Dutta Shreyasi, Lahiri Shibojyoti, Banerjee Amrita, Saha Shriya, Dasgupta Dipak
a Biophysics & Structural Genomics Division , Saha Institute of Nuclear Physics , Block-AF, Sector-I, Bidhan Nagar, Kolkata - 700 064 , India.
J Biomol Struct Dyn. 2015;33(2):434-46. doi: 10.1080/07391102.2014.887031. Epub 2014 Feb 21.
Mithramycin (MTR), an aureolic acid group of antitumor antibiotic is used for the treatment of several types of tumors. We have reported here the association of MTR with an essential micronutrient, manganese (Mn(2+)). Spectroscopic methods have been used to characterize and understand the kinetics and mechanism of complex formation between them. MTR forms a single type of complex with Mn(2+) in the mole ratio of 2:1 [MTR: Mn(2+)] via a two step kinetic process. Circular dichroism (CD) spectroscopic study indicates that the complex [(MTR)2 Mn(2+)] has a right-handed twist conformation similar in structure with the complexes reported for Mg(2+) and Zn(2+). This conformation allows binding via minor groove of DNA with (G, C) base preference during the interaction with double-stranded B-DNA. Using absorbance, fluorescence, and CD spectroscopy we have shown that [(MTR)2 Mn(2+)] complex binds to double-stranded DNA with an apparent dissociation constant of 32 μM and binding site size of 0.2 (drug/nucleotide). It binds to chicken liver chromatin with apparent dissociation constant value 298 μM. Presence of histone proteins in chromatin inhibits the accessibility of the complex for chromosomal DNA. We have also shown that MTR binds to Mn(2+) containing metalloenzyme manganese superoxide dismutase from Escherichia coli.
光辉霉素(MTR)是一种金霉素类抗肿瘤抗生素,用于治疗多种类型的肿瘤。我们在此报告了MTR与一种必需的微量营养素锰(Mn(2+))之间的关联。已使用光谱方法来表征和理解它们之间形成复合物的动力学和机制。MTR通过两步动力学过程与Mn(2+)以2:1的摩尔比[MTR:Mn(2+)]形成单一类型的复合物。圆二色性(CD)光谱研究表明,复合物[(MTR)2Mn(2+)]具有右手扭曲构象,其结构与报道的Mg(2+)和Zn(2+)的复合物相似。这种构象允许在与双链B-DNA相互作用期间通过DNA的小沟结合,偏好(G,C)碱基。使用吸光度、荧光和CD光谱,我们表明[(MTR)2Mn(2+)]复合物与双链DNA结合,表观解离常数为32μM,结合位点大小为0.2(药物/核苷酸)。它与鸡肝染色质结合,表观解离常数为298μM。染色质中组蛋白的存在会抑制复合物对染色体DNA的可及性。我们还表明,MTR与来自大肠杆菌的含锰金属酶锰超氧化物歧化酶结合。