Lai A, Gibson A, Hopkins C R, Trowbridge I S
Department of Cancer Biology, The Salk Institute, San Diego, California 92186-5800, USA.
J Biol Chem. 1998 Feb 6;273(6):3732-9. doi: 10.1074/jbc.273.6.3732.
We have investigated the intracellular trafficking of a chimeric molecule consisting of the cytoplasmic domain of the beta-amyloid precursor protein (APP) and the transmembrane region and external domain of the human transferrin receptor (TR) in Madin-Darby canine kidney cells. Newly synthesized APP-TR chimeras are selectively targeted to the basolateral surface by a tyrosine-dependent sorting signal in the APP cytoplasmic tail. APP-TR chimeras are then rapidly internalized from the basolateral surface and a significant fraction ( approximately 20-30%) are degraded. Morphological studies show that APP-TR chimeras internalized from the basolateral surface are found in tubulo-vesicular endosomal elements, internal membranes of multivesicular bodies, and lysosomes. APP-TR chimeras are also found in 60-nm diameter vesicles previously shown to selectively deliver wild-type TR to the basolateral surface; this result is consistent with the fact that 90% of internalized chimeras that are not degraded are selectively recycled back to the basolateral surface. APP-TR chimeras internalized from the apical surface are selectively transcytosed to the basolateral surface underscoring the importance of basolateral sorting in the endocytic pathway for maintaining the polarized phenotype. Tyr-653, an important element of the YTSI internalization signal in the APP cytoplasmic domain, is required for basolateral sorting in the biosynthetic and endocytic pathways. However, the structural features for basolateral sorting differ from those required for internalization.
我们研究了一种嵌合分子在犬肾细胞(Madin-Darby canine kidney cells)中的细胞内运输情况。该嵌合分子由β-淀粉样前体蛋白(APP)的胞质结构域与人转铁蛋白受体(TR)的跨膜区及胞外结构域组成。新合成的APP-TR嵌合体通过APP胞质尾部的酪氨酸依赖分选信号选择性地靶向基底外侧表面。APP-TR嵌合体随后从基底外侧表面迅速内化,并且相当一部分(约20%-30%)被降解。形态学研究表明,从基底外侧表面内化的APP-TR嵌合体存在于管状小泡状内体元件、多泡体的内膜和溶酶体中。APP-TR嵌合体也存在于先前显示能将野生型TR选择性递送至基底外侧表面的直径60 nm的小泡中;这一结果与以下事实一致,即90%未被降解的内化嵌合体被选择性地再循环回基底外侧表面。从顶端表面内化的APP-TR嵌合体被选择性地跨细胞转运至基底外侧表面,这突出了基底外侧分选在维持极化表型的内吞途径中的重要性。Tyr-653是APP胞质结构域中YTSI内化信号的一个重要元件,在生物合成和内吞途径的基底外侧分选中是必需的。然而,基底外侧分选的结构特征与内化所需的结构特征不同。