Cosson Pierre, Ravazzola Mariella, Varlamov Oleg, Söllner Thomas H, Di Liberto Maurizio, Volchuk Allen, Rothman James E, Orci Lelio
Department of Cell Physiology and Metabolism, University of Geneva Medical School, 1211 Geneva 4, Switzerland.
Proc Natl Acad Sci U S A. 2005 Oct 11;102(41):14647-52. doi: 10.1073/pnas.0507394102. Epub 2005 Sep 30.
Localization of a membrane protein in a subcellular compartment can be achieved by its retention in the compartment or by its continuous transport toward this compartment. Previous results have suggested that specific enzymes are localized in the Golgi apparatus at least in part by selective retention and exclusion from transport vesicles. However, the function of some Golgi SNARE (soluble N-ethylmaleimide-sensitive factor attachment protein receptor) proteins is not compatible with their exclusion from transport vesicles. To help understand the mechanism accounting for the localization of SNARE proteins in the Golgi apparatus, we analyzed their lateral distribution in the Golgi cisternae and their incorporation into transport vesicles. According to our results, all SNARE proteins are efficiently incorporated into transport vesicles, indicating that the localization of SNARE proteins in the Golgi apparatus is not based on a static retention mechanism. Detailed analysis suggested that incorporation into transport vesicles was more efficient for SNARE proteins restricted to the cis face of the Golgi as compared with SNAREs present at the trans face. Furthermore, overexpression of a cis-Golgi SNARE protein altered concomitantly its incorporation in transport vesicles and its intra-Golgi localization. These observations suggest that, contrary to resident Golgi enzymes, SNARE proteins are localized in the Golgi apparatus as the result of a dynamic transport equilibrium.
膜蛋白在亚细胞区室中的定位可通过其在该区域的保留或通过其持续向该区域的转运来实现。先前的结果表明,特定的酶至少部分地通过选择性保留和从转运囊泡中排除而定位在高尔基体中。然而,一些高尔基体SNARE(可溶性N-乙基马来酰亚胺敏感因子附着蛋白受体)蛋白的功能与它们从转运囊泡中排除的情况不相符。为了帮助理解SNARE蛋白在高尔基体中定位的机制,我们分析了它们在高尔基体潴泡中的侧向分布以及它们掺入转运囊泡的情况。根据我们的结果,所有SNARE蛋白都能有效地掺入转运囊泡,这表明SNARE蛋白在高尔基体中的定位不是基于静态保留机制。详细分析表明,与存在于反面的SNARE相比,局限于高尔基体正面的SNARE蛋白掺入转运囊泡的效率更高。此外,顺面高尔基体SNARE蛋白的过表达同时改变了其在转运囊泡中的掺入情况及其在高尔基体内的定位。这些观察结果表明,与驻留高尔基体酶相反,SNARE蛋白是动态转运平衡的结果而定位在高尔基体中。