Shahabuddin M S, Gopal M, Raghavan Sathees C
Department of Studies and Research in Biochemistry, Kuvempu University, Shivagangotri, Davanagere-577 002, India; Department of Biochemistry, Indian Institute of Science, Bangalore-560012, India.
J Photochem Photobiol B. 2009 Jan 9;94(1):13-9. doi: 10.1016/j.jphotobiol.2008.09.001. Epub 2008 Sep 13.
Circular dichroism, hydrodynamic methods, absorbance and fluorescence titration's were employed to study the interaction of 8-chloropyrimido[4',5':4,5]thieno(2,3-b)quinolin-4(3H)-one (chloro-PTQ) and 4-morpholinopyrimido[4',5':4,5]thieno(2,3-b)quinoline (morpholino-PTQ) with DNA. The association constant of chloro-PTQ and morpholino-PTQ were of the order of 10(5) and 10(6) M(-1). The fluorescence properties at ionic strength of 10mM are best fit by the neighbor exclusion model, with Ki of 0.3 x 10(4) M(-1) to 3.2 x 10(6) M(-1). CD spectra indicate that stacking of these compounds with DNA induces strong helicity in the usually disordered structure of the double strand. Viscosity experiments with sonicated rod like DNA fragments, produced a calculated length of 2.4A/bound of chloro/morpholino-PTQ molecule. The binding of chloro/morpholino-PTQ to DNA increased the melting temperature by about 1.5-7.0 degrees C. The cytotoxicity of these compounds on K-562, HL-60, Colo-205 and B16F10 melanoma are quite similar and IC(50) was in the range of 1.1-8muM. The anticancer efficacy against B16F10 melanoma has provided evidence of major anticancer activity for morpholino-PTQ. Single or multiple i.p. doses of compounds showed high level of activity against the subcutaneous (s.c.) grafted B16 melanoma with a significant increase in life span (161% and 272%). The aim of this study was to analyze the physicochemical properties of the chloro/morpholino-PTQ in an attempt to understand their superior biological activity. This research offers a new intercalation functional group to DNA targeted drug design.
采用圆二色性、流体力学方法、吸光度和荧光滴定法研究了8-氯嘧啶并[4',5':4,5]噻吩并(2,3-b)喹啉-4(3H)-酮(氯代-PTQ)和4-吗啉代嘧啶并[4',5':4,5]噻吩并(2,3-b)喹啉(吗啉代-PTQ)与DNA的相互作用。氯代-PTQ和吗啉代-PTQ的缔合常数分别为10(5)和10(6) M(-1)量级。在离子强度为10mM时的荧光特性最符合邻位排斥模型,Ki为0.3×10(4) M(-1)至3.2×10(6) M(-1)。圆二色光谱表明,这些化合物与DNA的堆积在双链通常无序的结构中诱导了强烈的螺旋度。对超声处理的棒状DNA片段进行的粘度实验得出,氯代/吗啉代-PTQ分子的计算结合长度为2.4Å/个。氯代/吗啉代-PTQ与DNA的结合使解链温度升高了约1.5 - 7.0℃。这些化合物对K-562、HL-60、Colo-205和B16F10黑色素瘤的细胞毒性相当相似,IC(50)在1.1 - 8μM范围内。针对B16F10黑色素瘤的抗癌疗效为吗啉代-PTQ的主要抗癌活性提供了证据。单次或多次腹腔注射化合物对皮下移植的B16黑色素瘤显示出高水平的活性,显著延长了生存期(分别为161%和272%)。本研究的目的是分析氯代/吗啉代-PTQ的物理化学性质,以试图理解它们卓越的生物活性。这项研究为靶向DNA的药物设计提供了一个新的嵌入官能团。