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1.
以6-氯嘌呤,6-氯嘌呤核苷或8-溴嘌呤核苷为原料,微波辐射下与水合肼反应生成相应的6-肼嘌呤(2a~2e),6-肼嘌呤核苷(2f和2g)或8-肼嘌呤核苷(2h和2i);2在微波辐射下经Wolff-Kishner-HuangMinlon还原反应得到6-脱氯嘌呤,6-脱氯嘌呤核苷或8-脱溴嘌呤核苷,总收率46%~83%,其结构经1HNMR和13CNMR表征。  相似文献   

2.
以多聚磷酸(PPA)为催化剂, 对取代6-苄硫基嘧啶与羧酸的反应进行了研究. 当羧酸为脂肪酸时, 在60-80 ℃下反应, 可选择性地得到6-苄硫基嘌呤衍生物; 改用芳香酸时, 则得到硫上的苄基被脱除的6-巯基嘌呤和嘧啶并[5,4-d]噻唑; 如果将嘧啶4-位上伯胺取代基变成仲胺取代基, 只得到嘧啶并[5,4-d]噻唑. 通过双途径反应机理对上述现象进行了解释.  相似文献   

3.
综述了近年来有关5-去氮嘌呤核糖核苷类似物作为潜在生物活性(如抗病毒、抗肿瘤等)先导化合物的设计与合成研究进展.指出该类先导物的设计与合成主要基于以下两种途径:一是在去氮嘌呤碱基的4-位或5-位引入不同的取代基;二是在去氮嘌呤碱基的4-位或5-位引入不同取代基的同时,对核苷中的糖基进行修饰.并从这两种途径着手介绍了近年来该领域所取得的主要研究进展.  相似文献   

4.
N^3-嘌呤核苷由于可能同时被嘌呤和嘧啶代谢酶识别,因而有望作为双靶点药物应用于抗病毒治疗.报道了一种以α-(N^3-嘌呤)取代的环烷酮为原料,通过不对称氢转移反应实现动态动力学拆分,高收率高立体选择性地合成系列碳环N^3-嘌呤核苷化合物.该催化体系也适用于α-嘧啶取代的环烷酮底物,且产物通过进一步衍生,合成了2’-F-,Ac S-,N^3-修饰的碳环嘧啶核苷.  相似文献   

5.
N~3-嘌呤核苷由于可能同时被嘌呤和嘧啶代谢酶识别,因而有望作为双靶点药物应用于抗病毒治疗.报道了一种以α-(N~3-嘌呤)取代的环烷酮为原料,通过不对称氢转移反应实现动态动力学拆分,高收率高立体选择性地合成系列碳环N~3-嘌呤核苷化合物.该催化体系也适用于α-嘧啶取代的环烷酮底物,且产物通过进一步衍生,合成了2'-F-,Ac S-,N~3-修饰的碳环嘧啶核苷.  相似文献   

6.
报道了9-(β-D-2'-脱氧核糖基)-6-甲基嘌呤合成的新方法.以肌苷1为原料,经酯化、氯化、氨解得6-氯嘌呤核苷(4),再经过羟基保护、6-位甲基化反应及脱保护反应得到关键中间体6-甲基嘌呤核苷7,用1,3-二氯-1,1,3,3-四异丙基二硅氧烷保护7核糖上的3,5-二羟基,2-羟基与苯氧基硫代甲酰氯反应后得到9,然后与氢化三正丁基锡[HSn(Bu-n)3]还原脱氧,最后脱保护得到目标化合物11.产物结构经MS,1HNMR,元素分析等鉴定.  相似文献   

7.
渠桂荣  夏然  杨西宁  王东超 《合成化学》2007,15(6):756-758,762
8-溴嘌呤核苷与亲核试剂在水溶液中,于400W,95℃微波辐射5min合成了10种8-取代嘌呤核苷,收率72%~92%,其结构经1HNMR和13CNMR表征。  相似文献   

