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1.
For cross-linking DNA onto nitrocellulose or nylon membranes by using ordinary ultraviolet (UV) light, empirical optimization with respect to exposure time is crucial for obtaining complete hybridization signals. Longer than optimal UV exposure reduces the signal intensity particularly in the larger DNA fragments, whereas shorter exposure due to insufficient immobilization produces incomplete signals. Relevance of using ordinary source of UV light with respect to fixing DNA on a large number of circular filters during library screening is discussed.  相似文献   

2.
The characteristics of the UV-induced immobilization of oligonucleotides on nylon membranes and the efficiency of the enzymatic labeling of immobilized probes in heterophase identifying specific DNA sequences were studied. Oligonucleotides bound to short terminal oligothymidylates (up to 10 nt) through a flexible linker based on diethylene glycol phosphodiester are proposed as probes for immobilization on nylon. The presence of this fragment allows one to enhance the immobilization efficiency and reduce the UV-dependent degradation of the sequence-specific part of the probe by decreasing the irradiation dose needed for DNA immobilization. The optimal dose of UV irradiation is evaluated to be ∼0.4 J/cm2 at 254 nm, which provides a high level of the hybridization signal for immobilized probes of various nucleotide sequences. It was found that nylon amide groups play a key role in the photoinduced fixation of oligonucleotides to the polymer surface, while its primary amino groups were not as responsible for the covalent binding of DNA as previously thought. Various additives in the membrane wetting solution were demonstrated to influence both the efficiency of the UV-induced immobilization and the functional integrity of immobilized probes. Other radical generating systems alternative to UV irradiation are shown to provide the immobilization of oligonucleotides on nylon membranes.  相似文献   

3.
The effectiveness of UV cross-linking and in vacuo baking for the immobilization and retention of DNA to various solid supports was investigated. Optimal immobilization treatments for supported and unsupported nitrocellulose and nylon membranes were: UV cross-linking at 254 nm with an exposure of 120 milliJoules/cm2, or baking in vacuo for two hours at 80 degrees C. UV-immobilized nitrocellulose-based membranes showed no increase in sensitivity when compared to baked membranes. An increase in sensitivity was observed for UV-immobilized nylon membranes as compared with baked nylon membranes in some instances, although this varied within lots of the membranes tested. Repeated strippings and heterologous reprobings resulted in loss of target DNA from UV-immobilized nylon membranes as compared to baked nylon membranes. Loss of target DNA from UV-immobilized nitrocellulose-based membranes due to repeated strippings and reprobings was even more pronounced. In vacuo baking of supported and unsupported nitrocellulose and nylon membranes was more effective for immobilization, and more importantly, for retention of target DNA through many reprobings of the same blot.  相似文献   

4.
Quantitative molecular hybridization on nylon membranes   总被引:3,自引:0,他引:3  
A study of DNA hybridization to DNA covalently bound to nylon membranes was made in order to develop a quantitative method for molecular hybridization using a nylon-based matrix. Chloroplast DNA was covalently attached to nylon membranes by irradiation at 254 nm. Under hybridization conditions the initial rate of DNA loss from the nylon membranes was 5-10% per 24 h, while under comparable conditions DNA bound to nitrocellulose membranes was lost at a rate of 38 to 61% per 24 h. Several sets of hybridization conditions were examined to select one giving reasonable hybridization rates and minimal loss of bound DNA. Under the conditions selected [Denhardt's solution (D. Denhardt, 1966, Biochem. Biophys. Res. Commun. 23, 641-646), 0.5 M NaCl, 0.1% sodium dodecyl sulfate, and 31.4% formamide at 50 degrees C for 92 h], hybridization was observed to be 29% more efficient on nylon membranes than on nitrocellulose. Several attempts to remove previously hybridized DNA from nylon membranes proved only partially successful. Reuse of the membranes, therefore, was of limited value. Quantitative hybridization of total radiolabeled tobacco cellular DNA to cloned tobacco chloroplast DNA attached to nylon yielded results similar to those previously reported using nitrocellulose membranes. However, use of nylon membranes greatly facilitated the manipulations required in the procedure.  相似文献   

5.
Nine different nylon and nitrocellulose membranes were compared utilizing four different methods of attaching the nucleic acid target. Nylon membranes repeatedly demonstrated increased sensitivity as compared to nitrocellulose membranes. Sensitivity could also be enhanced by mildly denaturing the target prior to attachment onto the membrane. This was achieved by either UV cross-linking or baking.  相似文献   

