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Role of mutations in the cellular internalization of amyloidogenic light chains into cardiomyocytes

机译:突变在淀粉样蛋白形成的轻链进入心肌细胞的细胞内在化中的作用

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摘要

Light chain (AL) amyloidosis is characterized by the misfolding of immunoglobulin light chains, accumulating as amyloid fibrils in vital organs. Multiple reports have indicated that amyloidogenic light chains internalize into a variety of cell types, but these studies used urine-derived proteins without indicating any protein sequence information. As a result, the role of somatic mutations in amyloidogenic protein internalization has not been yet studied. We characterized the internalization of AL-09, an AL amyloidosis protein into mouse cardiomyocytes. We also characterized the internalization of the germline protein κI O18/O8, devoid of somatic mutations, and three AL-09 restorative mutations (I34N, Q42K, and H87Y) previously characterized for their role in protein structure, stability, and amyloid formation kinetics. All proteins shared a common internalization pathway into lysosomal compartments. The proteins caused different degrees of lysosomal expansion. Oregon green (OG) labeled AL-09 showed the most rapid internalization, while OG-Q42K presented the slowest rate of internalization.
机译:轻链(AL)淀粉样变性病的特征是免疫球蛋白轻链的错误折叠,在重要器官中积累为淀粉样蛋白原纤维。多个报告表明,淀粉样蛋白形成的轻链内部化为多种细胞类型,但是这些研究使用尿液衍生的蛋白质,但未显示任何蛋白质序列信息。结果,尚未研究体细胞突变在淀粉样蛋白内在化中的作用。我们表征了AL-09,一种AL淀粉样变性蛋白进入小鼠心肌细胞的内在化。我们还表征了种系蛋白κIO18/ O8的内在化,没有体细胞突变,以及三个先前表征其在蛋白结构,稳定性和淀粉样蛋白形成动力学中作用的AL-09恢复性突变(I34N,Q42K和H87Y)。所有蛋白质都共享进入溶酶体区室的共同内化途径。这些蛋白质引起了不同程度的溶酶体扩增。标记为AL-09的俄勒冈绿色(OG)显示最快的内部化速度,而OG-Q42K显示最慢的内部化速度。

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