8.
研究了有机溶剂中酶促核苷类化合物3'-酯高区域选择性的合成反应,探讨了核苷结构中R1位取代基变化对酶促酰化反应的影响.结果表明:来源于Burkholderia cepacia的固定化脂肪酶PS IM在有机溶剂THF中的催化效果最佳,且酰化反应的优势位点均为3'-羟基(90%~>99%);随着核苷中R1位取代基由F变化至CF3或酰基供体链长由C6增加至C14,该酰化反应的3'-区域选择性均呈现逐渐增加的趋势,构效关系分析表明,这主要源于PS IM 酶特殊的活性中心结构.  相似文献   

9.
蔡汉成  尹端沚  张岚  汪勇先 《有机化学》2006,26(12):1709-1713
报道了2-氨基-6-氟-9-(4-羟基-3-羟甲基丁基)嘌呤(1)的合成, 通过对起始原料2-氨基-6-氯-9-(4-乙酰氧基-3-乙酰氧甲基丁基)嘌呤(2)水解脱去乙酰基, 得到2-氨基-6-氯-9-(4-羟基-3-羟甲基丁基)嘌呤(3). 化合物3与三甲胺乙醇溶液在混合溶剂[V(THF)∶V(DMF)=3∶1]中反应得到相应的氯化铵盐4, 然后与KF在DMF溶剂中反应, 得到化合物1. 产品经UV-vis, IR, 1H NMR, 19F NMR和MS表征. 考察了反应温度、氟化试剂等因素对氟化反应的影响, 为6位含氟的嘌呤核苷类化合物的合成提供了一种直接、简易的新方法.  相似文献   

10.
本文设计并合成了两个含手性边臂的β-环糊精衍生物,在水溶液中它们与钌形成配合物,该配合物成功的将1-(9’-嘌呤基)-2-丙酮还原得到1-(9’-嘌呤基)-2-丙醇。反应给出了高的分离产率和一定的对映体选择性,为核苷类化合物的合成提供了新的思路。  相似文献   

11.
New and unusual developments related to the chemistry of O6-(benzotriazol-1-yl)inosine derivatives are reported. First, a simple, scalable method for their syntheses via the use of PPh3/I2/HOBt has been developed and has been mechanistically investigated by 31P(1H) NMR. Studies were then conducted into a unique oxygen transfer reaction between O6-(benzotriazol-1-yl)inosine nucleosides and bis(pinacolato)diboron (pinB-Bpin) leading to the formation of C-6 (benzotriazol-1-yl)purine nucleoside derivatives and pinB-O-Bpin. This reaction has been investigated by 11B(1H) NMR and compared to pinB-O-Bpin obtained by oxidation of pinB-Bpin. The structures of the C-6 (benzotriazol-1-yl)purine nucleosides have been unequivocally established via Pd-mediated C-N bond formation between bromo purine nucleosides and 1H-benzotriazole. Finally, short and extremely simple synthesis of 1,N6-ethano- and 1,N6-propano-2'-deoxyadenosine are reported in order to demonstrate the synthetic versatility of the O6-(benzotriazol-1-yl)inosine nucleoside derivatives for the assembly of relatively complex compounds.  相似文献   

12.
There are reports in the literature that placement of an arylamino side chain at the C-2 position of purine nucleosides produces compounds capable of inhibiting DNA polymerase. To evaluate the potential of this class of compounds as antiviral agents that act by inhibiting viral DNA polymerase, ara-carbocyclic purine nucleosides possessing a 4-(l-butyl)phenylamino and a 3,5-dichlorophenylamino substituent at C-2 were chosen as the prototype structures and have been prepared from 2,4,6-trichloropyrimidine in 6 steps. For the antiviral analysis, human cytomegalovirus served as the principal virus since it expresses a virally specific DNA polymerase. None of the compounds showed activity towards this virus, but they were found to display some toxicity towards one or more cell lines.  相似文献   

13.
A novel approach to the synthesis of purine nucleoside analogues, featuring the reaction of the C6-N1-O aldonitrone moiety of 9-ribosyl-purine (nebularine) N1-oxide with some representative dipolarophiles, as well as Grignard reagents, is reported. Addition of Grignard reagents to the electrophilic C-6 carbon of the substrate allows a facile access to C-6 C-substituted purine nucleosides without using metal catalysts. 1,3-Dipolar cycloaddition processes lead to novel nucleoside analogues via opening, degradation or ring-enlargement of the pyrimidine ring of the base system of the first-formed isoxazoline or isoxazolidine cycloadduct.  相似文献   