6.
The features of UV-induced immobilization of oligonucleotides on a nylon membranes and the effectiveness of enzymatic labeling of immobilized probes at heterophase detection of nucleic acids are studied. Short terminal oligothymidilate (up to 10 nt) sequences are suggested to attach to the probe via a flexible ethylene glycol based linker. The presence of such fragment enhances the intensity of immobilization and reduces UV-dependent degradation of the targeted (sequence-specific) part of the probe by reducing the dose needed for the immobilization of DNA. The optimum dose of UV-irradiation is determined to be ~0.4 J/cm(2) at the wavelength 254 nm. This dose provides high level of hybridization signal for immobilized probes with various nucleotide composition of the sequence specific moiety. The amide groups of the polyamide are shown to play the key role in the photoinduced immobilization of nucleic acids, whereas the primary amino groups in the structure of PA is not the center responsible for the covalent binding of DNA by UV-irradiation, as previously believed. Various additives in the soaking solution during the membrane of UV-dependent immobilization of probes are shown to influence its effectiveness. The use of alternative to UV-irradiation system of radical generation are shown to provide the immobilization of oligonucleotides onto the nylon membrane.  相似文献   

7.
DNA-peroxidase probes were synthesized according to a modified method (Renzetal) for the detection of lambda phage DNA (model system), polio, potato X and M, tobacco mosaic viral RNAs by spot hybridization onto nitrocellulose membranes. cDNAs (300-1400 bases) complementary to the viral RNAs were cloned in M13 phage DNA or pTZ19. Efficacy of each step of the probe construction and the diagnostic procedure were thoroughly examined. Peroxidase activity manifested with non-toxic stain (NTS) was 3-5 fold more sensitive in comparison with alpha-Cl-naphthol or bisanisidine. It was found that HRP became much more stable to heat in diluted samples and was 2-3 fold more active after coupling with polyethylene imine spacer. Also, sodium borohydride reduction of the cDNA and PEI-HRP adduct crosslinked by the glutardialdehyde resulted in the stabilization of the probes. Target nucleic acids or diagnostic samples were efficiently fixed onto nitrocellulose membranes by a short-time UV irradiation. Diagnostics of cellular extracts with the preliminary prepared probes takes 4-5 hours due to express hybridization (1 hr) with 100-200 ng/ml of specific nucleotide sequence. Up to 20 pg (less than 10(-17) M) of the purified viral nucleic acids and 30-50 pg of them in the total fraction of the cellular nucleic acids isolated from the infected cells were identified with the probes. 50-10000 fold diluted lysate of the HeLa cells infected with poliovirus (PV1) and both crude extracts of potato tuber or potato and tobacco leaf tissues infected with PVX, PVM or TMV displayed specific signals with the respective DNA-HRP probes.  相似文献   

8.
Transfer of DNA (from 0.1 to 10 micrograms) from diluted solutions of variable volumes (1-10 ml) and various composition (2 M NaCl; 4 M LiCl, 8 M urea; 4 M CsCl; 20% sucrose) to nitrocellulose or nylon membranes was achieved with the use of hydroxyapatite. This absorbent that binds nucleic acids effectively and independently of ionic strength and composition of solution (except for chelators and phosphate ions) easily dissolves in small volumes of acids (for example, in 10% TCA). This phenomenon provides the opportunity to deliver the acid-insoluble precipitates to membrane filters. After alkaline denaturation on the filter followed by a fixation step (baking or UV irradiation for nitrocellulose or nylon filters, respectively), DNA hybridizes effectively with nick-translated DNA probes. The method is simple, reproducible, sensitive, and useful for working with diluted DNA solutions containing interfering substances.  相似文献   

9.
The use of non-radioactive systems to detect target DNA or RNA displays many advantages such as safe manipulation, potential use in non-specialized scientific area and prolonged lifetime of the probes (one year or more). We here describe a method we have improved and optimized using sulfonated DNA probes for hybridization on dot and Southern blots. Sulfonation is an easy chemical modification procedure which does not require enzymatic coctail as does nick-translation. Sensitivity of this method has been particularly improved by using a new blocking solution, containing heparin, which allows easy and fast detection of picogram quantities of DNA. This method allows the use of nitrocellulose as well as nylon membranes with very low background. Equal resolution is obtained in comparative experiments involving both sulfonated and 32P-radiolabelled probes. Single copy gene sequences are readily detected in nuclear DNA. These results allow the use of this procedure for restriction fragment length polymorphism (RFLP) studies.  相似文献   

