Searched for: person:renq01
The Occurrence of Papillary Thyroid Carcinoma in Patients Undergoing Thyroidectomy for Hurthle Cell Adenoma: A Comparative Study [Meeting Abstract]
Kong, M. X.; Ren, Q.; Wang, B.; Cangiarella, J.; Sun, W.
ISI:000308126900401
ISSN: 0309-0167
CID: 178295
Accurate assessment of HER2 status in 'triple-negative' breast cancer requires both IHC and FISH testing [Meeting Abstract]
Ren, Q.; Samdani, R.; Singh, B.
ISI:000308126900087
ISSN: 0309-0167
CID: 178293
Regulation of a novel androgen receptor target gene, cyclin B1, through androgen-dependent E2F family member switching
Li, Y; Zhang, DY; Ren, Q; Ye, F; Zhao, X; Daniels, G; Wu, X; Dynlacht, B; Lee, P
Malignant transformation of human prostatic epithelium is associated with loss of androgen receptor (AR) in the surrounding stroma. However, the function and mechanisms of AR signaling in prostate cancer (PCa) stroma remain elusive. Here we report that androgen and its receptor inhibit proliferation of prostate stromal cells through transcriptional suppression of cyclin B1 by Proteomics Pathway Array Analysis (PPAA), confirmed at mRNA and protein levels using AR negative or positive primary prostate stromal cells. Furthermore, AR showed a negative correlation with cyclin B1 expression in stroma of human PCa samples in vivo. Mechanistically, we identify cyclin B1 as a bona fide AR target gene in prostate stromal cells. The negative regulation of cyclin B1 by AR is mediated through switching between E2F1 and E2F4 on the promoter of cyclin B1. E2F1 binds to cyclin B1 promoter and maintains its expression and subsequent cell cycle progression in AR negative stromal cells or AR positive stromal cells when androgens are depleted. Upon stimulation with androgen in AR positive stromal cells, E2F1 is displaced from the binding site by AR and replaced with E2F4, leading to recruitment of the SMRT/HDAC3 co-repressor complex and repression of cyclin B1 at chromatin level. The switch between E2F1 and E2F4 at the E2F binding site of the cyclin B1 promoter coincides with an androgen-dependent interaction between AR and E2F1 as well as cytoplasmic to nuclear translocation of E2F4. Thus, we identified a novel mechanism for E2F factors in the regulation of cell cycle gene expression and cell cycle progression under the control of AR signaling.
PMCID:3434485
PMID: 22508987
ISSN: 0270-7306
CID: 164476
CD163 versus CD68 in tumor associated macrophages of classical hodgkin lymphoma
Harris, Jonathan A; Jain, Salvia; Ren, Qinghu; Zarineh, Alirezah; Liu, Cynthia; Ibrahim, Sherif
ABSTRACT: Classical Hodgkin lymphoma (CHL) is a B-cell lymphoproliferative disorder with a relatively good prognosis. A small but significant percentage of patients, however, will respond poorly to therapy. A recent gene expression profiling study has identified a macrophage signature which has been correlated with primary treatment failure, and immunohistochemical tissue microarray for CD68 was shown to reflect the gene signature as a potentially clinically useful marker to predict adverse prognosis.We examined 44 cases of CHL, mostly nodular sclerosis subtype, in which the immunohistochemical stains for the histiocytic markers CD68 and CD163 were performed. The staining intensity was graded for each stain (< 5, 5-25, and > 25 percent of cells positive in the Hodgkin cell (HC) rich nodules) and background staining characteristics were recorded.CD163 staining was lower than CD68 in HC rich nodules, with lower background staining (p 0.03). There was no significant difference between either CD68 or CD163 and disease recurrence in a subset (N = 41) of cases.In conclusion, we demonstrate that CD163 staining is lower than CD68, with less non-specific staining of background inflammatory cells and Hodgkin cells, therefore is a better marker for tumor associated macrophages. However, we did not identify a correlation between staining for CD68 or CD163 and recurrence of disease. VIRTUAL SLIDES: The virtual slide(s) for this article can be found here:http://www.diagnosticpathology.diagnomx.eu/vs/1460518258831620.
