Tao Jiangchuan, Shumay Elena, McLaughlin Stuart, Wang Hsien-yu, Malbon Craig C
Department of Pharmacology, School of Medicine, Heath Sciences Center, State University of New York, Stony Brook, New York 11794-8651, USA.
J Biol Chem. 2006 Aug 18;281(33):23932-44. doi: 10.1074/jbc.M601813200. Epub 2006 Jun 8.
The AKAP gravin is a scaffold for protein kinases, phosphatases, and adaptor molecules obligate for resensitization and recycling of beta2-adrenergic receptors. Gravin binds to the receptor through well characterized protein-protein interactions. These interactions are facilitated approximately 1000-fold when gravin is anchored to the cytoplasmic leaflet of the plasma membrane. Although the N-terminal region (approximately 550 residues) is highly negatively charged and probably natively unfolded, it could anchor gravin to the inner leaflet through hydrophobic insertion of its N-terminal myristate and electrostatic binding of three short positively charged domains (PCDs). Loss of the site of N-myristoylation was found to affect neither AKAP macroscopic localization nor AKAP function. Synthetic peptides corresponding to PCD1-3 bound in vitro to unilamellar phospholipid vesicles with high affinity, a binding reversed by calmodulin in the presence of Ca2+. In vivo gravin localization is regulated by intracellular Ca2+, a function mapping to the N terminus of the protein harboring PCD1, PCD2, and PCD3. Mutation of any two PCDs eliminates membrane association of the non-myristoylated gravin, the sensitivity to Ca2+/calmodulin, and the ability of this scaffold to catalyze receptor resensitization and recycling.
A激酶附着蛋白gravin是一种蛋白质激酶、磷酸酶和衔接分子的支架,对β2 - 肾上腺素能受体的再敏感化和循环利用至关重要。Gravin通过已明确的蛋白质 - 蛋白质相互作用与受体结合。当gravin锚定在质膜的细胞质小叶上时,这些相互作用会增强约1000倍。尽管N端区域(约550个残基)高度带负电荷且可能天然无序,但它可以通过其N端肉豆蔻酸的疏水插入以及三个短的带正电荷结构域(PCDs)的静电结合将gravin锚定到内膜小叶上。发现N - 肉豆蔻酰化位点的缺失既不影响A激酶附着蛋白的宏观定位也不影响其功能。与PCD1 - 3对应的合成肽在体外以高亲和力与单层磷脂囊泡结合,在Ca2 +存在下这种结合可被钙调蛋白逆转。在体内,gravin的定位受细胞内Ca2 +调节,该功能定位于含有PCD1、PCD2和PCD3的蛋白质的N端。任何两个PCD的突变都会消除非肉豆蔻酰化gravin的膜结合、对Ca2 + /钙调蛋白的敏感性以及该支架催化受体再敏感化和循环利用的能力。