Marron-Terada P G, Brzycki-Wessell M A, Dahms N M
Department of Biochemistry, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.
J Biol Chem. 1998 Aug 28;273(35):22358-66. doi: 10.1074/jbc.273.35.22358.
The two mannose 6-phosphate (Man-6-P) binding sites of the insulin-like growth factor-II/mannose 6-phosphate receptor (IGF-II/MPR) have been localized to domains 1-3 and 7-9, and studies have shown that Arg435 in domain 3 and Arg 1334 in domain 9 are essential for Man-6-P binding. To determine whether the IGF-II/MPR containing a single Man-6-P binding site is functional, clonal mouse L cell lines stably transfected with either mutant bovine IGF-II/MPR cDNA, containing substitutions at position 435 and/or 1334, or the wild type receptor cDNA were assayed for their ability to sort lysosomal enzymes to the lysosome. Mutant receptors containing a single Man-6-P binding site were approximately 50% less efficient than the wild type receptor in the overall targeting of lysosomal enzymes to the lysosome. Mutant receptors containing a substitution at Arg1334 (Dom9(Ala)), in contrast to those containing a substitution at Arg435 (Dom3(Ala)), were unable to target cathepsin D and beta-hexosaminidase to the lysosome. Equilibrium binding assays using 125I-labeled beta-glucuronidase demonstrated that Dom3(Ala) and Dom9(Ala) had a Kd of 2.0 and 4.3 nM, respectively. In addition, Dom3(Ala), unlike Dom9(Ala), was unable to completely dissociate from ligand under acidic pH conditions. These data indicate that the two Man-6-P binding sites of the IGF-II/MPR are not functionally equivalent.
胰岛素样生长因子-II/甘露糖6-磷酸受体(IGF-II/MPR)的两个甘露糖6-磷酸(Man-6-P)结合位点已定位至结构域1-3和7-9,并且研究表明,结构域3中的Arg435和结构域9中的Arg 1334对于Man-6-P结合至关重要。为了确定含有单个Man-6-P结合位点的IGF-II/MPR是否具有功能,对稳定转染了突变型牛IGF-II/MPR cDNA(在第435位和/或1334位含有取代)或野生型受体cDNA的克隆小鼠L细胞系进行了溶酶体酶向溶酶体分选能力的检测。含有单个Man-6-P结合位点的突变型受体在将溶酶体酶整体靶向至溶酶体方面的效率比野生型受体低约50%。与含有Arg435取代(Dom3(Ala))的突变型受体相比,含有Arg1334取代(Dom9(Ala))的突变型受体无法将组织蛋白酶D和β-己糖胺酶靶向至溶酶体。使用125I标记的β-葡萄糖醛酸酶进行的平衡结合试验表明,Dom3(Ala)和Dom9(Ala)的解离常数(Kd)分别为2.0和4.3 nM。此外,与Dom9(Ala)不同,Dom3(Ala)在酸性pH条件下无法与配体完全解离。这些数据表明,IGF-II/MPR的两个Man-6-P结合位点在功能上并不等同。