PMCID:3281786
PMID: 22289504
ISSN: 1746-1596
CID: 157482
Inactivation of the GacA response regulator in Pseudomonas fluorescens Pf-5 has far-reaching transcriptomic consequences
Hassan, Karl A; Johnson, Aaron; Shaffer, Brenda T; Ren, Qinghu; Kidarsa, Teresa A; Elbourne, Liam D H; Hartney, Sierra; Duboy, Robert; Goebel, Neal C; Zabriskie, T Mark; Paulsen, Ian T; Loper, Joyce E
The GacS/GacA signal transduction system is a central regulator in Pseudomonas spp., including the biological control strain P. fluorescens Pf-5, in which GacS/GacA controls the production of secondary metabolites and exoenzymes that suppress plant pathogens. A whole genome oligonucleotide microarray was developed for Pf-5 and used to assess the global transcriptomic consequences of a gacA mutation in P. fluorescens Pf-5. In cultures at the transition from exponential to stationary growth phase, GacA significantly influenced transcript levels of 635 genes, representing more than 10% of the 6147 annotated genes in the Pf-5 genome. Transcripts of genes involved in the production of hydrogen cyanide, the antibiotic pyoluteorin and the extracellular protease AprA were at a low level in the gacA mutant, whereas those functioning in siderophore production and other aspects of iron homeostasis were significantly higher in the gacA mutant than in wild-type Pf-5. Notable effects of gacA inactivation were also observed in the transcription of genes encoding components of a type VI secretion system and cytochrome c oxidase subunits. Two novel gene clusters expressed under the control of gacA were identified from transcriptome analysis, and we propose global-regulator-based genome mining as an approach to decipher the secondary metabolome of Pseudomonas spp.
PMID: 20089046
ISSN: 1462-2920
CID: 2245642
Complete genome sequence of the multiresistant taxonomic outlier Pseudomonas aeruginosa PA7
Roy, Paul H; Tetu, Sasha G; Larouche, Andre; Elbourne, Liam; Tremblay, Simon; Ren, Qinghu; Dodson, Robert; Harkins, Derek; Shay, Ryan; Watkins, Kisha; Mahamoud, Yasmin; Paulsen, Ian T
Pseudomonas aeruginosa PA7 is a non-respiratory human isolate from Argentina that is multiresistant to antibiotics. We first sequenced gyrA, gyrB, parC, parE, ampC, ampR, and several housekeeping genes and found that PA7 is a taxonomic outlier. We report here the complete sequence of the 6,588,339 bp genome, which has only about 95% overall identity to other strains. PA7 has multiple novel genomic islands and a total of 51 occupied regions of genomic plasticity. These islands include antibiotic resistance genes, parts of transposons, prophages, and a pKLC102-related island. Several PA7 genes not present in PAO1 or PA14 are putative orthologues of other Pseudomonas spp. and Ralstonia spp. genes. PA7 appears to be closely related to the known taxonomic outlier DSM1128 (ATCC9027). PA7 lacks several virulence factors, notably the entire TTSS region corresponding to PA1690-PA1725 of PAO1. It has neither exoS nor exoU and lacks toxA, exoT, and exoY. PA7 is serotype O12 and pyoverdin type II. Preliminary proteomic studies indicate numerous differences with PAO1, some of which are probably a consequence of a frameshift mutation in the mvfR quorum sensing regulatory gene.
PMCID:2809737
PMID: 20107499
ISSN: 1932-6203
CID: 2245652
The complete genome sequence of Haloferax volcanii DS2, a model archaeon
Hartman, Amber L; Norais, Cedric; Badger, Jonathan H; Delmas, Stephane; Haldenby, Sam; Madupu, Ramana; Robinson, Jeffrey; Khouri, Hoda; Ren, Qinghu; Lowe, Todd M; Maupin-Furlow, Julie; Pohlschroder, Mecky; Daniels, Charles; Pfeiffer, Friedhelm; Allers, Thorsten; Eisen, Jonathan A
BACKGROUND: Haloferax volcanii is an easily culturable moderate halophile that grows on simple defined media, is readily transformable, and has a relatively stable genome. This, in combination with its biochemical and genetic tractability, has made Hfx. volcanii a key model organism, not only for the study of halophilicity, but also for archaeal biology in general. METHODOLOGY/PRINCIPAL FINDINGS: We report here the sequencing and analysis of the genome of Hfx. volcanii DS2, the type strain of this species. The genome contains a main 2.848 Mb chromosome, three smaller chromosomes pHV1, 3, 4 (85, 438, 636 kb, respectively) and the pHV2 plasmid (6.4 kb). CONCLUSIONS/SIGNIFICANCE: The completed genome sequence, presented here, provides an invaluable tool for further in vivo and in vitro studies of Hfx. volcanii.
