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Biomedical subjects

X Fan

Publications and source records attributed to X Fan.

At least 199 records · Page 11Linked to original sources

Temperature-sensitive mutations in the protein kinase-1 (pk-1) gene of the Autographa californica nuclear polyhedrosis virus that block very late gene expression.

We have developed a genetic screen for temperature-sensitive mutations in the very late transcription apparatus of the Autographa californica nuclear polyhedrosis virus. This method starts with the BacPAKS virus, which has the Escherichia coli lacZ gene under the control of the very late polyhedrin promoter. The desired mutants are temperature-sensitive for beta-galactosidase production and can be complemented by wild-type virus, which lacks the lacZ gene. Two mutants created by nitrosoguanidine mutagenesis and identified by this screen, and one mutant identified by another screen, have been mapped by marker rescue to the viral protein kinase 1 gene (pk-1). The protein kinase genes of these three mutant viruses have been sequenced, revealing the same point mutation in two of them and a different point mutation in the other. In each case, a single amino acid is changed: In two mutants, XF4 and XF5, Asp 92 is changed to Asn; in the other mutant, KT800, Thr 204 is changed to lle. Northern blotting of RNA made in cells infected by these three mutant viruses has shown that the accumulation of very late transcripts (lacZ and p10) is temperature-sensitive, but that accumulation of at least one late transcript (vp39) is not temperature-sensitive. Nuclear run-on transcription assays with two of the mutants indicate that very late transcription is somewhat temperature-sensitive, although this defect is not as pronounced as the temperature-sensitivity detected by Northern blotting. Transcription of at least one late gene (vp39) is not temperature-sensitive in cells infected by these two mutants. Thus, it appears that the viral protein kinase-1 is involved in very late gene expression. Some of this effect is at the transcription level, but some may also be exerted at the posttranscription level.

Amino Acid Sequence↗

The proinflammatory cytokine interleukin-12 occurs as a cell membrane-bound form on macrophages.

Phagocyte-derived interleukin-12 (IL-12) is a proinflammatory cytokine promoting cell-mediated immune responses in inflammatory and infectious disorders. Based on sequence homology of the p40 subunit with the interleukin-6 receptor it has been speculated that IL-12 could also exist as a membrane-bound form, but thus far only soluble (secreted) IL-12 has been identified. We have therefore analyzed human monocytic U937 and mouse P388D1 macrophages for membrane-bound IL-12 by flow cytometry. IL-12 is constitutively expressed on the cell surface of both cell lines. IL-12 cell surface staining is enhanced in response to stimulation with IFN-gamma plus LPS. IL-12 is also present in the supernatant of cultured P388D1 macrophages. Thus, in addition to a soluble form IL-12 occurs as a membrane-bound molecule on monocyte/macrophage cell lines.

Animals↗

Uroguanylin: cloning of preprouroguanylin cDNA, mRNA expression in the intestine and heart and isolation of uroguanylin and prouroguanylin from plasma.

Uroguanylin is a small peptide isolated from opossum urine that activates membrane guanylate cyclases. We report the isolation by molecular cloning of cDNAs encoding the 109 amino acid preprouroguanylin containing the active uroguanylin peptide at its C-terminus. Preprouroguanylin mRNAs of 1.2 kb were detected throughout the small and large intestine and in the atria and ventricles of heart, but not in kidney, stomach or liver. Transfection of COS-1 cells with the uroguanylin cDNA resulted in prouroguanylin secretion. Both uroguanylin and prouroguanylin were isolated from opossum plasma. Thus, uroguanylin is made by the intestine and heart and circulates as a bioactive form of uroguanylin and the inactive prouroguanylin.

Amino Acid Sequence↗

Ketoconazole and phorbol myristate acetate regulate osteoclast precursor fusion in primary murine marrow culture.

