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Biomedical subjects

X Ye

Publications and source records attributed to X Ye.

At least 55 records · Page 3Linked to original sources

HIRA, the human homologue of yeast Hir1p and Hir2p, is a novel cyclin-cdk2 substrate whose expression blocks S-phase progression.

Substrates of cyclin-cdk2 kinases contain two distinct primary sequence motifs: a cyclin-binding RXL motif and one or more phosphoacceptor sites (consensus S/TPXK/R or S/TP). To identify novel cyclin-cdk2 substrates, we searched the database for proteins containing both of these motifs. One such protein is human HIRA, the homologue of two cell cycle-regulated repressors of histone gene expression in Saccharomyces cerevisiae, Hir1p and Hir2p. Here we demonstrate that human HIRA is an in vivo substrate of a cyclin-cdk2 kinase. First, HIRA bound to and was phosphorylated by cyclin A- and E-cdk2 in vitro in an RXL-dependent manner. Second, HIRA was phosphorylated in vivo on two consensus cyclin-cdk2 phosphoacceptor sites and at least one of these, threonine 555, was phosphorylated by cyclin A-cdk2 in vitro. Third, phosphorylation of HIRA in vivo was blocked by cyclin-cdk2 inhibitor p21(cip1). Fourth, HIRA became phosphorylated on threonine 555 in S phase when cyclin-cdk2 kinases are active. Fifth, HIRA was localized preferentially to the nucleus, where active cyclin A- and E-cdk2 are located. Finally, ectopic expression of HIRA in cells caused arrest in S phase and this is consistent with the notion that it is a cyclin-cdk2 substrate that has a role in control of the cell cycle.

Amino Acid Sequence↗

Comparison of NADPH diaphorase activity in the brains of hamsters infected with scrapie strains 139H or 263K or with normal hamster brain homogenate.

Previous studies showed that the histopathological changes found in the brains of scrapie-infected animals included amyloid plaque formation, vacuolation, gliosis and neuronal and neurite degeneration. There were differences in the histopathological findings as a function of the scrapie strain-host combination. NADPH-diaphorase (NADPH-d) has been shown to be a selective histochemical marker for neurons containing nitric oxide (NO) synthase. Neuronal cell damage caused by NOS in brain has been reported to be associated with many neurodegenerative diseases. In this study, we used NADPH-d histostaining to investigate changes in the NOS system in brains of 139H- and 263K-infected hamsters and compared the results to normal hamster brain (NHB) injected animals. We observed that some of the NADPH-d histostaining neurons in the cortex of scrapie-infected hamsters appeared to be atrophic: the neurons were smaller and had fewer neurites. The NADPH-d histostaining intensity of neurons or astrocytes in septum, thalamus, hypothalamus and amygdala of 139H- and 263K-infected hamsters was greater than in control hamsters. Astrocytes in the thalamus, hypothalamus and lower part of the cortex (layers 4 to 6) in 263K-infected hamsters were more intensely stained for NADPH-d than in either 139H-infected hamsters or controls. Our results suggest that changes in NADPH-d system might play a role in the diversity of scrapie induced neurodegenerative changes.

Animals↗

Expression and anticoagulant function of the endothelial cell protein C receptor (EPCR) in cancer cell lines.

Induction of procoagulant factors in malignant cells is considered to be the major cause of coagulation disorders in cancer. Thrombomodulin (TM), a negative regulator of coagulation was also found to be expressed in cancer cells. We report here evidence for another anticoagulant, the endothelial cell protein C receptor (EPCR), in cancer cells. EPCR was detected in several cell lines derived from various types of cancer. Significant levels of protein C (PC) activation were detected only with cell lines expressed both EPCR and TM. Anti-EPCR monoclonal antibodies (mAbs) specifically inhibited the activation. Thus, EPCR function appears to be important for PC activation by cancer cells. In addition, we detected EPCR expression in tumor cells from breast cancer patients, with an extremely high frequency. EPCR function may contribute to progression or pathogenesis of some types of cancer, and may explain the complexity of coagulopathy in cancer patients.

Anticoagulants↗

The financial status of departments of family medicine at US medical schools.

