PubMed Health⌕ Search

Biomedical subjects

Min Song

Publications and source records attributed to Min Song.

10 recordsLinked to original sources

Mimecan/osteoglycin-deficient mice have collagen fibril abnormalities.

PURPOSE: To study the role of mimecan, a member of the small leucine-rich proteoglycans (SLRPs) gene family and one of the major components of the cornea and other connective tissues, mice that lack a functional mimecan gene were generated and characterized. METHODS: Mimecan-deficient mice were generated by gene-targeting using standard techniques. Mice were genotyped by Southern blot analysis. The absence of mimecan transcripts was confirmed by Northern blot analysis. Corneal clarity was examined by slit lamp biomicroscopy. The strength of the skin was evaluated using a biomechanical skin fragility test. Collagen morphology in cornea and skin preparations from mimecan-null and control wild-type mice was analyzed by transmission electron microscopy. The diameter of collagen fibrils in these tissues was determined by morphometric analysis. RESULTS: Mice lacking mimecan appear to develop normally, are viable and fertile. In a controlled laboratory environment they do not display an evident pathological phenotype compared to wild type mice. Examination of corneal clarity and measurements of corneal thickness show no significant changes in the cornea. However, a skin fragility test revealed a moderate reduction in the tensile strength of skin from mutant mice. Ultrastructural analyses show, on average, thicker collagen fibrils in both corneal and skin preparations from mimecan-null mice. Collagen fibrils from the cornea of mutant mice show an average diameter of 31.84+/-0.322 nm, versus 22.40+/-0.296 nm in their wild type litter-mates. The most pronounced increase in collagen fibril diameter was found in the skin of mimecan-null mice, who demonstrated an average diameter of 130.33+/-1.769 nm, versus 78.82+/-1.157 nm in the wild type mice. In addition, size variability and altered collagen morphology was detected in dorsal and tail skin preparations from the mutant mice. CONCLUSIONS: The results of the present study demonstrate that mimecan, similar to other members of the SLRP gene family, has a role in regulating collagen fibrillogenesis in vivo. Further studies, such as functional challenges, an evaluation of potential compensation by other proteins (including members of the SLRP family), and generation of double-knockouts will be necessary to fully uncover physiological functions of mimecan in mice.

Animals↗

Tissue-specific regulation of Ca(2+) channel protein expression by sex hormones.

The L-type Ca(2+) channel pore-forming alpha subunit, alpha(1C) can be detected in brain and heart as two proteins with molecular masses of approximately 240 kDa and approximately 190 kDa known as alpha(1C-long) and alpha(1C-short), respectively. In brain, the alpha(1C-short) is thought to be the product of a approximately 50 kDa C-terminus calpain-mediated proteolytic deletion. We now show that uterine smooth muscle also possesses alpha(1C-long) and alpha(1C-short) isoforms, and that the relative expression of these two forms is regulated by sex hormones in a tissue-specific manner. Protein expression of alpha(1C) L-type Ca(2+) channels was examined in uterine smooth muscle, brain and heart, comparing non-pregnant (NP) estrus vs. late-pregnant (21 days) rats. The two forms of alpha(1C) were detected in all studied tissues. In late-pregnant uterus, alpha(1C-long) doubled the expression of alpha(1C-short); in NP uterus the opposite occurred. However, these changes were restricted to the uterine muscle, with no changes in brain and heart. To investigate the mechanism of such regulation, ovariectomized rats were treated with sex hormones, progesterone (P4) and/or 17beta-estradiol (estrogen, E2). P4 treatment, which yielded P4 plasma levels of 5 +/- 1 ng/ml and a high P4/E2 ratio (3 +/- 1.5 x 10(3)) similar to the ratio in late-pregnant uterus (1.5 +/- 0.3 x10(3)), facilitated alpha(1C-long) expression. In contrast, E2 or E2+P4 treatment that increased E2 plasma levels to 60 +/- 8 pg/ml and 75 +/- 24 pg/ml, produced low P4/E2 ratios of 0.03 +/- 0.006 and 0.2 +/- 0.1, respectively. These low P4/E2 ratios also found in NP rats at estrus (0.3 +/- 0.1) favored the expression of alpha(1C-short) form in myometrium. Neither hormone treatment altered alpha(1C) expression in brain or heart. Our results indicate that expression of alpha(1C) isoforms depends on P4/E2 ratios. Plasma P4/E2 ratios <1 x 10(3) favor the expression of the alpha(1C-short); whereas ratios >1 x 10(3) facilitate the expression of the alpha(1C-long) form. This regulation is tissue-specific for myometrium since it did not occur in heart and brain tissues.

Animals↗

Aging, ion channel expression, and vascular function.