Osteoclast formation requires both precursor proliferation and then fusion into a multinuclear cell. These processes can be separated in primary murine marrow culture where osteoclastogenesis is stimulated by 1,25-dihydroxyvitamin D3 (1,25(OH)2D3). Here we investigate the regulation of precursor fusion. Ketoconazole, an agent known to inhibit cell fusion, added during the fusion period (days 5-6), dose-dependently inhibited formation of tartrate-resistant acid phosphatase+ (TRAP+) multinucleated cells (TRAP+MNCs), maximally at 62 +/- 4% (n = 10). TRAP+MNCs in cultures exposed to 48 h of ketoconazole (1 microM) during fusion had fewer nuclei compared with control (11.7 +/- 0.6 vs. 15.1 +/- 0.9). This inhibitory effect was completely reversed 24 h after removal of ketoconazole from culture. Phorbol myristate acetate (PMA) stimulated TRAP+MNC formation when given during the last 12 h of culture (2.3 +/- 0.2 fold compared with control). This increased formation was unaffected by the addition of hydroxyurea and accompanied by an increase in nuclei per TRAP+MNC (15.5 +/- 0.9 vs. 13.1 +/- 0.6). Finally, staurosporine decreased TRAP+MNC formation in the presence or absence of PMA, implying that protein kinase C is involved in fusogenic processes. Regulation of fusion appears to be another mechanism by which bone remodeling can be modulated in vivo.

Acid Phosphatase↗

ICAM-1-, -2- and LFA-1-independent homotypic T cell aggregation induced by a novel activating monoclonal antibody targeting the murine Thy-1 molecule.

We have previously reported that the murine T cell line EL-4 has an aggregating phenotype, displaying homotypic aggregation (HTA) when exposed to monoclonal antibodies targeting specific cell surface molecules such as leukocyte function-associated antigen-I (LFA-1). We have used this property of EL-4 cells to isolate additional HTA-inducing MAb by screening a panel of hybridomas that were generated from rats immunized with EL-4 cells. We have isolated a novel anti-Thy-1 MAb (termed FF-10) that is a powerful inducer of HTA in EL-4 cells. In addition to induction of HTA, FF-10 also induces splenocyte proliferation but inhibits anti-CD3-driven T cell proliferation. Thy-1-induced HTA cannot be blocked with MAb targeting intercellular adhesion molecule-I and -2 (ICAM-1, ICAM-2) or LFA-1. Thus, the FF-10 MAb represents a novel and unique tool to investigate the diverse roles of the murine Thy-I molecule in T cell activation, proliferation and apoptosis.

Animals↗

Regulation of murine osteoblast macrophage colony-stimulating factor production by 1,25(OH)2D3.

Macrophage colony stimulating factor (MCSF) is important for formation of osteoclasts. We investigated the ability of 1,25(OH)2D3 to regulate osteoblast production of MCSF. Mouse calvarial osteoblasts were cultured for 2 days +/- 1,25(OH)2D3. Since 1, 25(OH)2D3 decreased osteoblast proliferation by 17.6 +/- 1% at 10 nM and 11 +/- 4% at 1 nM, the effect of growth rate on MCSF secretion was examined. Limiting cell proliferation by serum did not affect MCSF production. 1,25(OH)2D3 (1 nM) increased MCSF production (U/10(5) cells) maximally by 68 +/- 33% (n = 3) with an ED50 for 1, 25(OH)2D3 of 5 x 10(-11) M. To investigate effects of 1,25(OH)2D3 on MCSF gene regulation, RT-PCR primers were designed to identify the mRNA coding for the membrane-bound isoform of MCSF. Simultaneous RT-PCR of glyceraldehyde-phosphate dehydrogenase (GAP) allowed semiquantitative assessment of MCSF mRNA between treatment groups expressed as the MCSF/GAP RT-PCR product ratio; both MCSF and GAP (+) primers were labeled with 32P-ATP for phosphorimage quantitation. The membrane-bound MCSF/GAP PCR product ratio was not affected by proliferative rate when growth was limited by [serum]. The MCSF/GAP RT-PCR product ratio was dose dependently increased by 1,25(OH)2D3, maximally at 1 nM at 2.2 +/- 0.2 = fold (n = 10). 1,25 (OH)2D3 also increased the expression of an RT-PCR MCSF/GAP product ratio which represented the secreted isoform of MCSF. The ability of 1,25(OH)2D3 to pretranslationally regulate expression of membrane-bound osteoblast MCSF may be important in osteoblast:osteoclast interactions.

Animals↗

Ultrasound surgery using multiple sonications--treatment time considerations.