BACKGROUND: This report examined the financial health of departments of family medicine in US allopathic medical schools. METHODS: We conducted a survey of departments of family medicine at US medical schools, using academic year 1997-1998 as the index year. A total of 52 (46%) of medical schools that have a department of family medicine responded to the survey. The survey examined sources of revenue and categories of expenditures. Analysis assessed the overall financial status of departments at that period of time. RESULTS: Responding departments of family medicine received 32% of their funding from state or university sources and an additional 32% of funding from clinical services. Grants and hospital support comprised another 17% each. Departments in public institutions received higher levels of support from hospitals (22% of revenue versus 8% for private schools). The overall balance sheets for departments of family medicine showed that 56% of departments have financial reserves, while 19% had no reserves but no debt. Twenty-five percent of all departments were in debt, including 2% with debt exceeding $1 million. CONCLUSIONS: The majority of departments of family medicine remain fiscally healthy, but these departments are dependent on funds from state and medical school sources. A substantial proportion of departments are in debt. Lower levels of grant support and the difficulty in increasing clinical revenue may create future funding problems for primary care faculty as medical schools increase dependence on these sources of income.

Family Practice↗

Female and underrepresented minority faculty in academic departments of family medicine: are women and minorities better off in family medicine?

BACKGROUND: Several studies have shown that the percentage of women represented in senior academic positions at US medical schools is lower than the percentage of men in senior positions. Similarly, the percentage of minority faculty members represented in senior academic positions is lower than that of their majority counterparts. This study assessed whether these findings were also present in departments of family medicine and identified any factors related to the institution or department that favored academic success for women and minorities. METHODS: Data regarding faculty workforce composition, including faculty rank and rank for women and underrepresented minorities, were extracted from a comprehensive survey of departments of family medicine at US allopathic medical schools. The data are based on faculty workforce in 1997 and include responses from 58 (51%) of all schools with a department of family medicine. RESULTS: Faculty in departments of family medicine were more likely to be female (41% versus 25%) and an underrepresented minority (9% versus 4%), compared with all academic medicine disciplines. However, women in full-time positions were less likely than men, and minorities were less likely than nonminorities, to be either an associate or full professor. We could find no institutional or departmental characteristics that were associated with academic success for women or minority faculty members. CONCLUSIONS: While women and underrepresented minorities are more common to the faculty workforce in family medicine, members of both of these groups are not well represented in senior faculty ranks.

Academic Medical Centers↗

[Modification of transnasal medial canthopexy].

OBJECTIVE: To study the curative effect of transnasal medial canthopexy. METHODS: By a coronal or medial canthal incision, we applied transnasal medial canthopexy to repair medial canthal detachment. A total of 78 patients received the operation. RESULTS: Of them, 64 patients obtained satisfactory postoperative appearance with one operation; 6 patients obtained satisfactory results with two operations. The operation was unsuccessful in 8 patients. CONCLUSION: This method is one of the ideal methods of repairing medial canthal detachment, however its indications should be observed.

Adolescent↗

[Intraspinal implantation of genetically modified myoblasts with brain-derived neurotrophic factor gene in treating spinal cord injury in rats: neurophysiological study].

OBJECTIVE: To observe the value of gene therapy to spinal cord injury in vivo by transferring gene of brain-derived neurotrophic factor (BDNF) to rat myoblast with retroviral vector electrophysiologically. METHODS: Transection of spinal cord at the level of T9 was produced in 30 adult SD rats that were divided randomly into three groups: BDNF gene modified myoblast implantation (group A), myoblast implantation (group B), and no cell implantation as controls (group C). Three months after operation, whether the axon had regenerated and how the neural function was restored were observed, using the techniques of cerebral somatosensory evoked potential (CSEP) and motor evoked potential (MEP). RESULTS: Three months after injury, 3 rats in group A showed CSEP signals and 5 rats MEP signals, but no electrophysiological response was found in group B or group C. The amplitudes of the recovery of CSEP or MEP signals decreased and their latencies increased as compared with those before injury. The neural function of the spinal cord was greater in group A than in B and C. CONCLUSION: Treatment with genetically modified myoblasts producing BDNF can accelerate recovery from traumatic spinal cord injury in adult rats.

Animals↗

[Longitudinal study about the function of pituitary-thyroid axis in pregnancy].

