hsp65对老年HIII雌性小鼠存活时间的有害影响可能与性别效应有关,并且与先前在易患狼疮的小鼠中报道的结果一致。

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