The noninvasive surgery of a tumor by focused transducers or phased arrays with multiple sonications was simulated in this study. The effects of multiple sonications on near field heating were investigated by varying the delay time between consecutive pulses and the movement pattern of the transducer within the focal plane. To avoid normal tissue damage, sufficient delay time between consecutive pulses is necessary. It was found that the delay is dependent on acoustic power and pulse duration. The treatment time is often long when a strongly focused transducer is used to treat a large tumor, because the volume of necrosed tissue generated by the focused ultrasound beam is small requiring a large number of multiple sonications. To reduce treatment time, it is necessary to decrease the total number of pulses. This can be done by increasing the acoustic power and/or sonication time, Longer sonications induce a perfusion dependency on the temperature elevations. The acoustic power is limited by mammalian tissue temperatures which should not exceed 100 degrees C to avoid boiling and gas formation. An alternative way to increase the coagulated tissue volume is to modify the acoustic field such that a large tissue volume is exposed, while generating a more uniform temperature elevation to avoid high exposure limiting temperatures. This can be done effectively by using a phased array. This study demonstrated that phased arrays can offer significantly shorter treatment times than similar spherically curved transducers.

Humans↗

Presence of gonadotropin-releasing hormone (GnRH) receptor mRNA in rat myenteric plexus cells.

Idiopathic neuromuscular disease of the gastrointestinal tract (functional bowel disease) is thought to result from the malfunction of neurons within the enteric nervous system. Gonadotropin-releasing hormone (GnRH) analogs have recently been shown to organize the disordered motility patterns typical in these patients and to produce significant, long-term symptomatic improvement. To determine whether GnRH analogs might bind to an endogenous enteric nervous system GnRH receptor, reverse transcription-polymerase chain reaction (RT-PCR) was performed using cultured neonatal rat enteric neuron RNA and rat GnRH receptor primers. A PCR product of the predicted size was cloned and nucleotide sequence analysis demonstrated that the myenteric plexus PCR product encoded a portion of the GnRH receptor sequence previously identified in rat pituitary. These results suggest that cells in the myenteric plexus express GnRH receptors that may bind exogenously administered GnRH analogs. The expression of GnRH receptors in enteric neurons would provide an explanation for the effectiveness of GnRH analogs in treatment of idiopathic neuromuscular disease of the gastrointestinal tract.

Amino Acid Sequence↗

Salt and water homeostasis: uroguanylin is a circulating peptide hormone with natriuretic activity.

Guanylin and uroguanylin are small, heat-stable peptides that were initially isolated from rat jejunum and opossum urine, respectively. Both peptides bind to and activate a common set of apical membrane receptors that contain a guanylate cyclase catalytic domain within the receptor molecule. The guanylin/uroguanylin receptors are found on the luminal surface of epithelial cells lining the intestinal tract and renal proximal tubules as well as in other organs. Activation of receptor-guanylate cyclase signaling molecules by uroguanylin or guanylin elicits large increases in guanosine cyclic 3'-5' monophosphate (cGMP) production. Intracellular accumulation of this second messenger in target cells leads to the stimulation of intestinal chloride secretion, culminating in the enhancement of salt and water secretion into the intestinal lumen as well as increases in urinary sodium, potassium, and water excretion by actions of cGMP in the renal tubules. Uroguanylin and guanylin are produced throughout the intestinal mucosa and, surprisingly, uroguanylin messenger RNA (mRNA) is also expressed in both atria and ventricles of the heart. Both proguanylin and prouroguanylin are inactive polypeptides, and activation is accomplished by cleavage and release of the COOH-terminal peptides, guanylin and uroguanylin. Uroguanylin is postulated to function as an intestinal natriuretic hormone because: (1) prouroguanylin and uroguanylin both circulate in the plasma of normal animals; (2) uroguanylin is the predominant peptide agonist appearing in the filtrate and, thus, in urine; (3) the receptors for uroguanylin are localized to the apical membranes of renal tubular cells; (4) uroguanylin is substantially more potent than guanylin in eliciting a natriuresis; and (5) uroguanylin is expressed in the duodenum and myocardium, which are appropriate sites in the body for the production and release of a hormone that acts as a natriuretic agonist in vivo. The hypothesis that uroguanylin links the intestine with the kidney in an endocrine axis also predicts that the secretion of uroguanylin from the intestinal mucosa will be influenced by dietary levels of salt. Accordingly, plasma levels of uroguanylin or prouroguanylin should be influenced by oral salt loads. Future investigations will focus on the basic endocrinology of uroguanylin to provide answers to this intriguing question. In conclusion, uroguanylin is a candidate for a physiological role as an intestinal natriuretic hormone. Key features of the biology of uroguanylin provide a putative explanation for the substantial natriuresis that occurs in human subjects and experimental animals after an oral salt load. Moreover, uroguanylin and guanylin participate cooperatively in an intrinsic pathway for regulation of intestinal salt and water transport, thus providing another means of influencing salt and water homeostasis in addition to the renal actions of uroguanylin.