OBJECTIVE: To evaluate the change about the function of pituitary-thyroid axis and the role of human chorionic gonadotropin (hCG) on regulation of pituitary-thyroid axis in pregnancy. METHODS: The study was designed to provide longitudinal information of parameters of thyroid function and hCG in 74 healthy women during pregnancy and after delivery. Serum free triiodothyronine (FT3), free thyroxin (FT4), TT3, TT4, hCG and thyroid hormone binding globulin (TBG) concentrations were measured with radioimmunoassary and serum TSH concentration with immunoradiometric assay. RESULTS: (1) The FT3 and FT4 values below the reference range were 5.88% and 9.80%, respectively, in third trimester and after delivery, both were 38.10%. The serum TSH level below the reference range was 31.25% in first trimester and supranormal were 11.90% after delivery. The serum hCG level at all stages of pregnancy was higher than postpartum. (2) The serum FT3 level was significantly higher in first (4.37 +/- 0.78) pmol/L and second (4.75 +/- 0.90) pmol/L trimesters than postpartum (2.96 +/- 0.84) pmol/L, decreased in third trimester (3.94 +/- 0.75) pmol/L and the lowest level after delivery. The serum FT4 level was significantly higher in first (14.07 +/- 1.44) poml/L and second (12.86 +/- 0.84) pmol/L trimesters than postpartum (10.45 +/- 1.45) poml/L, decreased in third trimester (11.29 +/- 1.00) pmol/L and the lowest level after delivery. (3) The serum TSH level was the lowest values in early pregnancy (0.88 +/- 0.83) mU/L, showed significant increase in second (1.86 +/- 1.04) mU/L and third (1.48 +/- 0.90) mU/L trimesters and reached maximal level after delivery (2.82 +/- 1.42) mU/L. (4) The serum hCG level was the highest in early pregnancy (309.05 +/- 320.02) micrograms/L, then significant decreased in second (69.11 +/- 19.18) micrograms/L and third (86.25 +/- 44.60) micrograms/L trimesters and was the lowest levels after delivery (29.92 +/- 20.91) micrograms/L. (5) A significant negative correlation between TSH and hCG levels and a significant positive correlation between hCG and FT4 and TT4/TBG were demonstrated. CONCLUSIONS: (1) hCG may be as role on regulation of pituitary-thyroid axis during pregnancy and during certain time of postpartum. (2) After delivery, part of women were transient hypothyroxinemia.

Adult↗

Endocytic routes of exogenous antigen in murine dendritic cells and macrophages.

OBJECTIVE: To compare the endocytic routes of exogenous antigen between murine dendritic cells (DCs) and macrophages (M phi s). METHODS: Murine bone marrow-derived DCs and peritoneal M phi s were pulsed with horseradish peroxidase (HRP)-5 nm colloidal gold for 10 minutes, then grouped and chased for 0-120 minutes in culture medium. Intracellular distribution of 5 nm colloidal gold was explored by means of the cellular enzymatic-chemistry of acid phosphatase and MHC II immuno-cytochemistry under electron microscope. RESULTS: After 10 minutes of pulse with HRP-5 nm colloidal gold and 30 minutes of chase, most HRP-5 nm gold particles internalized by DCs entered into MHC class II compartments (M II Cs), and a small portion entered into acid phosphatase-positive lysosomes. In contrast to DCs, most M phi s lysosomes were accessed by HRP-5 nm gold particles, and a small portion of HRP-5 nm gold particles entered into M II Cs. After 60 minutes of chase, 5 nm gold particles could hardly be seen within M phi s, whereas most 5 nm gold particles were still retained in DCs. CONCLUSIONS: The endocytic route of exogenous antigen in DCs seems to be different from that in M phi s. Antigens taken by M phi s mainly enter into lysosomes within 30 minutes. In the case of DCs, most internalized antigens enter into M II Cs, which may be related to their unique antigen-presenting function. In addition, M phi s seem to have more powerful capacity to scavenge exogenous antigen than DCs.

Acid Phosphatase↗

Recording of spared motor evoked potentials and its augmentation by 4-aminopyridine in chronic spinal cord-injured rats.

