Talaikytė Zita, Barauskas Justas, Niaura Gediminas, Svedaitė Irena, Butkus Eugenijus, Razumas Valdemaras, Nylander Tommy
Department of Bioelectrochemistry and Biospectroscopy, Institute of Biochemistry, Mokslininkų 12, LT-2600 Vilnius, Lithuania.
J Biol Phys. 2004 Mar;30(1):83-96. doi: 10.1023/B:JOBP.0000016569.40786.2e.
Interactions of adenosine 3':5'-cyclicmonophosphate (cAMP) andN(6),2'-O-dibutyryladenosine3':5'-cyclic monophosphate (dbcAMP) with alipid layer composed of monoolein-basedpreparation and dioleoylphosphatidylcholine (DOPC) wereinvestigated by small-angle X-raydiffraction (SAXD) and Raman spectroscopy.The reversed hexagonal (H(II))MO/DOPC/H(2)O phase of 65:15:20 wt.%composition was selected as a referencesystem. SAXD revealed that entrapment (atthe expense of water) of 3 wt.% cAMP intothe reference system did not change thepolymorphic form and structural parametersof the phase. The same content of dbcAMPinduced the transition from the H(II)phase to the reversed bicontinuous cubicphase of space group Ia3d. Thistransition is explained by the increase oflipid head-group area due to thepenetration of the acylated adenine groupof dbcAMP into the polar/apolar region oflipid layer. The conclusion is supported byRaman spectroscopy, showing thedisruption/weakening of hydrogen bonding inthe MO/DOPC-based matrix at the N1- andN3-sites of the dbcAMP adenine ring. Asdistinct from dbcAMP, cAMP remains mostlyin the water channels of the H(II)phase, although the phosphate residue ofnucleotide interacts with the quaternaryammonium group of DOPC. Both nucleotidesincrease the population of gaucheisomers in the DOPC choline group.
通过小角X射线衍射(SAXD)和拉曼光谱研究了3':5'-环磷酸腺苷(cAMP)和N(6),2'-O-二丁酰基腺苷3':5'-环磷酸(dbcAMP)与由单油酸酯基制剂和二油酰磷脂酰胆碱(DOPC)组成的脂质层的相互作用。选择65:15:20 wt.%组成的反相六角形(H(II))MO/DOPC/H₂O相作为参考体系。SAXD显示,将3 wt.%的cAMP包封到参考体系中(以水为代价)不会改变该相的多晶型形式和结构参数。相同含量的dbcAMP会诱导从H(II)相转变为空间群为Ia3d的反相双连续立方相。这种转变是由于dbcAMP的酰化腺嘌呤基团渗透到脂质层的极性/非极性区域,导致脂质头部基团面积增加所致。拉曼光谱支持了这一结论,显示在基于MO/DOPC的基质中,dbcAMP腺嘌呤环的N1和N3位点处的氢键被破坏/减弱。与dbcAMP不同,cAMP大部分保留在H(II)相的水通道中,尽管核苷酸的磷酸残基与DOPC的季铵基团相互作用。两种核苷酸都增加了DOPC胆碱基团中gauche异构体的数量。