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Lpsd/Ran of endotoxin-resistant C3H/HeJ mice is defective in mediating lipopolysaccharide endotoxin responses

机译:耐内毒素的C3H / HeJ小鼠的Lpsd / Ran在介导脂多糖内毒素反应方面存在缺陷

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摘要

C3H/HeJ inbred mice are defective in that they are highly resistant to endotoxic shock as compared with normal responder mice. Their B cells and macrophages do not respond significantly when exposed to lipopolysaccharide (LPS), whereas cells from the responder mice do. Using a functional assay, we previously isolated a cDNA, which encodes for Ran/TC4 GTPase. We now show that this gene is mutated in C3H/HeJ mice, which accounts for their resistance to endotoxin stimulation. Sequence analysis of independent mutant Lpsd/Ran cDNAs isolated from splenic B cells of C3H/HeJ mice reveals a consistent single base substitution at position 870, where a thymidine is replaced with a cytidine. In situ hybridization maps the Lpsd/Ran cDNA to mouse chromosome 4. By retroviral gene transfer, the wild-type Lpsn/Ran cDNA but not the mutant Lpsd/Ran cDNA can restore LPS responsiveness of C3H/HeJ cells. Adenoviral gene transfer in vivo with the mutant Lpsd/Ran cDNA but not the wild-type Lpsn/Ran cDNA rescues endotoxin-sensitive mice from septic shock. Thus Lps/Ran is an important target for LPS-mediated signal transduction, and the Lpsd/Ran gene may be useful as a therapeutic sequence in gene therapy for endotoxemia and septic shock.
机译:C3H / HeJ近交小鼠的缺陷在于,与正常反应小鼠相比,它们对内毒素休克具有高度抗性。当暴露于脂多糖(LPS)时,它们的B细胞和巨噬细胞无明显反应,而来自反应小鼠的细胞则反应明显。使用功能分析,我们先前分离了一个cDNA,该cDNA编码Ran / TC4 GTPase。现在我们显示该基因在C3H / HeJ小鼠中发生了突变,这说明了它们对内毒素刺激的抵抗力。从C3H / HeJ小鼠脾脏B细胞分离的独立突变Lpsd / Ran cDNA的序列分析显示,在位置870上存在一致的单碱基取代,其中胸苷被胞苷替换。原位杂交将Lpsd / Ran cDNA映射到小鼠染色体4。通过逆转录病毒基因转移,野生型Lpsn / Ran cDNA而非突变的Lpsd / Ran cDNA可以恢复C3H / HeJ细胞的LPS反应性。用突变的Lpsd / Ran cDNA进行体内腺病毒基因转移,但不使用野生型Lpsn / Ran cDNA进行腺病毒基因转移,可以使内毒素敏感的小鼠免于感染性休克。因此,Lps / Ran是LPS介导的信号转导的重要靶标,并且Lpsd / Ran基因可用作内毒素血症和败血性休克的基因治疗中的治疗序列。

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