10.
目的:建立一种快速、简单的SNP(Single Nucleotide Polymorphisms)检测方法。方法:设计带生物素标记的扩增引物对检测用具有单碱基差异的野生型和突变型靶序列分别进行扩增,然后通过紫外交联的方式将相应检测靶序列的探针固定在硝酸纤维素膜上,借助Taq酶完成膜上单引物延伸,从而对探针捕获的靶序列进行延伸固定在膜上,最后使用生物素.亲和素酶联显色(ABs-ELISA)反应肉眼观察结果。结果:阳性和阴性对照探针显示正常。野生型探针和突变型探针能够分别特异性结合靶序列,并通过生物素和亲和索显色系统放大为一种肉眼可判断结果的检测形式。结论:建立了一种基于硝酸纤维素膜载体上进行核酸扩增的SNP检测方法。  相似文献   

11.
目的:建立一种快速、简单的SNP(Single Nucleotide Polymorphisms)检测方法。方法:设计带生物素标记的扩增引物对检测用具有单碱基差异的野生型和突变型靶序列分别进行扩增,然后通过紫外交联的方式将相应检测靶序列的探针固定在硝酸纤维素膜上,借助Taq酶完成膜上单引物延伸,从而对探针捕获的靶序列进行延伸固定在膜上,最后使用生物素-亲和素酶联显色(ABS-ELISA)反应肉眼观察结果。结果:阳性和阴性对照探针显示正常。野生型探针和突变型探针能够分别特异性结合靶序列,并通过生物素和亲和素显色系统放大为一种肉眼可判断结果的检测形式。结论:建立了一种基于硝酸纤维素膜载体上进行核酸扩增的SNP检测方法。  相似文献   

12.
The growth of analytical methods for the detection of nucleic acid from various biological samples reflects recent advances in biotechnology development especially in the areas of genetic, infections and cancer diagnosis. The target DNA is detected by hybridization techniques derived from Southern's blotting. However such assays, based on the use of 32P labelled DNA probes, bring with them the associated problems of handling radioactive materials. In order to overcome these difficulties, a number of chemiluminescent detection methods have recently been developed.These new, alternative probe labelling procedures and chemiluminescent detection methods are easy to use in routine assays performed in research laboratories as well as for medical applications, and can reach the level of sensitivity found in classical radiolabelling techniques.The techniques investigated include peroxydase, biotin 16-dUTP or digoxigenin 11-dUTP probe labelling. The target DNAs are transferred onto nitrocellulose or nylon membranes and further fixed by heat or UV crosslinking. Specific hybridization on the target DNA is finally revealed by the use of chemiluminescent substrates. For all these techniques the detection limit is 10 aM (attomol) of a 561 bp target DNA. However for the probes labelled with peroxydase and with digoxigenin the detection limit drops to 1.0 aM of the target DNA. In the present paper we shall compare several of these DNA labelling and detection procedures and show that the detection threshold can vary by as much as a factor of 20 from method to method. This is the first time that various chemiluminescent methods for label and detection of DNA are compared and evaluated in order to determine the best protocol.  相似文献   

13.
A set of experiments has been conducted to choose the optimal conditions for DNA transfer and fixation on two types of the nitrocellulose, three types of nylon membranes and on capron filters. The buffer capillary transfer systems, electroblotting and gel hybridization are analyzed. Two techniques for DNA binding have been tested under different transfer conditions for all the membrane types: a vacuum fixation at 80 degrees C and a UV-exposure. The results indicate the critical dependence of the efficiency of blot-hybridization on the conditions of UV-treatment. The UV-exposure longer or shorter than the optimal one resulted in a loss of the hybridization efficiency. The optimal DNA-transfer and fixation conditions are recommended for all the membranes tested. The dependence of the optimal transfer and binding conditions on the specific characteristics of different membrane types was demonstrated for maximal sensitivity of the blot-hybridization.  相似文献   