Cardiovascular disease remains the leading cause of death in the United States, and aging is one of the main risk factors for its development. Coronary arteries nurture the heart, but as age progresses, they suffer changes that make them stiffer, thicker, and with higher spontaneous contractile activity. Even in the absence of pathological atherosclerotic lesions, these changes make the coronary arteries at risk for vasospasm and the individual at risk for myocardial ischemia and heart failure. Thus, knowledge of the molecular mechanisms involved in the vascular physiology, disease, and aging of the coronary circulation is required to develop strategies to preserve the quality of life of an increasingly aging population. One of the key factors that regulate coronary arterial tone is the activity of K+ channels in the vascular smooth muscle cells (SMCs). In particular, voltage-dependent and Ca(2+)-activated K+ (BKCa) channels, which are abundant in the coronary SMCs, are targets of vasoconstrictors and vasorelaxants, and play a key role in determining arterial tone and diameter. Aging induces a reduction in the density of the alpha-subunit of BKCa channels in coronary smooth muscle, lowers baseline endothelial release of the relaxant nitric oxide (NO), and increases the response to endothelial constrictor factors and K+. Thus, aging induces the remodeling of important proteins involved in the excitability and contractility of the coronary circulation. Altogether, these changes increase the risk of coronary artery vasospasm, myocardial ischemia, and infarct in the elderly.

Aging↗

[Expression of telomerase genes in mamary atypical ductal hyperplasia].

OBJECTIVE: To investigate the relationship of telomerase genes and the malignant transformation of atypical mammary ductal hyperplasia. METHODS: Telomerase genes hTR and hTRT in 50 cases of mammary hyperplasia (the cases included 6 benign hyperplasia, 9 mild atypical hyperplasia, 12 medium atypical hyperplasia, 23 severe atypical hyperplasia) and 26 cases of breast carcinoma were detected by in situ hybridization. RESULTS: The expression of hTR and hTRT mRNA were weak or negative in benign hyperplasia (1/6, 0), weaker in mild-moderate atypical hyperplasia (2/9, 1/9, 4/12, and 3/12), strong in severe atypical hyperplasia (14/23, 60.9% and 12/23, 52.1%), while very strong expression (23/26, 88.5% and 21/25, 80.8%) in carcinoma of the breast. The difference between mild-moderate atypical hyperplasia, invasive ductal carcinoma and severe atypical hyperplasia was significant (P < 0.05) and the difference between severe atypital hyperplasia and intraductal carcinoma was not significant (P > 0.05). CONCLUSIONS: Telmerase genes (hTR, hTRT) expression is closely related to the malignant transformation of atypical hyperplasia. The reactivated telomerase may play a crucial role in the development of breast cancer.

Breast Neoplasms↗

Expression of telomerase genes in cancer development in atypical hyperplasia of the mammary duct.

OBJECTIVE: To investigate telomerase gene expression in precancerous mammary lesion, such as atypical ductal hyperplasia and breast cancer and to study the relationship between expression and malignant transformation. METHODS: Expression of human telomerase genes (hTR) and human reverse transcriptase gene (hTRT) in 76 cases of mammary tissue was evaluated using in situ hybridization and included 50 cases of mammary hyperplasia, 6 of which were benign hyperplasia, 9 were mild atypical hyperplasia, 12 were moderate atypical hyperplasia, 23 were severe atypical hyperplasia and 26 were mammary cancer. RESULTS: The expressions of hTR and hTRT mRNA were much weaker or negative in benign hyperplasia (16.6%, 0), weak to mild moderate in atypical hyperplasia (22.2%, 11.1%, 33.3%, 25.0%), strong in severe atypical hyperplasia (60.9%, 52.1%), and significantly strong in mammary cancer (88.5%, 80.8%). The difference between mild-moderate atypical hyperplasia, invasive ductal carcinoma and severe atypical hyperplasia was significant (P < 0.05) and the difference between severe atypical hyperplasia and intraductal carcinoma was not significant (P > 0.05). CONCLUSION: Telomerase genes (hTR and hTRT) expressions are related to the transformation of atypical hyperplasia. Activated telomerase may play a role in mammary cancer development.

Breast↗

[Relationship between expressions of telomerase genes and apoptosis related genes in mammary ductal atypical hyperplasia].