Animals↗

Enhanced tubular epithelial CD44 expression in MRL-lpr lupus nephritis.

The cell surface glycoprotein CD44 is expressed by cells of hematopoietic origin and constitutes a receptor for hyaluronic acid and matrix proteins. Because CD44 could play a role in recruiting inflammatory cells to sites of immune injury, we examined the renal CD44 expression in normal and in autoimmune MRL-lpr mice by immunohistochemistry and at a molecular level. In normal kidneys, immunoperoxidase staining for CD44 is restricted to interstitial cells and certain urothelial cells. In nephritic MRL-lpr, CD44 expression is prominent in perivascular inflammatory infiltrates and in glomerular crescents. Interestingly, CD44 is also focally expressed by cortical tubular epithelial cells (TEC) in nephritic MRL-lpr kidneys but not in normal kidneys. Reverse transcription-polymerase chain reaction (RT-PCR) as well as Northern blotting demonstrate that CD44 kidney mRNA levels are increased in nephritic MRL-lpr mice compared with normal mice. To further characterize the tubular CD44 expression, we examined cultured TEC (primary cultures and SV40-transformed TEC lines C1 and MCT). TEC constitutively express abundant cell surface CD44 that is modestly up-regulated in response to 18 hours stimulation with TNF-alpha (100 ng/ml), IFN-gamma (100 U/ml) and IL-1 (100 ng/ml). Northern analysis of TEC mRNA reveals a constitutive CD44 mRNA transcript at 3 kb. Stimulation with IFN-gamma or TNF-alpha for six hours markedly up-regulates CD44 mRNA expression in these cells. We conclude that mononuclear infiltration with CD44 positive cells and cytokine-induced up-regulation of CD44 by renal TEC is a prominent feature of MRL-lpr lupus nephritis. The contribution of CD44 induction on TEC to the pathogenesis of the autoimmune nephritic process in MRL-lpr remains to be determined.

Animals↗

A study of various parameters of spherically curved phased arrays for noninvasive ultrasound surgery.

The spherically curved square element phased array design for ultrasound surgery was studied in several of its important aspects. A method for determining the spatial limitations of the multiple-foci region was developed for spherically curved phased arrays. The effects on the ultrasound fields of varying the phases and the amplitudes at control points were investigated. It was found that the phases and the magnitudes of control points have an impact on the ultrasound field distributions. The effects of multiple-foci spacing, pulse duration, and maximum temperature on the size and shape of necrosed tissue were investigated. For a spherically curved phased array with an 8 cm radius of curvature, an 8.8 x 8.8 cm2 projected area, and a 1.5 MHz operating frequency, the minimum number of phased array elements that could produce the largest acceptable necrosed tissue volume was 256. The tissue volume necrosed during the sonication could be increased to approximately 1 x 1 x 3 cm3 with this array.

General Surgery↗

Molecular cloning of Aplysia neuronal cDNAs that encode carboxypeptidases related to mammalian prohormone processing enzymes.

The bag cell neurons of Aplysia synthesize an egg-laying hormone (ELH) precursor that initially is cleaved into two fragments in the Golgi apparatus, and the fragments are differentially packaged in separate granule populations and further processed. Aplysia Afurin, Afurin2, prohormone convertase 1 (PC1), and PC2 are thought to be involved in the posttranslational processing of the ELH prohormone. In the present study, we have cloned Aplysia neuronal cDNAs that encode an enzyme most closely related to mammalian carboxypeptidase E (CPE), a peptide hormone processing enzyme that removes basic residues during prohormone processing. Northern blot analysis identified a single Aplysia CPE mRNA (approximately 5.2 kb) in central nervous system tissue. The C-terminal region of Aplysia CPE contains amphiphilic alpha-helices that may serve as a hydrophobic membrane anchor. A novel neuronal Aplysia enzyme was also identified by the polymerase chain reaction that was most closely related to the carboxypeptidase D (CPD)-related duck protein gp180 and the Drosophila silver gene carboxypeptidases. Aplysia CPE and the CPD-related enzyme are candidate processing enzymes that may play a role in the processing of the ELH prohormone and other Aplysia prohormones.

