Bachmann André S, Duennebier Frederick F, Mocz Gabor
Cancer Research Center of Hawaii, Natural Products and Cancer Biology Program, University of Hawaii at Manoa, 1236 Lauhala Street, Honolulu, HI 96813, USA.
Gene. 2006 Apr 12;371(1):144-53. doi: 10.1016/j.gene.2005.11.023. Epub 2006 Feb 9.
Glycerophosphodiester phosphodiesterase (GDPD) catalyzes the hydrolysis of deacylated glycerophospholipids to glycerol phosphate and alcohol. A mammalian glycerophosphoinositol phosphodiesterase, GDE1/MIR16, was recently identified as an interacting protein of the regulator of G protein signaling 16 (RGS16) providing a link between phosphoinositide metabolism and G protein signal transduction. To further understand the function and properties of human GDE1, we determined its genomic organization and its biochemical and structural characteristics. GDE1 encodes a 331-residue protein with two hydrophobic domains and contains a GDE domain that shares strong homologies with GDE1-related proteins as well as bacterial GDPDs. The human GDE1 gene is located on chromosome 16p12-p11.2 and contains six exons and five introns. A molecular 3D model, which was built based on the crystal structure of Escherichia coli GDPD (1YDY), provides the first structural information of human GDE1 and suggests a TIM barrel core as typically found in bacterial GDPDs. Furthermore, a model of the putative catalytic motif within the GDE domain was nearly identical to the corresponding domain of GDPD and highlights the individual core residues Glu97, Asp99, and His112, which are crucial to maintaining GDE1 catalytic activity. These studies provide important new insights into understanding the function of GDE1 and GDE1-related proteins.
甘油磷酸二酯磷酸二酯酶(GDPD)催化脱酰基甘油磷脂水解生成甘油磷酸和醇。一种哺乳动物甘油磷酸肌醇磷酸二酯酶GDE1/MIR16,最近被鉴定为G蛋白信号调节因子16(RGS16)的相互作用蛋白,在磷酸肌醇代谢和G蛋白信号转导之间建立了联系。为了进一步了解人GDE1的功能和特性,我们确定了其基因组结构以及生化和结构特征。GDE1编码一个含有两个疏水结构域的331个残基的蛋白质,并包含一个与GDE1相关蛋白以及细菌GDPD具有高度同源性的GDE结构域。人GDE1基因位于16号染色体p12-p11.2上,包含6个外显子和5个内含子。基于大肠杆菌GDPD(1YDY)的晶体结构构建的分子三维模型,提供了人GDE1的首个结构信息,并表明其具有细菌GDPD中常见的TIM桶状核心。此外,GDE结构域内推定催化基序的模型与GDPD的相应结构域几乎相同,并突出了对维持GDE1催化活性至关重要的单个核心残基Glu97、Asp99和His112。这些研究为理解GDE1和GDE1相关蛋白的功能提供了重要的新见解。