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Binding partners for the COOH-Terminal appendage domains of the GGAs and gamma-adaptin

机译:GGA的COOH末端附件结构域和gamma-adaptin的结合伴侣

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The adaptor appendage domains are believed to act as binding platforms for coated vesicle accessory proteins. Using glutathione S-transferase pulldowns from pig brain cytosol, we find three proteins that can bind to the appendage domains of both the AP-1 gamma subunit and the GGAs: gamma-synergin and two novel proteins, p56 and p200. p56 elicited better antibodies than p200 and was generally more tractable. Although p56 and gamma-synergin bind to both GGA and gamma appendages in vitro, immunofluorescence labeling of nocodazole-treated cells shows that p56 colocalizes with GGAs on TGN46-positive membranes, whereas gamma-synergin colocalizes with AP-1 primarily on a different membrane compartment. Furthermore, in AP-1-deficient cells, p56 remains membrane-associated whereas gamma-synergin becomes cytosolic. Thus, p56 and gamma-synergin show very strong preferences for GGAs and AP-1, respectively, in vivo. However, the GGA and gamma appendages share the same fold as determined by x-ray crystallography, and mutagenesis reveals that the same amino acids contribute to their binding sites. By overexpressing wild-type GGA and gamma appendage domains in cells, we can drive p56 and gamma-synergin, respectively, into the cytosol, suggesting a possible mechanism for selectively disrupting the two pathways. [References: 45]
机译:据信衔接体附件结构域充当包被的囊泡辅助蛋白的结合平台。使用来自猪脑胞液的谷胱甘肽S-转移酶下拉,我们发现了三种可以与AP-1γ亚基和GGA的附件结构域结合的蛋白:γ-协同蛋白和两种新型蛋白p56和p200。与p200相比,p56产生更好的抗体,并且通常更易处理。尽管在体外p56和γ-synergin均与GGA和γ附肢结合,但诺考达唑处理的细胞的免疫荧光标记显示p56与TGA46阳性膜上的GGA共定位,而γ-synergin与AP-1主要在不同的膜区室共定位。 。此外,在AP-1缺乏的细胞中,p56保持与膜相关,而γ-协同蛋白变成胞质。因此,在体内,p56和γ-协同蛋白分别显示出对GGA和AP-1的强烈偏好。但是,GGA和γ附肢具有相同的折叠,如通过X射线晶体学测定的,诱变显示相同的氨基酸有助于它们的结合位点。通过在细胞中过表达野生型GGA和gamma附体域,我们可以分别将p56和gamma-synergin驱动到细胞质中,提示可能有选择地破坏这两个途径的机制。 [参考:45]

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