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II型肌醇多磷酸5-磷酸酶INPP5B定位于早期分泌途径。

Targeting of the type II inositol polyphosphate 5-phosphatase INPP5B to the early secretory pathway.

作者信息

Williams Catrin, Choudhury Rawshan, McKenzie Eddie, Lowe Martin

机构信息

Faculty of Life Sciences, University of Manchester, The Michael Smith Building, Oxford Road, Manchester M13 9PT, UK.

出版信息

J Cell Sci. 2007 Nov 15;120(Pt 22):3941-51. doi: 10.1242/jcs.014423. Epub 2007 Oct 23.

Abstract

The inositol polyphosphate 5-phosphatase INPP5B is closely related to the Lowe syndrome protein OCRL1, sharing a similar substrate specificity, domain organisation and an ability to compensate for loss of OCRL1 in knockout mice. The cellular localisation and functions of INPP5B have remained poorly defined until recently, when a role within the endocytic pathway was suggested. Here, we report that INPP5B is also localised to the early secretory pathway including the Golgi apparatus and ER-to-Golgi intermediate compartment (ERGIC). Consistent with this localisation, INPP5B binds to specific RAB proteins within the secretory pathway, and mutational analysis indicates that RAB binding is required for efficient Golgi targeting of INPP5B. Unlike OCRL1, INPP5B interacts with neither clathrin nor alpha-adaptin and is largely absent from clathrin-coated intermediates. Expression of INPP5B but not OCRL1 alters the distribution of the cycling protein ERGIC53 when cells are incubated at low temperature (15 degrees C) or in the presence of brefeldin A, causing ERGIC53 to accumulate in the ERGIC, with a concomitant loss from the ER. Our data suggest a role for INPP5B in retrograde ERGIC-to-ER transport and imply that it has functions distinct from those of OCRL1 within both the secretory and endocytic pathways.

摘要

肌醇多磷酸5-磷酸酶INPP5B与洛氏综合征蛋白OCRL1密切相关,具有相似的底物特异性、结构域组织,并且能够补偿基因敲除小鼠中OCRL1的缺失。直到最近有研究表明INPP5B在内吞途径中发挥作用,其细胞定位和功能才得以明确。在此,我们报告INPP5B也定位于早期分泌途径,包括高尔基体和内质网-高尔基体中间区室(ERGIC)。与这种定位一致,INPP5B与分泌途径中的特定RAB蛋白结合,突变分析表明RAB结合是INPP5B高效靶向高尔基体所必需的。与OCRL1不同,INPP5B既不与网格蛋白也不与α-衔接蛋白相互作用,并且在网格蛋白包被的中间体中基本不存在。当细胞在低温(15摄氏度)下或在布雷菲德菌素A存在的情况下孵育时,INPP5B而非OCRL1的表达会改变循环蛋白ERGIC53的分布,导致ERGIC53在ERGIC中积累,同时在内质网中丢失。我们的数据表明INPP5B在ERGIC到内质网的逆行转运中发挥作用,并暗示它在分泌途径和内吞途径中具有与OCRL1不同的功能。

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