Teplyakov Alexey, Liu Sijiu, Lu Zhibing, Howard Andrew, Dunaway-Mariano Debra, Herzberg Osnat
Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville, Maryland 20850, USA.
Biochemistry. 2005 Dec 20;44(50):16377-84. doi: 10.1021/bi051779y.
Expression of the PSR132 protein from Dianthus caryophyllus (carnation, clover pink) is induced in response to ethylene production associated with petal senescence, and thus the protein is named petal death protein (PDP). Recent work has established that despite the annotation of PDP in sequence databases as carboxyphosphoenolpyruvate mutase, the enzyme is actually a C-C bond cleaving lyase exhibiting a broad substrate profile. The crystal structure of PDP has been determined at 2.7 A resolution, revealing a dimer-of-dimers oligomeric association. Consistent with sequence homology, the overall alpha/beta barrel fold of PDP is the same as that of other isocitrate lyase/PEP mutase superfamily members, including a swapped eighth helix within a dimer. Moreover, Mg(2+) binds in the active site of PDP with a coordination pattern similar to that seen in other superfamily members. A compound, covalently bound to the catalytic residue, Cys144, was interpreted as a thiohemiacetal adduct resulting from the reaction of glutaraldehyde used to cross-link the crystals. The Cys144-carrying flexible loop that gates access to the active site is in the closed conformation. Models of bound substrates and comparison with the closed conformation of isocitrate lyase and 2-methylisocitrate lyase revealed the structural basis for the broad substrate profile of PDP.
石竹(康乃馨、三叶草粉)中PSR132蛋白的表达是在与花瓣衰老相关的乙烯产生时被诱导的,因此该蛋白被命名为花瓣死亡蛋白(PDP)。最近的研究表明,尽管在序列数据库中PDP被注释为羧基磷酸烯醇丙酮酸变位酶,但该酶实际上是一种具有广泛底物谱的C-C键裂解裂合酶。PDP的晶体结构已在2.7 Å分辨率下确定,揭示了一种二聚体的寡聚体结合。与序列同源性一致,PDP的整体α/β桶状折叠与其他异柠檬酸裂合酶/PEP变位酶超家族成员相同,包括二聚体内交换的第八个螺旋。此外,Mg(2+)以与其他超家族成员类似的配位模式结合在PDP的活性位点。一种与催化残基Cys144共价结合的化合物被解释为戊二醛用于交联晶体反应产生的硫代半缩醛加合物。控制进入活性位点的携带Cys144的柔性环处于闭合构象。结合底物的模型以及与异柠檬酸裂合酶和2-甲基异柠檬酸裂合酶闭合构象的比较揭示了PDP广泛底物谱的结构基础。