首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Half-life–extended recombinant coagulation factor IX–albumin fusion protein is recycled via the FcRn-mediated pathway
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Half-life–extended recombinant coagulation factor IX–albumin fusion protein is recycled via the FcRn-mediated pathway

机译:半衰期延长的重组凝血因子IX-白蛋白融合蛋白通过FcRn介导的途径回收

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摘要

The neonatal Fc receptor (FcRn) has a pivotal role in albumin and IgG homeostasis. Internalized IgG captured by FcRn under acidic endosomal conditions is recycled to the cell surface where exocytosis and a shift to neutral pH promote extracellular IgG release. Although a similar mechanism is proposed for FcRn-mediated albumin intracellular trafficking and recycling, this pathway is less well defined but is relevant to the development of therapeutics exploiting FcRn to extend the half-life of short-lived plasma proteins. Recently, a long-acting recombinant coagulation factor IX–albumin fusion protein (rIX-FP) has been approved for the management of hemophilia B. Fusion to albumin potentially enables internalized proteins to engage FcRn and escape lysosomal degradation. In this study, we present for the first time a detailed investigation of the FcRn-mediated recycling of albumin and the albumin fusion protein rIX-FP. We demonstrate that following internalization via FcRn at low pH, rIX-FP, like albumin, is detectable within the early endosome and rapidly (within 10–15 min) traffics into the Rab11+ recycling endosomes, from where it is exported from the cell. Similarly, rIX-FP and albumin taken up by fluid-phase endocytosis at physiological pH traffics into the Rab11+ recycling compartment in FcRn-positive cells but into the lysosomal compartment in FcRn-negative cells. As expected, recombinant factor IX (without albumin fusion) and an FcRn interaction–defective albumin variant localized to the lysosomal compartments of both FcRn-expressing and nonexpressing cells. These results indicate that FcRn-mediated recycling via the albumin moiety is a mechanism for the half-life extension of rIX-FP observed in clinical studies.
机译:新生儿Fc受体(FcRn)在白蛋白和IgG稳态中起关键作用。 FcRn在酸性内体条件下捕获的内在IgG被循环到细胞表面,在那里胞吐作用和向中性pH的转变促进细胞外IgG的释放。尽管有人提出了类似的机制来研究FcRn介导的白蛋白的细胞内运输和循环利用,但该途径的定义不太明确,但与开发利用FcRn延长短寿命血浆蛋白半衰期的疗法有关。最近,长效重组凝血因子IX-白蛋白融合蛋白(rIX-FP)已被批准用于血友病B的治疗。与白蛋白融合可能使内在化的蛋白与FcRn结合并逃避溶酶体降解。在这项研究中,我们首次提出了由FcRn介导的白蛋白和白蛋白融合蛋白rIX-FP回收的详细研究。我们证明,在低pH下通过FcRn内化后,rIX-FP(如白蛋白)可在早期内体中检测到,并迅速(在10-15分钟内)进入Rab11 +回收内体,并从细胞中排出。同样,rIX-FP和白蛋白在生理pH值下通过液相内吞作用吸收到FcRn阳性细胞的Rab11 +回收室,但进入FcRn阴性细胞的溶酶体室。如预期的那样,重组因子IX(无白蛋白融合)和FcRn相互作用缺陷型白蛋白变体位于表达FcRn和未表达细胞的溶酶体区室。这些结果表明,FcRn介导的通过白蛋白部分的再循环是在临床研究中观察到的rIX-FP半衰期延长的机制。

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