Zerofsky Melissa, Harel Ephat, Silverman Neal, Tatar Marc
Brown University, Division of Biology and Medicine, Providence, RI 02912, USA.
Aging Cell. 2005 Apr;4(2):103-8. doi: 10.1111/j.1474-9728.2005.00147.x.
Increased activation of the innate immune system is a common feature of aging animals, including mammals and Drosophila melanogaster. With age, D. melanogaster progressively express higher levels of many antimicrobial peptides. It is unknown, however, whether this pattern reflects age-dependent changes in the function of the immune system itself or arises simply because aged adults have greater cumulative exposure to pathogens. Here we demonstrate that aged D. melanogaster transcribe more antimicrobial diptericin when experimentally exposed to septic bacterial infections. This strong net response in older females is the result of persistent diptericin transcription upon septic exposure, whereas young females rapidly terminate this induction. In contrast to their response to septic exposure, when exposed to killed bacteria aged females have less capacity to induce diptericin. Because this functional capacity of innate immunity declines with age, we conclude that female Drosophila undergo immune senescence. Furthermore, we show that fecundity is reduced by induction of innate immunity via the immune deficiency pathway. Consequently, maximum reproduction will occur when the immune response is tightly controlled in young females, even if this increases infection risk at later ages.
先天免疫系统的激活增加是衰老动物(包括哺乳动物和黑腹果蝇)的一个共同特征。随着年龄的增长,黑腹果蝇逐渐表达更高水平的多种抗菌肽。然而,尚不清楚这种模式是反映了免疫系统自身功能随年龄的变化,还是仅仅因为老年个体累积接触病原体的机会更多。在这里,我们证明,当实验性地将老年黑腹果蝇暴露于败血性细菌感染时,它们会转录更多的抗菌肽双翅菌素。老年雌性果蝇这种强烈的净反应是败血性暴露后双翅菌素持续转录的结果,而年轻雌性果蝇则会迅速终止这种诱导。与它们对败血性暴露的反应相反,当暴露于死细菌时,老年雌性果蝇诱导双翅菌素的能力较弱。由于先天免疫的这种功能能力会随着年龄的增长而下降,我们得出结论,雌性果蝇会经历免疫衰老。此外,我们表明,通过免疫缺陷途径诱导先天免疫会降低繁殖力。因此,即使这会增加后期感染的风险,但当年轻雌性果蝇的免疫反应受到严格控制时,仍会实现最大繁殖。