首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Enhancement of diphtheria toxin potency by replacement of the receptor binding domain with tetanus toxin C-fragment: a potential vector for delivering heterologous proteins to neurons.
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Enhancement of diphtheria toxin potency by replacement of the receptor binding domain with tetanus toxin C-fragment: a potential vector for delivering heterologous proteins to neurons.

机译:通过用破伤风毒素C片段替换受体结合结构域来增强白喉毒素的效力:这是一种将异源蛋白传递至神经元的潜在载体。

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摘要

This study describes the expression, purification, and characterization of a recombinant fusion toxin, DAB(389)TTC, composed of the catalytic and membrane translocation domains of diphtheria toxin (DAB(389)) linked to the receptor binding fragment of tetanus toxin (C-fragment). As determined by its ability to inhibit cellular protein synthesis in primary neuron cultures, DAB(389)TTC was approximately 1,000-fold more cytotoxic than native diphtheria toxin or the previously described fusion toxin, DAB(389)MSH. The cytotoxic effect of DAB(389)TTC on cultured cells was specific toward neuronal-type cells and was blocked by coincubation of the chimeric toxin with tetanus antitoxin. The toxicity of DAB(389)TTC, like that of diphtheria toxin, was dependent on passage through an acidic compartment and ADP-ribosyltransferase activity of the DAB(389) catalytic fragment. These results suggest that a catalytically inactive form of DAB(389)TTC may be useful as a nonviral vehicle to deliver exogenous proteins to the cytosolic compartment of neurons.
机译:这项研究描述了重组融合毒素DAB(389)TTC的表达,纯化和表征,该重组融合毒素由白喉毒素(DAB(389))的催化和膜移位结构域与破伤风毒素(C)的受体结合片段相连-分段)。根据其在原代神经元培养物中抑制细胞蛋白质合成的能力确定,DAB(389)TTC的细胞毒性比天然白喉毒素或先前描述的融合毒素DAB(389)MSH高约1,000倍。 DAB(389)TTC对培养细胞的细胞毒性作用对神经元型细胞具有特异性,并通过嵌合毒素与破伤风抗毒素的共孵育而被阻断。像白喉毒素一样,DAB(389)TTC的毒性取决于通过酸性区室和DAB(389)催化片段的ADP-核糖基转移酶活性。这些结果表明,DAB(389)TTC的催化失活形式可能用作非病毒载体,以将外源蛋白传递至神经元的胞质区室。

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