Department of Urology, J8-134, UT Southwestern Medical Center at Dallas, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.
Amino Acids. 2012 Apr;42(4):1253-60. doi: 10.1007/s00726-010-0817-7. Epub 2010 Dec 1.
Recently, we have shown that oligo-arginine peptide (i.e., R11), a unique cell-permeable peptide (CPP), can be used as an imaging probe for prostate cancer detection. In this study, the mechanism(s) of oligo-arginine peptide in prostate cells was further analyzed. The length of the oligo-arginine peptide appears to be critical for the efficiency of uptake by prostate cells: poly (11)-arginine (R11) > poly (9)-arginine (R9) > poly (13)-arginine peptide (R13). The uptake of R11 peptide by prostate cells is mediated by macropinocytosis as evidenced by the fact that uptake can be blocked by a macropinocytosis inhibitor. However, the use of an inhibitor for carbohydrate chain elongation of glycosaminoglycan or inhibitors for carbohydrate synthesis of glycoprotein via either O-link or N-link showed minimal effects on R11 uptake. Nevertheless, pentosan sulfate (PentS) or dextran sulfate (DS) exhibited the highest inhibitory effect on R11 uptake in several prostate cells treated with various soluble glycosaminoglycans (GAGs) or anionic polymers. It is known that laminin receptor has been characterized as a PentS binding partner. Knocking down 37LRP (laminin receptor precursor) expression in prostate cells showed a reduction in their ability to uptake R11 peptides. In conclusion, laminin receptor is one of the initial binding site(s) responsible for R11 peptide uptake in prostate cells.
最近,我们已经证明,寡精氨酸肽(即 R11),一种独特的细胞穿透肽(CPP),可用作前列腺癌检测的成像探针。在这项研究中,进一步分析了寡精氨酸肽在前列腺细胞中的作用机制。寡精氨酸肽的长度似乎对前列腺细胞摄取的效率至关重要:多聚(11)-精氨酸(R11)>多聚(9)-精氨酸(R9)>多聚(13)-精氨酸肽(R13)。R11 肽被前列腺细胞摄取是通过巨胞饮作用介导的,这一事实表明,巨胞饮作用抑制剂可以阻断肽的摄取。然而,使用糖胺聚糖糖链延伸抑制剂或通过 O 连接或 N 连接合成糖蛋白的抑制剂对 R11 摄取的影响很小。然而,戊聚糖硫酸盐(PentS)或葡聚糖硫酸盐(DS)在几种用各种可溶性糖胺聚糖(GAGs)或阴离子聚合物处理的前列腺细胞中对 R11 摄取的抑制作用最高。已知层粘连蛋白受体已被表征为 PentS 的结合伴侣。在前列腺细胞中敲低 37LRP(层粘连蛋白受体前体)的表达,显示出其摄取 R11 肽的能力降低。总之,层粘连蛋白受体是负责前列腺细胞中 R11 肽摄取的初始结合位点之一。