Amino Acid Sequence↗

A parametric study of the concentric-ring transducer design for MRI guided ultrasound surgery.

Noninvasive surgery using high-powered, focused ultrasound transducers in conjunction with magnetic resonance imaging has been shown to be feasible in previous studies. For clinical treatments, the geometry of standard MRI equipment limits the space available for ultrasound surgical equipment. This space requirement can be reduced in one dimension by using phased arrays to control the focal depth, thus eliminating the space required for the motion of a fixed focus transducer. Because of its symmetry, an annular array is ideal for changing the focal depth. Previous works have simulated, built, and characterized various concentric-ring transducers; however, no study has thoroughly examined the potential and limitations of the concentric-ring design for MRI guided ultrasound surgery. The present work is a systematic examination of the capabilities of the concentric-ring array, using numerical simulations to predict the power field, temperature distribution, and accumulated thermal dose. The results presented here illustrate the effects of ring size, center-to-center spacing configurations, number of rings, and radius of curvature on transducer performance. A 10-cm radius of curvature transducer with 14 evenly spaced rings has been built and characterized in order to verify the accuracy of the numerical simulations. The pressure-squared fields produced by this transducer are in excellent agreement with the simulated fields.

Equipment Design↗

Expression of CD44 and its variants on gastric epithelial cells of patients with Helicobacter pylori colonisation.

BACKGROUND: Studies have suggested that expression of the adhesion molecule CD44 may be of prognostic importance in gastric cancer. In addition, there is strong evidence that Helicobacter pylori has a role in gastric cancer. AIMS: To determine the expression of CD44 and its variants (v6, v9) and HLA class II molecules on human gastric epithelial cell and intraepithelial lymphocytes in patients with and without H pylori infection. PATIENTS: Eighteen patients (seven men and 11 women) attending for endoscopic evaluation because of upper gastrointestinal symptoms were included. An additional 10 patients (five men and five women) were analysed for CD44 variant expression). METHODS: Biopsy specimens were taken from the gastric antrum during endoscopy. Gastric epithelial cells and intraepithelial lymphocytes were examined by two colour flow cytometry and compared in patients with and without H pylori infection. RESULTS: Expression of CD44 and its variants (CD44 v9) was increased in epithelial cells but not in intraepithelial lymphocytes. Both epithelial cells and intraepithelial lymphocytes expressed higher levels of HLA class II molecules (DR and DP), possibly as a result of local cytokine production. Furthermore, results showed upregulation of CD44 on a gastric epithelial cell line (AGS) by cytokines and peripheral blood mononuclear cell supernatant. CONCLUSIONS: These data suggest that H pylori, either directly or through a local inflammatory response, is responsible for increased expression of CD44 and its variant CD44 v9. These data are of potential importance in relation to increased expression of CD44 and CD44 v9 on gastric carcinoma.

Adult↗

Prouroguanylin and proguanylin: purification from colon, structure, and modulation of bioactivity by proteases.

Uroguanylin and guanylin are peptides isolated from urine and intestinal mucosa, which regulate cyclic GMP production in enterocytes by activating an apical membrane, receptor-guanylate cyclase. This study extended our previous findings, which showed that colonic mucosa of opossums contained uroguanylin and guanylin peptides, by purifying prouroguanylin and proguanylin from this tissue. Prouroguanylin and proguanylin coeluted from Sephadex G-75 gelfiltration columns with a similar molecular size between 6 and 12 kDa. Mass spectrometry indicated that proguanylin (approximately 8.7 kDa) had a 10% lower molecular mass than prouroguanylin (approximately 9.7 kDa). Isoelectric focusing separated prouroguanylin (pI approximately 4.5) from proguanylin (pI approximately 7.5). N-terminal sequence analysis of reverse phrase-HPLC purified prohormones revealed 13 amino acids in opossum proguanylin that shared 77-85% identity with human and rat proguanylin, but only 23% identity with opossum prouroguanylin. The N-terminal 19 residues obtained for opossum prouroguanylin shared 32-42% identity with rat and human proguanylin. Prouroguanylin and proguanylin were both inactive and required pretreatment with proteases to elicit cyclic GMP responses in T84 cells. V8 protease treatment of proguanylin liberated a bioactive, 16-amino acid form of guanylin. Chymotrypsin treatment activated prouroguanylin, but inactivated the bioactive peptide domain within proguanylin. In summary, colonic mucosa contains the bioactive peptide and inactive prohormone forms of uroguanylin and guanylin. Thus, after proteolytic processing of prouroguanylin and proguanylin, bioactive uroguanylin and guanylin could both function to regulate guanylate cyclase activity by autocrine and/or paracrine actions on enterocytes. Also, these peptide hormones are implicated in an intestinal-renal axis for the endocrine regulation of salt and water homeostasis.