OBJECTIVE: To research the direct electrophysiological evidence of discomplete spinal cord injury (SCI) and the effect of 4-aminopyridine on it. METHODS: Motor evoked potentials (MEPs), both spinal cord recorded MEPs (scMEPs) and extracellularly recorded MEPs (exMEPs) were recorded and characterized on a T13 epidural electrode (scMEPs) and an extracellular microelectrode (exMEPs) for 10 normal rats and 40 rats with lesions of various severity (sham, 35 g.cm force (gcf), 70 gcf, 100 gcf impact injury) at the T8-T9 cord using the Allen's drop model. The incline plane and Tarlov techniques were used to assess clinical neurological function. RESULTS: MEPs in the normal rats were elicited by applying transcortical suprathreshold stimulation consisting of 3-4 early negative peaks (N1, N2, N3 and N4) followed by several late waves. The N1 and N2 peaks were largest in the anterior and ventrolateral funiculus, respectively, which was indicative of extrapyramidal pathways. The 100 gcf impact injuries and the cord transection abolished the MEP distal to the lesion, whereas the 35 gcf injuries resulted in a latency shift and amplitude decrement of the MEP peaks. Eighteen of the 20 rats with 70 gcf-injuries showed clinical paraplegia. Among them, 7 rats had neurophysiological evidence of residual conduction pathways through the lesioned cord segment, such as the presence of N1 and N2 peaks in the scMEPs or exMEPs. After 4-aminopyridine (4-AP) administrations (1 mg/kg), the amplitude of the spared exMEP increased significantly and spread more widely. CONCLUSIONS: MEPs evoked by transcortical stimulation travel mostly in the extrapyramidal tract. MEP monitoring could provide an excellent method of detecting the functional integrity of the motor tracts after SCI, and could even detect spared motor fibers after discomplete SCI. Furthermore, the use of 4-AP or other K+ channel blocking agents may be a potential treatment for patients with chronic moderate to severe SCI.

4-Aminopyridine↗

Two forms of UvrC protein with different double-stranded DNA binding affinities.

Using phosphocellulose followed by single-stranded DNA-cellulose chromatography for purification of UvrC proteins from overproducing cells, we found that UvrC elutes at two peaks: 0.4 m KCl (UvrCI) and 0.6 m KCl (UvrCII). Both forms of UvrC have a major peptide band (>95%) of the same molecular weight and identical N-terminal amino acid sequences, which are consistent with the initiation codon being at the unusual GTG site. Both forms of UvrC are active in incising UV-irradiated, supercoiled phiX-174 replicative form I DNA in the presence of UvrA and UvrB proteins; however, the specific activity of UvrCII is one-fourth that of UvrCI. The molecular weight of UvrCII is four times that of UvrCI on the basis of results of size exclusion chromatography and glutaraldehyde cross-linking reactions, indicating that UvrCII is a tetramer of UvrCI. Functionally, these two forms of UvrC proteins can be distinguished under reaction conditions in which the protein/nucleotide molar ratio is >0.06 by using UV-irradiated, (32)P-labeled DNA fragments as substrates; under these conditions UvrCII is inactive in incision, but UvrCI remains active. The activity of UvrCII in incising UV-irradiated, (32)P- labeled DNA fragments can be restored by adding unirradiated competitive DNA, and the increased level of incision corresponds to a decreased level of UvrCII binding to the substrate DNA. The sites of incision at the 5' and 3' sides of a UV-induced pyrimidine dimer are the same for UvrCI and UvrCII. Nitrocellulose filter binding and gel retardation assays show that UvrCII binds to both UV-irradiated and unirradiated double-stranded DNA with the same affinity (K(a), 9 x 10(8)/m) and in a concentration-dependent manner, whereas UvrCI does not. These two forms of UvrC were also produced by the endogenous uvrC operon. We propose that UvrCII-DNA binding may interfere with Uvr(A)(2)B-DNA damage complex formation. However, because of its low copy number and low binding affinity to DNA, UvrCII may not interfere with Uvr(A)(2)B-DNA damage complex formation in vivo, but instead through double-stranded DNA binding UvrCII may become concentrated at genomic areas and therefore may facilitate nucleotide excision repair.

Bacterial Proteins↗

First demonstration of an inhibitory activity of milk proteins against human immunodeficiency virus-1 reverse transcriptase and the effect of succinylation.

