Albumin uptake and processing by the proximal tubule: physiological, pathological, and therapeutic implications

跨细胞 白蛋白 重吸收 内吞作用 新生儿Fc受体 蛋白尿 内体 糖基化 分解代谢 血清白蛋白 肾脏生理学 溶酶体 化学 细胞生物学 生物化学 受体 内科学 生物 医学 肾功能 免疫学 新陈代谢 免疫球蛋白G 免疫系统
作者
Bruce A. Molitoris,Ruben M. Sandoval,Shiv Pratap Singh Yadav,Mark C. Wagner
出处
期刊:Physiological Reviews [American Physiological Society]
卷期号:102 (4): 1625-1667 被引量:127
标识
DOI:10.1152/physrev.00014.2021
摘要

For nearly 50 years the proximal tubule (PT) has been known to reabsorb, process, and either catabolize or transcytose albumin from the glomerular filtrate. Innovative techniques and approaches have provided insights into these processes. Several genetic diseases, nonselective PT cell defects, chronic kidney disease (CKD), and acute PT injury lead to significant albuminuria, reaching nephrotic range. Albumin is also known to stimulate PT injury cascades. Thus, the mechanisms of albumin reabsorption, catabolism, and transcytosis are being reexamined with the use of techniques that allow for novel molecular and cellular discoveries. Megalin, a scavenger receptor, cubilin, amnionless, and Dab2 form a nonselective multireceptor complex that mediates albumin binding and uptake and directs proteins for lysosomal degradation after endocytosis. Albumin transcytosis is mediated by a pH-dependent binding affinity to the neonatal Fc receptor (FcRn) in the endosomal compartments. This reclamation pathway rescues albumin from urinary losses and cellular catabolism, extending its serum half-life. Albumin that has been altered by oxidation, glycation, or carbamylation or because of other bound ligands that do not bind to FcRn traffics to the lysosome. This molecular sorting mechanism reclaims physiological albumin and eliminates potentially toxic albumin. The clinical importance of PT albumin metabolism has also increased as albumin is now being used to bind therapeutic agents to extend their half-life and minimize filtration and kidney injury. The purpose of this review is to update and integrate evolving information regarding the reabsorption and processing of albumin by proximal tubule cells including discussion of genetic disorders and therapeutic considerations.
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