BACKGROUND & OBJECTIVE: Recent studies showed that the activating of telomerase and excessive expression of apoptosis suppressor genes were related to the development of many tumors. This study was designed to investigate the expression of telomerase genes (hTR, hTRT) and apoptosis related genes (p53, bcl-2) in mammary atypical ductal hyperplasia for exploring the change of telomerase activity and apoptosis related genes in the process of mammary ductal dysplasia to malignant transformation. METHOD: Expressions of telomerase genes (hTR, hTRT) and apoptosis related genes (p53, bcl-2) were detected by in situ hybridization and expression of the mutant p53 protein was detected by immunohistochemistry were detected in 44 patients with mammary atypical ductal hyperplasia, those expression were compared with those of the 6 benign hyperplasia and 26 breast carcinoma. RESULT: High expressions of telomerase genes (hTR, hTRT mRNA) in severe atypical ductal hyperplasia (60.9%, 52.1%) is of significantly difference from that in mild-medium atypical ductal hyperplasia (22.2%, 11.1%; 33.3%, 25.0%) and breast cancer (88.5%, 80.8%). The upgrading of atypia link with decreased expression of wild p53 mRNA (mild: 55.6%; medium: 41.7%; severe: 26.1%) and increased expression of the mutant p53 protein (mild: 11.1%; medium: 25.0%; severe: 34.8%). As for bcl-2 mRNA, it shows moderate expression, especially in severe atypical ductal hyperplasia. CONCLUSION: Our study revealed significant correlation between expressions of telomerase genes (hTR, hTRT) and the state of malignant transformation in mammary atypical ductal hyperplasia. Decreased expression of wild p53 gene, increased expression of mutant p53 protein, and overexpression of bcl-2 gene were associated with telomerase.

Apoptosis↗

[Activation of phosphatidylinositol 3-kinase in human breast carcinoma].

BACKGROUND & OBJECTIVE: Phosphatidylinositol 3-kinase (PI3-K) has been implicated in the signaling pathways regulating cell growth by virtue of its activation in response to various mitogenic stimuli, but the role of PI3-K in human tumorigenesis has not yet to be defined. This study was designed to investigate the levels of both PI3-K protein and PI3-K mRNA and the activity of PI3-K in human breast tumors. METHODS: Western blot, immunoprecipitation, kinase activity assay, and RT-PCR were used to detect the expression and activity of PI3-K in 37 patients with breast cancers. RESULTS: Significantly increased expression of p85 subunit of PI3-K at levels of both protein and mRNA were found in 32 (86.49%) and 35(94.59%) out of the 37 breast tumors compared with adjacent normal tissue. Significantly higher level of the activity of PI3-kinase was observed in 25(67.57%) out of the 37 cases. CONCLUSIONS: PI3-K was highly activated in breast tumor tissue compared with adjacent normal tissue, suggesting that PI3-K was involved in the signal transduction of breast tumorigenesis. It may be a potential target for new strategies for the treatment of the patients with breast cancers.

Breast Neoplasms↗

[Effect of Smad 4 mRNA on the proliferation of rabbit epithelial cells].

OBJECTIVE: To assess the effects of Smad 4 mRNA on the proliferation and transformation of rabbit lens epithelial cells (LECs). METHODS: The expressions of Smad 4 mRNA and proliferating cell nuclear antigen (PCNA) in rabbit LECs in different periods after lens cortex absorption were detected by in situ hybridization (ISH) and immuno-histochemical methods respectively. RESULTS: (1) The expression of Smad 4 mRNA in the cytoplasm of normal rabbit lens epithelial cells was weakly positive. (2) The expression in the equatorial region and anterior subcapsular region on the postoperative first day was negative, and the light absorbance (A) was 0.39 and 0.36 respectively, P < 0.01 in comparison with the preoperative ones. (3) The expression of Smad 4 appeared again on the postoperative third day, and then increased gradually along with the prolongation of time. The expression of Smad 4 mRNA of cells in anterior subcapsular region reached its peak in the postoperative one month. The percentage of positive area was 1.31 and the average A value was 0.54. In the equatorial region, the expression was strongest in the postoperative one week, the percentage of positive area was 0.77 and the A value was 0.53, P < 0.01 in comparison with that before the operation. (4) In 1 - 2 months postoperatively, transformed fibroblasts appeared in the equatorial region. The expression of Smad 4 mRNA was positive in the cytoplasm of the transformed fibroblasts. The expression of PCNA was strongest on the postoperative first day, and afterwards it was gradually decreased. Until the postoperative one month, it restored to its preoperative level. CONCLUSIONS: The expression of Smad 4 mRNA presents in normal lens epithelial cells. Smad 4 mRNA participates in the proliferation and metabolism of lens epithelial cells. Smad 4 mRNA possibly participates in the procedure of transformation from lens epithelial cells to fibroblasts.

Animals↗

A spectroscopic study of the 3(1) pi g Rydberg state of 7Li2.

With pulsed optical-optical double resonance (OODR) fluorescence excitation spectroscopy Rydberg states of 7Li2 in the energy region of 35,500-38,000 cm-1 were studied and 146 transitions into the 3(1) pi g state of 7Li2 were measured. They were assigned to 10 vibrational levels of the 3(1) pi g state. A new set of Dunham constants, RKR potential curve, and Franck-Condon factors for the transitions form the A 1 sigma u+ state are derived. The perturbations between the 4(F)1 sigma g+, 5 (1) sigma g+, 6 (1) sigma g+, 2 (G) 1 pi g Rydberg states with the 3 (1) pi g state are discussed. The lambda-doubling splitting of the observed levels can be ignored with our accuracy (0.2 cm-1).

Energy Transfer↗