A variety of milk proteins including lactoferrin, angiogenin-1, alpha-lactalbumin, beta-lactoglobulin, lactoperoxidase, casein and the novel whey proteins lactogenin and glycolactin were tested for inhibitory activity toward human immunodeficiency virus-1 reverse transcriptase (HIV-1 RT), alpha-glucosidase, beta-glucosidase and beta-glucuronidase. Lactoferrin exerted the most potent inhibitory action with an IC50 of about 6 microM. Lactoperoxidase, lactogenin, angiogenin-1 and glycolactin inhibited HIV-1 RT activity with decreasing potencies. Beta-lactoglobulin, alpha-lactalbumin and casein displayed little or no inhibitory effect. Succinylation with succinic anhydride augmented the inhibitory effect of glycolactin, beta-lactoglobulin, alpha-lactalbumin, casein and human lactoferrin. The inhibitory effect of the various milk proteins on the activities of alpha-glucosidase, beta-glucosidase and beta-glucuronidase was meager. Succinylation tended to increase the alpha-glucosidase-inhibitory effect of milk proteins but neither their beta-glucosidase-inhibitory nor beta-glucuronidase-inhibitory effect was affected.

Animals↗

Assay of glutathione in individual mouse peritoneal macrophages by capillary zone electrophoresis with electrochemical detection.

Glutathione (GSH) in individual mouse peritoneal macrophages was determined by capillary zone electrophoresis with electrochemical end-column amperometric detection at a gold/mercury amalgam microelectrode. A capillary of 20 microm inner diameter was suitable for determination of GSH in an individual macrophage with a good signal-to-noise ratio. Individual macrophages could be drawn into the capillary with the aid of a inverted microscope. Lysing cells was studied in different buffer solutions. 0.01 mol/liter NaOH was selected to lyse macrophages. In this method, the usual calibration curve of GSH could not be used for the quantification of GSH in individual macrophages. It was found that standard GSH injected after analyzing each cell could be served as external standard. The whole cell injection and the lack of necessity of a derivatization reaction lead to more accurate and precise results. The average amount of GSH in an individual mouse peritoneal macrophage is 5.8 fmol, which is consistent with the literature value.

Animals↗

Dimerization-dependent block of the proapoptotic effect of p75(NTR).

The biochemical mechanism by which neurons become dependent on neurotrophins for survival is unknown. We found previously that the common neurotrophin receptor, p75(NTR), is a mediator of neurotrophin dependence and that this effect requires a novel type of domain dubbed a neurotrophin dependence domain. We report here that, in contrast to other proapoptotic receptors such as Fas, apoptosis induction by p75(NTR) requires monomerization, with dimerization inhibiting the effect. Blocking the proapoptotic effect of the monomer by dimerization requires a distinct domain that lies at the carboxyterminus of p75(NTR). These results define a novel type of domain required for inhibiting apoptosis induction by p75(NTR).

Apoptosis↗

Measurement of chloramphenicol by capillary zone electrophoresis following end-column amperometric detection at a carbon fiber micro-disk array electrode.

Capillary zone electrophoresis was employed for the measurement of chloramphenicol using end-column amperometric detection with a carbon fiber micro-disk array electrode, at a constant potential of -1.00 V vs. saturated calomel electrode. The effect of oxygen in the buffer has been investigated. It is found that when the area of the carbon fiber electrode is smaller than 1.1 mm2, the interference of oxygen can be overcome. In this procedure deoxygenation is not necessary. The effect of pH, the concentration of the buffer and the high separation voltage across the capillary on the migration time, electrophoretic peak current and separation efficiency has been studied. The optimum conditions of separation and detection are 8.4x10(-4) mol/l HOAc-3.2x10(-3) mol/l NaOAc for the buffer solution, 20 kV for the separation voltage, 5 kV and 5 s for the injection voltage and the injection time, respectively. The calibration plot was found to be linear in the range 5x10(-6) to 1x10(-3) mol/l and the limit of detection is 9.1x10(-7) mol/l or 1.4 fmol (S/N=2). The relative standard deviation is 1.1% for the migration time and 2.3% for the electrophoretic peak current. The method was applied to the determination of chloramphenicol in human serum.

Anti-Bacterial Agents↗

Role of p53 tumor suppressor gene in the toxicity of TCDD, endrin, naphthalene, and chromium (VI) in liver and brain tissues of mice.