14.
15.
Deletion delta F508 has been revealed in PCR-amplified regions of human gene CFTR by color detection of the hybridization complex obtained by ligation of a tandem of short oligonucleotides on a DNA template followed by UV immobilization on nylon. The method allows reliable detection of the three-nucleotide deletion (insertion). The nonspecific signal depends on the nucleotide composition of the biotinylated tandem component. A significant level of the specific signal was achieved by using the PCR-amplified DNA fragments of different length (200-400 bp) irrespective of the position of the tandem-binding site in their sequences.  相似文献   

16.
The use of charged nylon membranes in nucleic acid blotting applications has become an important factor in the success of hybridization-based assays. Retention of nucleic acids on these membranes is promoted by baking at 80 degrees C under vacuum or by exposure to short wavelength UV light, with the latter method preferred. Immobilon-Ny+ is an advanced, positively charged nylon membrane that has been optimized to show superior retention of target DNA and RNA under hybridization conditions. Higher signal levels are obtained in these assays compared to competitive membranes, even after 13 cycles of probing. This report illustrates the superior performance of Immobilon-Ny+ in 32P and chemiluminescent hybridization assays on blotted DNA and RNA.  相似文献   

17.
An efficient procedure combining the Southern Cross method described by H. Potter and D. Dressler (1986, Gene 48, 229-239) and the use of nonradioactive reporter molecules which allows fast restriction mapping of DNA molecules up to 40 kb is described. In this method, photobiotin-labeled fragments for one restriction enzyme cross-hybridize with at least five unlabeled digests transferred onto nylon membranes. Hybridization spots are revealed on recipient membranes at a homologous fragment cross, allowing direct restriction map construction. In comparison with 32P "cross-blot" hybridization, photobiotin labeling is safer, faster, and easier to dispose of.  相似文献   

18.
Strategies for covalent attachment of DNA to beads   总被引:1,自引:0,他引:1  
Several covalent attachment chemistries were tested for the immobilization of DNA onto glass beads. The comparison was based on the ability of these chemistries to produce derivatized beads that give good hybridization signals. Cyanuric chloride, isothiocyanate, nitrophenyl chloroformate, and hydrazone chemistries gave us the best (yet comparable) hybridization signals. We further characterized the cyanuric chloride method for the number of attachment sites, number of hybridizable sites, hybridization kinetics, effect of linker length on hybridization intensity and stability of the derivatized beads.  相似文献   

19.
Kabilov  M. R.  Pyshnyi  D. V.  Dymshyts  G. M.  Zarytova  V. F.  Ivanova  E. M. 《Molecular Biology》2003,37(5):671-677
Deletion F508 has been revealed in PCR-amplified regions of human gene CFTR by color detection of the hybridization complex obtained by ligation of a tandem of short oligonucleotides on a DNA template followed by UV immobilization on nylon. The method allows reliable detection of the three-nucleotide deletion (insertion). The nonspecific signal depends on the nucleotide composition of the biotinylated tandem component. A significant level of the specific signal was achieved by using the PCR-amplified DNA fragments of different length (200–400 bp) irrespective of the position of the tandem-binding site in their sequences.  相似文献   

20.
A technique is described that allows direct hybridization to the DNA of cells flow sorted onto nitrocellulose filters, which obviates an intervening DNA isolation step. The feasibility of this technique for studying small numbers of cells is demonstrated with human cord blood, which has a high proportion of nucleated cells. The cells are stained with fluorescein-conjugated anti-HLe-l, a monoclonal antibody that recognizes mature leucocytes. Anti-HLe-l-positive cells are all nucleated, and a controlled, precise number of them may be sorted directly onto a nitrocellulose membrane. In cord blood, a small percentage of anti-HLe-l-negative cells are nucleated erythrocytes, which may also serve as a source of DNA. Studies were performed on male or female newborn cells flow sorted onto nitrocellulose membranes and hybridized with either a non-specific human repeat DNA probe or a Y chromosome-specific probe. Importantly, the sex of the newborn could be determined at the DNA level from as few as 50 sorted cord blood leucocytes or 5,000 HLe-l-negative cells. Since nucleated erythrocytes are common in fetal blood but rarely found in the peripheral circulation of adults, the method has potential application for the determination of fetal sex from analysis of flow-sorted nucleated erythrocytes present in the maternal circulation during pregnancy.  相似文献   

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