Amino Acid Sequence↗

Expression and characterization of Aplysia protein kinase C: a negative regulatory role for the E region.

The Aplysia nervous system contains two phorbol ester-activated protein kinase C isoforms, the Ca(2+)-activated Apl I and the Ca(2+)-independent Apl II. Short-term applications of the facilitatory transmitter serotonin (5-HT) activates Apl I, but not Apl II. In contrast, Apl II, but not Apl I, can form an autonomous kinase. To investigate the biochemical characteristics of the Aplysia kinases that might underlie their differential activation, we expressed Apl I, Apl II, and two derivatives of Apl II with deletions in the amino-terminal 150 amino acid E region in insect cells using the baculovirus system. Similar to nervous system extracts, expressed Apl II has more autonomous activity than Apl I. Removal of the E region lowered the amount of phosphatidylserine required for activation of Apl II, but did not remove the autonomous kinase activity. In addition, phosphatidylserine vesicles could sediment fusion proteins containing the E region, consistent with a role for the E region in lipid interactions. A partial deletion of the E region modifies activation of Apl II by phorbol esters and oleic acid, suggesting that in the intact enzyme the E region interacts with the phorbol ester-binding domain of the kinase. These results introduce a model whereby the E region acts as a negative regulator of Apl II activation and suggest that this inhibition may explain the inability of short-term applications of 5-HT to activate Apl II.

Amino Acid Sequence↗

Acute bacterial meningitis in children in Hefei, China 1990-1992.

OBJECTIVE: To obtain etiologic and epidemiologic information about bacterial meningitis, especially the H influenza type B (Hib), from a medium-sized city, Hefei, China. METHODS: Data were collected prospectively over 3 years, from 1990 to 1992 by a well-organized group including 13 hospitals. All children with a clinical diagnosis of acute bacterial meningitis were enrolled and the specimens were taken for the etiologic studies. CSF and blood were tested by standard bacteriologic technique. CSF, blood and concentrated urine were tested directly for detection of antigen by countercurrent immuno-electrophoresis (CIE). Data were analyzed by epidemiologic methods. RESULTS: Bacterial culture and CSF Gram's staining were positive only in 13.3% and 11.7%, respectively. Bacterial antigen detection was positive in up to 90% by CIE which was more sensitive than bacterial culture (chi 2 = 67.7, P < 0.005). The annual incidence of acute bacterial meningitis in the city is calculated as 9.3 cases/100,000 children from 1 month to 15 years of age and 19.2 cases/100,000 children from 1 month to 5 years of age. Hib meningitis accounted for 51.7%, N. meningitis (Nm) for 38.3%, and S. pneumoniae (Sp) for 8.3%. There was no significant seasonal variation. Of the patients, 76.7% were children under 5 years of age, and 51.7% under 1 year of age. The case fatality rate was 11.7% for all bacterial meningitis, 9.7% for Hib, 17.4% for Nm and 20% for Sp. A total of 22.6% of survivors suffered from neurological or psychological problems. CONCLUSIONS: Using antigen detection combined with bacterial culture, we could make an etiologic diagnosis in up to 90% of the patients in this group. Hib, Nm and Sp were the predominant pathogens, which was similar to the findings in other countries. Hib was the most common cause of bacterial meningitis, but the incidence was much lower than in most parts of the world.

Child↗

[Labeling DNA probe by polymerase chain reaction].

The use of polymerase chain reaction (PCR) for labeling probe has been demonstrated to offer various advantages including efficient labeling of DNA fragments as small as 72 bp, direct labeling of genomic DNA, and labeling with subnanogram amounts of input DNA. Therefore, a procedure for the nonradioactive labeling of chromasomal DNA 203 bp fragments of Helicobacter pylori with the hapten digoxigenin (Dig) by PCR has been developed. The results showed that the concentration of probe labeled by PCR was much higher than that by random primer labeled. PCR has the advantage of rapidity and economy. It is a very effective technique for synthesis of Dig-labeled DNA probe.

DNA Probes↗