14.
O(6)-(Benzotriazol-1H-yl)guanosine and its 2'-deoxy analogue are readily converted to the O(6)-allyl derivatives that upon diazotization with t-BuONO and TMS-N(3) yield the C-2 azido derivatives. We have previously analyzed the solvent-dependent azide·tetrazole equilibrium of C-6 azidopurine nucleosides, and in contrast to these, the O(6)-allyl C-2 azido nucleosides appear to exist predominantly in the azido form, relatively independent of solvent polarity. In the presently described cases, the tetrazole appears to be very minor. Consistent with the presence of the azido functionality, each neat C-2 azide displayed a prominent IR band at 2126-2130 cm(-1). A screen of conditions for the ligation of the azido nucleosides with alkynes showed that CuCl in t-BuOH/H(2)O is optimal, yielding C-2 1,2,3-triazolyl nucleosides in 70-82% yields. Removal of the silyl groups with Et(3)N·3HF followed by deallylation with PhSO(2)Na/Pd(PPh(3))(4) gave the C-2 triazolylinosine nucleosides. In a continued demonstration of the versatility of O(6)-(benzotriazol-1H-yl)purine nucleosides, one C-2 triazolylinosine derivative was converted to two adenosine analogues via these intermediates, under mild conditions. Products were desilylated for biological assays. The two C-2 triazolyl adenosine analogues demonstrated pronounced antiproliferative activity in human ovarian and colorectal carcinoma cell cultures. When evaluated for antiviral activity against a broad spectrum of DNA and RNA viruses, some of the C-2 triazolylinosine derivatives showed modest inhibitory activity against cytomegalovirus.  相似文献   

15.
Novel C6-phosphonated purine nucleosides were obtained in good to excellent isolated yields by the simple and catalyst-free SNAr-Arbuzov reaction of trialkyl phosphite with 6-choloropurine nucleosides, including a series of nonsugar carbon nucleosides. Shorter reaction times were needed, and substantially higher yields were obtained under microwave irradiation conditions compared with conventional heating conditions.  相似文献   

16.
Silhár P  Pohl R  Votruba I  Hocek M 《Organic letters》2004,6(19):3225-3228
[reaction: see text] A facile and efficient methodology of the synthesis of 6-(hydroxymethyl)purine derivatives (bases and nucleosides) was developed based on Pd-catalyzed cross-coupling reactions of 6-halopurines with acyloxymethylzinc iodides followed by deprotection. Several title compounds are inhibitors of adenosine deaminase and exert cytostatic activity.  相似文献   

17.
A highly convergent free radical coupling of alkyl iodides and oximes, mediated by bis(trimethylstannyl) benzopinacolate (8), has been utilized to prepare a series of dimeric nucleosides as mimics of natural nucleic acids. The systematic optimization of the reaction conditions allowed for the single-step conversion of the appropriate iodides and oximes into the 2'-deoxy dimers 9 in moderate to excellent yields. For example, the reaction of 3'-deoxy-3'-iodo-5'-(triphenylmethyl)thymidine (6a) with 3'-O-(tert-butyldiphenylsilyl)-5'-O-(methyleneimino)thymidine (7a) in the presence of 8 in degassed benzene gave an 81% yield of 3'-de(oxyphosphinico)-3'-(methyleneimino)-5'-O-(triphenylmethyl)thymidylyl-(3'-->5')-3'-O-(tert-butyldiphenylsilyl)thymidine (9a). Similarly prepared were dimers containing both pyrimidine (thymine, 5-methylcytosine) and purine (adenine, guanine) bases. The reaction was highly stereoselective, giving only a single dimeric species having the ribo-configuration of the newly introduced C-3'-branched methylene moiety. Also prepared were dimers 16, incorporating 2'-O-methyl ribonucleosides in both halves of the dimer. This required the synthesis of 3'-deoxy-3'-iodo-2'-O-methyl nucleosides 12 as well as 2'-O-methyl-5'-O-methyleneimino nucleosides 15. For example, 5'-O-(tert-butyldiphenylsilyl)-3'-deoxy-3'-iodo-2'-O-methyl-5-methyluridine (12e) was prepared in 80% yield by displacement of the corresponding triflate with Bu(4)NI. Also prepared were the suitably protected 3'-deoxy-3'-iodo adenosine and guanosine derivatives. Compounds 15 were prepared in high yield by a regioselective Mitsunobu reaction to give the corresponding 5'-O-phthalimido nucleosides 13, which were subsequently converted to the requisite oximes 15. In the 2'-O-methyl series, the pinacolate coupling reaction proceeded with efficiency equal to that observed for the 2'-deoxy series 9, but with slightly less stereoselectivity, giving predominantly the C-3'ribo products 16, contaminated with 5-25% of the epimeric material. Mixed base dimers containing both pyrimidine and purine bases at all possible positions, including purine-purine dimers were prepared. The hydroxylamine or methyleneimino (MI) backbone of several representative dimers so prepared was converted via methylation to give the corresponding methylenemethylimino (MMI)-linked compounds, which are novel phosphate surrogates for use in antisense oligonucleotides.  相似文献   

