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Susan J Land

Publications and source records attributed to Susan J Land.

5 recordsLinked to original sources

Expression profiling identifies three pathways altered in cellular immortalization: interferon, cell cycle, and cytoskeleton.

Abrogation of cellular senescence, resulting in immortalization, is a necessary step in the tumorigenic transformation of a cell. Four independent, spontaneously immortalized Li-Fraumeni syndrome (LFS) cell lines were used to analyze the gene expression changes that may have given these cell lines the growth advantage required to become immortal. A cellular senescence-like phenotype can be induced in immortal LFS cells by treating them with the DNA methyltransferase (DNMT) inhibitor 5-aza-deoxycytidine. We hypothesized, therefore, that genes epigenetically silenced by promoter methylation are potentially key regulators of senescence. We used microarrays to compare the epigenetic gene expression profiles of precrisis LFS cells with immortal LFS cells. Gene ontology analysis of the expression data revealed a statistically significant contribution of interferon pathway, cell cycle, and cytoskeletal genes in the process of immortalization. The identification of the genes and pathways regulating immortalization will lead to a better understanding of cellular immortalization and molecular targets in cancer and aging.

Azacitidine↗

The impact of CAG repeats in exon 1 of the androgen receptor on disease progression after prostatectomy.

BACKGROUND: The authors examined the impact of the number of CAG repeats in exon 1 of the androgen receptor on disease progression among men with prostate carcinoma after prostatectomy. This polymorphism has been associated with alterations in activity of the androgen receptor in in vitro systems and with the risk of clinically diagnosed prostate carcinoma in some epidemiologic studies. An earlier series found that, among men at low risk of progressive disease, a small number of CAG repeats predicted a high risk of recurrence, and the impact of CAG repeats varied among men with different risks of progressive disease. METHODS: The authors analyzed specimens from a large clinical series of fixed tissue specimens from men who underwent prostatectomy at a single institution, including 413 American white men (WM) and 298 African-American men (AAM), with 5-10 years of available clinical follow-up. RESULTS: There was little association between the number of CAG repeats and extent of disease, Gleason score, and preoperative PSA level at diagnosis. Overall, patients who had > 18 CAG repeats had a greater risk of recurrence compared with patients who had </= 18 CAG repeats (hazard ratio [HR] = 1.52; P = 0.03). Excess risk was not found among men who were at low risk of recurrence (HR = 0.93; P = 0.96); however, among men who were at high risk of recurrence, the risk elevated for WM (HR = 1.75; P = 0.28), AAM (HR = 1.49; P = 0.06), and both races combined (HR = 1.53; P = 0.03). CONCLUSIONS: Overall, men with prostate carcinoma who had > 18 CAG repeats had an estimated 52% increased risk of disease recurrence. The increased risk could be attributed to men who were at high risk of recurrence.

Adenine↗

Vitamin D receptor gene polymorphisms and disease free survival after radical prostatectomy.

BACKGROUND: Vitamin D has been linked with prostate cancer risk in epidemiologic studies and has antiproliferative, prodifferentiation, and antimetastatic properties in experimental systems. Its hormonal activity is mediated by the vitamin D receptor. We investigated whether germ-line genetic variation in the vitamin D receptor impacts progression of prostate cancer after radical prostatectomy. METHODS: We analyzed BsmI and TaqI polymorphisms using archived specimens from a large series of radical prostatectomy patients at a single institution. Our series included 428 white men (WM) and 310 African-American men (AAM) who were carefully and uniformly staged and followed for 5-10 years. RESULTS: The distribution of polymorphisms varied between WM and AAM. There was little association between genotype and extent of disease at diagnosis, Gleason score, preoperative PSA, or recurrence overall. Among WM with locally advanced disease, however, the BsmI B allele protected against recurrence in models examining gene dose (P = 0.04) and dominant effects (P = 0.05). CONCLUSIONS: Overall vitamin D receptor polymorphisms did not predict pathologic features of prostate cancer but may impact on risk of recurrence among men in certain risk groups. Analysis of polymorphisms may provide clues about the mechanisms through which vitamin D exerts its inhibitory effects on prostate cancer in vivo in men.

Black or African American↗

Epigenetic silencing of multiple interferon pathway genes after cellular immortalization.

Abrogating cellular senescence is a necessary step in the formation of a cancer cell. Promoter hypermethylation is an epigenetic mechanism of gene regulation known to silence gene expression in carcinogenesis. Treatment of spontaneously immortal Li-Fraumeni fibroblasts with 5-aza-2'-deoxycytidine (5AZA-dC), an inhibitor of DNA methyltransferase (DNMT), induces a senescence-like state. We used microarrays containing 12 558 genes to determine the gene expression profile associated with cellular immortalization and also regulated by 5AZA-dC. Remarkably, among 85 genes with methylation-dependent downregulation (silencing) after immortalization, 39 (46%) are known to be regulated during interferon signaling, a known growth-suppressive pathway. This work indicates that gene silencing may be associated with an early event in carcinogenesis, cellular immortalization.

Antimetabolites, Antineoplastic↗

Neuregulin expression at neuromuscular synapses is modulated by synaptic activity and neurotrophic factors.

The proper formation of neuromuscular synapses requires ongoing synaptic activity that is translated into complex structural changes to produce functional synapses. One mechanism by which activity could be converted into these structural changes is through the regulated expression of specific synaptic regulatory factors. Here we demonstrate that blocking synaptic activity with curare reduces synaptic neuregulin expression in a dose-dependent manner yet has little effect on synaptic agrin or a muscle-derived heparan sulfate proteoglycan. These changes are associated with a fourfold increase in number and a twofold reduction in average size of synaptic acetylcholine receptor clusters that appears to be caused by excessive axonal sprouting with the formation of new, smaller acetylcholine receptor clusters. Activity blockade also leads to threefold reductions in brain-derived neurotrophic factor and neurotrophin 3 expression in muscle without appreciably changing the expression of these same factors in spinal cord. Adding back these or other neurotrophic factors restores synaptic neuregulin expression and maintains normal end plate band architecture in the presence of activity blockade. The expression of neuregulin protein at synapses is independent of spinal cord and muscle neuregulin mRNA levels, suggesting that neuregulin accumulation at synapses is independent of transcription. These findings suggest a local, positive feedback loop between synaptic regulatory factors that translates activity into structural changes at neuromuscular synapses.

Animals↗