It has been postulated that tumor suppressor genes are involved in the cascade of events leading to the toxicity of diverse xenobiotics. Therefore, we have assessed the comparative effects of 0.01, 0.10, and 0.50 median lethal doses (LD(50)) of 2,3,7, 8-tetrachlorodibenzo-p-dioxin (TCDD), endrin, naphthalene, and sodium dichromate (VI) [Cr(VI)] on lipid peroxidation, DNA fragmentation, and enhanced production of superoxide anion (cytochrome c reduction) in liver and brain tissues of p53-deficient and standard C57BL/6NTac mice to determine the role of p53 gene in the toxic manifestations produced by these diverse xenobiotics. In general, p53-deficient mice are more susceptible to all four xenobiotics than C57BL/6NTac mice, with dose-dependent effects being observed. Specifically, at a 0.50 LD(50) dose, naphthalene and Cr(VI) induced the greatest toxicity in the liver tissue of mice, and naphthalene and endrin exhibited the greatest effect in the brain tissue. At this dose, TCDD, endrin, naphthalene, and Cr(VI) induced 2.3- to 3.7-fold higher increases in hepatic lipid peroxidation and 1.8- to 3.0-fold higher increases in brain lipid peroxidation in p53-deficient mice than in C57BL/6NTac mice. At a 0. 10 LD(50) dose, TCDD, endrin, naphthalene, and Cr(VI) induced 1.3- to 1.8-fold higher increases in hepatic lipid peroxidation and 1.4- to 1.9-fold higher increases in brain lipid peroxidation in p53-deficient mice than in C57BL/6NTac mice. Similar results were observed with respect to DNA fragmentation and cytochrome c reduction (superoxide anion production). For example, at the 0.10 LD(50) dose, the four xenobiotics induced increases of 1.6- to 3. 0-fold and 1.5- to 2.1-fold in brain and liver DNA fragmentation, respectively, and increases of 1.5- to 2.3-fold and 1.4- to 2.5-fold in brain and liver cytochrome c reduction (superoxide anion production), respectively, in p53-deficient mice compared with control C57BL/6NTac mice. These results suggest that the p53 tumor suppressor gene may play a role in the toxicity of structurally diverse xenobiotics.

Animals↗

Liver bypass significantly increases the transduction efficiency of recombinant adenoviral vectors in the lung, intestine, and kidney.

Recombinant adenoviruses have great potential as gene delivery systems because of their ability to infect a wide range of target cells. However, systemic delivery of viral vectors to tissues other than liver and spleen has been inefficient because of the rapid clearance of the circulating virus by the liver. In the present study we tested the hypothesis that a systemic administration of E1-deleted recombinant adenovirus vectors that bypasses the hepatic circulation will lead to enhanced expression of these vectors in extrahepatic tissues. The portal vein and hepatic artery in B6/129 F1 mice were clamped and an E1-deleted recombinant adenovirus carrying the beta-galactosidase gene (Ad.CBlacZ) was then administered through the retroorbital venous plexus. The clamp was released 30 min after viral injection with no major chronic ischemic consequences noted. High levels of LacZ expression were detected predominantly in the vessels and capillaries of the lung, intestinal wall, and renal glomeruli 7 days after viral infusion. The transgene expression persisted for at least 21 days. Intense LacZ staining was also observed in the liver, suggesting that liver infection occurred after the portal clamp was released. A retroorbital infusion of anti-adenovirus neutralizing antibodies 5 min before the release of the portal clamp significantly reduced postclamp viral infection to the liver, while LacZ expression in lung and intestine persisted after the antibody treatment. Taken together, these results suggest that liver bypass can significantly improve the transduction efficiency in the other target organs. This method could be used to develop animal models of human diseases that predominantly affect the vessels of the lung, intestine, and kidney.

Adenoviridae↗

Synthesis of thiamacrocycles and conformational studies on their precursors

1-(4-Nitrophenyl)-7-phenylthioheptane (1) and -9-phenylthiononane (2) have been synthesized and their conformations studied in solution and in the solid state. MMX calculations suggest that the global energy minimum structures are bent in the gas phase, probably owing to edge-to-face intramolecular attractive interaction between the electron rich and the electron poor terminal aryl groups. These conformations were confirmed in solution using 2D NOESY NMR. In the solid state, 1 and 2 exist in the staggered, linear conformation, stacked head-to-tail, with the plane of the nitro group being tilted above the plane of the benzene ring. It appears that the crystal lattice forces overcome the weak edge-to-face intramolecular aromatic interactions that dominate in the gas phase and in solution. The corresponding azides were treated with trifluoromethanesulfonic acid to generate the nitrenium ions, which underwent intramolecular ring-closure to give the corresponding 17- and 19-membered ring thiamacrocycles in modest yields. These results support the suggestion that MMX calculations on appropriate model compounds may be useful in predicting which precursors will lead to macrocycles and which will not.

Journal Article↗