18.
GR Qu  L Liang  HY Niu  WH Rao  HM Guo  JS Fossey 《Organic letters》2012,14(17):4494-4497
A novel protocol for a Cu-catalyzed direct C((sp(2)))-H activation/intramolecular amination reaction of 6-anilinopurine nucleosides has been developed. This approach provides a new access to a variety of multiheterocyclic compounds from purine compounds via Cu-catalyzed intramolecular N-H bond tautomerism which are endowed with fluorescence.  相似文献   

19.
Carbohydrate-derived substrates having (i) C-5 nitrone and C-3-O-allyl, (ii) C-4 vinyl and a C-3-O-tethered nitrone, and (iii) C-5 nitrone and C-4-allyloxymethyl generated tetracyclic isoxazolidinooxepane/-pyran ring systems upon intramolecular nitrone cycloaddition reactions. Deprotection of the 1,2-acetonides of these derivatives followed by introduction of uracil base via Vorbrüggen reaction condition and cleavage of the isooxazolidine rings as well as of benzyl groups by transfer hydrogenolysis yielded an oxepane ring containing bicyclic and spirocyclic nucleosides. The corresponding oxepane based nucleoside analogues were prepared by cleavage of isoxazolidine and furanose rings, coupling of the generated amino functionalities with 5-amino-4,6-dichloropyrimidine, cyclization to purine rings, and finally aminolysis.  相似文献   

20.
The 8-(arylamino)-2'-deoxyguanosines, or C-8 adducts, are the major adducts formed by reaction of N-arylnitrenium ions derived from carcinogenic and mutagenic amines with 2'-deoxyguanosine (d-G) and guanosine residues of DNA. The hydrolysis kinetics of three C-8 adducts 1a-c were determined by UV and HPLC methods at 20 degrees C under acidic, neutral, and mildly alkaline conditions. At pH < 2 the dominant hydrolysis process is spontaneous cleavage of the C-N bond of the doubly protonated substrate, 1H(2)(+2) (Scheme 2). The C-8 adducts are 2- to 5-fold more reactive than d-G under these conditions. At 3 < pH < 6 the hydrolysis kinetics are dominated by cleavage of the C-N bond of the monoprotonated nucleoside 1H(+). Under these conditions the hydrolysis kinetics are accelerated by 40- to 1300-fold over that of d-G. The rate increase appears to be caused by a combination of steric acceleration of C-N bond cleavage and a decrease in the ionization constant of 1H(+), K(a1), due to the electron-donating properties of the arylamino C-8 substituent. Under neutral pH conditions a slow (k(obs) approximately 10(-8) s(-1) to 5 x 10(-7) s(-1)) spontaneous cleavage of the C-N bond of the neutral nucleoside, 1, occurs that has not been previously reported for simple purine nucleosides. Finally, under mildly alkaline conditions a process consistent with spontaneous decomposition of the anion 1(-) or OH(-)-induced decomposition of 1 is observed. The latter process has been observed for other purine nucleosides, including the closely related 1d, and involves nucleophilic attack of OH(-) on C-8 to cleave the imidazole ring of the purine.  相似文献   

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