Mizuno Emi, Kawahata Kensuke, Okamoto Aya, Kitamura Naomi, Komada Masayuki
Department of Biological Sciences, Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8501.
J Biochem. 2004 Mar;135(3):385-96. doi: 10.1093/jb/mvh046.
Members of the STAM family of proteins, STAM1 and STAM2, are associated with Hrs through their coiled-coil regions. Both Hrs and STAM bind ubiquitin and are involved in endosomal sorting of ubiquitinated cargo proteins for trafficking to the lysosome. Here we examined the biological significance of STAM binding to Hrs. Endogenous STAM1 and STAM2 were mostly localized on the early endosome, suggesting that they are resident endosomal proteins. A STAM2 mutant that lacks the coiled-coil region and does not bind Hrs, in contrast, mislocalized to the cytoplasm. Deletion of a region located N-terminal to the coiled-coil region and conserved among STAM proteins also severely affected Hrs binding and the endosomal localization of STAM2, suggesting that this region is also involved in these activities. Depletion of endogenous Hrs by RNA interference similarly caused the mislocalization of exogenously expressed STAM2 to the cytoplasm. These results indicate that STAM is localized to the early endosome by binding to Hrs on the target membrane. In addition, the expression level of endogenous STAM proteins was drastically reduced in Hrs-depleted cells, suggesting that STAM is stabilized by binding to Hrs. Finally, STAM2 mutants lacking the Hrs-binding activity were defective in causing the enlargement of early endosomes, accumulating ubiquitinated proteins on this aberrant organelle, and inhibiting the degradation of ligand-activated epidermal growth factor receptors, suggesting that the association with Hrs is a prerequisite for STAM function.
STAM 蛋白家族成员 STAM1 和 STAM2 通过其卷曲螺旋区域与 Hrs 相关联。Hrs 和 STAM 都结合泛素,并参与泛素化货物蛋白的内体分选,以便运输到溶酶体。在这里,我们研究了 STAM 与 Hrs 结合的生物学意义。内源性 STAM1 和 STAM2 大多定位于早期内体,表明它们是内体驻留蛋白。相比之下,一个缺乏卷曲螺旋区域且不与 Hrs 结合的 STAM2 突变体则错误定位于细胞质。删除卷曲螺旋区域 N 端且在 STAM 蛋白中保守的区域也严重影响 Hrs 结合以及 STAM2 的内体定位,表明该区域也参与这些活动。通过 RNA 干扰耗尽内源性 Hrs 同样导致外源表达的 STAM2 错误定位于细胞质。这些结果表明,STAM 通过与靶膜上的 Hrs 结合而定位于早期内体。此外,在 Hrs 耗尽的细胞中,内源性 STAM 蛋白的表达水平急剧降低,表明 STAM 通过与 Hrs 结合而稳定。最后,缺乏 Hrs 结合活性的 STAM2 突变体在导致早期内体扩大、使泛素化蛋白在这个异常细胞器上积累以及抑制配体激活的表皮生长因子受体降解方面存在缺陷,表明与 Hrs 的结合是 STAM 发挥功能的先决条件。