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首页> 外文期刊>The journal of immunology >γ3 Gene-Disrupted Mice Selectively Deficient in the Dominant IgG Subclass Made to Bacterial Polysaccharides. II. Increased Susceptibility to Fatal Pneumococcal Sepsis Due to Absence of Anti-Polysaccharide IgG3 Is Corrected by Induction of Anti-Polysaccharide IgG1
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γ3 Gene-Disrupted Mice Selectively Deficient in the Dominant IgG Subclass Made to Bacterial Polysaccharides. II. Increased Susceptibility to Fatal Pneumococcal Sepsis Due to Absence of Anti-Polysaccharide IgG3 Is Corrected by Induction of Anti-Polysaccharide IgG1

机译:γ3基因破坏的小鼠选择性缺乏细菌多糖制成的主要IgG亚类。二。通过诱导抗多糖IgG1纠正因缺乏抗多糖IgG3而导致的致命性肺炎球菌败血症敏感性增加

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摘要

Bacterial polysaccharides (PS) are type 2 T-independent Ags that elicit Abs restricted in isotype to IgM and predominantly IgG2 in humans and IgM, and IgG3 in mice. Humans with IgG2 subclass deficiency are susceptible to sinus and pulmonary infections with PS-encapsulated bacteria. We previously developed an IgG3-deficient mouse by disrupting the γ3 H chain constant region gene via targeted mutagenesis. Mutant mice lacking IgG3 were backcrossed for 10 generations to wild-type (WT) BALB/c mice to generate BALB/c mice that have complete absence of IgG3. WT mice immunized with type 3 Streptococcus pneumoniae capsular PS made anti-PS IgM, IgG3, and small quantities of IgG1, which opsonized S. pneumoniae for killing by polymorphonuclear leukocytes. These mice were protected against death from lethal doses of type 3 S. pneumoniae . In contrast, IgG3?/? mice made similar titers of anti-PS IgM and IgG1 as WT mice but no IgG3, and had poorly opsonic sera with significantly increased mortality after S. pneumoniae challenge. Immunization of IgG3?/? mice with type 3 S. pneumoniae PS conjugated to carrier protein CRM197-elicited IgM and high-titer IgG1 Abs, restored serum opsonization, and gave protection from mortality after S. pneumoniae , challenge comparable to WT mice. We conclude that mice lacking the dominant IgG3 subclass made to bacterial PS are more susceptible to fatal S. pneumoniae sepsis than WT mice, but that IgG1 induced by a S. pneumoniae glycoconjugate can adequately protect against S. pneumoniae sepsis. This model suggests that IgG subclass of anti-PS Ab is an important component of immunity to encapsulated bacteria.
机译:细菌多糖(PS)是2型非T依赖性Ags,在同种型中引起Abs受限于IgM,在人类和IgM中主要为IgG2,在小鼠中为IgG3。具有IgG2亚类缺陷的人类易受PS包埋细菌感染的鼻窦和肺部感染。我们以前通过靶向诱变破坏γ3H链恒定区基因,开发了IgG3缺陷型小鼠。将缺少IgG3的突变小鼠与野生型(WT)BALB / c小鼠回交10代,以产生完全不存在IgG3的BALB / c小鼠。用3型肺炎链球菌荚膜PS免疫的WT小鼠产生了抗PS IgM,IgG3和少量IgG1,它们调理了肺炎链球菌以被多形核白细胞杀死。这些小鼠被保护免受致命剂量的3型肺炎链球菌的死亡。相反,IgG3α/β。小鼠产生的抗PS IgM和IgG1滴度与野生型小鼠相似,但未产生IgG3,并且具有弱调理血清,肺炎链球菌感染后死亡率显着增加。免疫IgG3?/?具有与载体蛋白CRM197结合的3型肺炎链球菌PS的小鼠诱发了IgM和高滴度IgG1 Abs,恢复了血清调理作用,并提供了抗肺炎链球菌致死的保护,与野生型小鼠相当。我们得出的结论是,缺乏细菌PS的优势IgG3亚类的小鼠比野生型小鼠更易遭受致命的肺炎链球菌败血症,但是由肺炎链球菌糖缀合物诱导的IgG1可以充分预防肺炎链球菌败血症。该模型表明抗-PS Ab的IgG亚类是对包封细菌的免疫力的重要组成部分。

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