PMCID:2841640
PMID: 20333302
ISSN: 1932-6203
CID: 2245662
Higher Expression of Serine-213 Phosphorylated Androgen Receptor Level Is Associated With Prostate Cancer Recurrence [Meeting Abstract]
Jain, Shilpa; Ruoff, Rachael; Ha, Susan; Melamed, Jonathan; Wang, Jinhua; Ren, Qinghu; Lee, Peng; Logan, Susan
ISI:000282013900056
ISSN: 0002-9173
CID: 113734
The 2008 update of the Aspergillus nidulans genome annotation: a community effort
Wortman, Jennifer Russo; Gilsenan, Jane Mabey; Joardar, Vinita; Deegan, Jennifer; Clutterbuck, John; Andersen, Mikael R; Archer, David; Bencina, Mojca; Braus, Gerhard; Coutinho, Pedro; von Dohren, Hans; Doonan, John; Driessen, Arnold J M; Durek, Pawel; Espeso, Eduardo; Fekete, Erzsebet; Flipphi, Michel; Estrada, Carlos Garcia; Geysens, Steven; Goldman, Gustavo; de Groot, Piet W J; Hansen, Kim; Harris, Steven D; Heinekamp, Thorsten; Helmstaedt, Kerstin; Henrissat, Bernard; Hofmann, Gerald; Homan, Tim; Horio, Tetsuya; Horiuchi, Hiroyuki; James, Steve; Jones, Meriel; Karaffa, Levente; Karanyi, Zsolt; Kato, Masashi; Keller, Nancy; Kelly, Diane E; Kiel, Jan A K W; Kim, Jung-Mi; van der Klei, Ida J; Klis, Frans M; Kovalchuk, Andriy; Krasevec, Nada; Kubicek, Christian P; Liu, Bo; Maccabe, Andrew; Meyer, Vera; Mirabito, Pete; Miskei, Marton; Mos, Magdalena; Mullins, Jonathan; Nelson, David R; Nielsen, Jens; Oakley, Berl R; Osmani, Stephen A; Pakula, Tiina; Paszewski, Andrzej; Paulsen, Ian; Pilsyk, Sebastian; Pocsi, Istvan; Punt, Peter J; Ram, Arthur F J; Ren, Qinghu; Robellet, Xavier; Robson, Geoff; Seiboth, Bernhard; van Solingen, Piet; Specht, Thomas; Sun, Jibin; Taheri-Talesh, Naimeh; Takeshita, Norio; Ussery, Dave; vanKuyk, Patricia A; Visser, Hans; van de Vondervoort, Peter J I; de Vries, Ronald P; Walton, Jonathan; Xiang, Xin; Xiong, Yi; Zeng, An Ping; Brandt, Bernd W; Cornell, Michael J; van den Hondel, Cees A M J J; Visser, Jacob; Oliver, Stephen G; Turner, Geoffrey
The identification and annotation of protein-coding genes is one of the primary goals of whole-genome sequencing projects, and the accuracy of predicting the primary protein products of gene expression is vital to the interpretation of the available data and the design of downstream functional applications. Nevertheless, the comprehensive annotation of eukaryotic genomes remains a considerable challenge. Many genomes submitted to public databases, including those of major model organisms, contain significant numbers of wrong and incomplete gene predictions. We present a community-based reannotation of the Aspergillus nidulans genome with the primary goal of increasing the number and quality of protein functional assignments through the careful review of experts in the field of fungal biology.
PMCID:2826280
PMID: 19146970
ISSN: 1096-0937
CID: 2245592
Complete genome sequence of the aerobic CO-oxidizing thermophile Thermomicrobium roseum
Wu, Dongying; Raymond, Jason; Wu, Martin; Chatterji, Sourav; Ren, Qinghu; Graham, Joel E; Bryant, Donald A; Robb, Frank; Colman, Albert; Tallon, Luke J; Badger, Jonathan H; Madupu, Ramana; Ward, Naomi L; Eisen, Jonathan A
In order to enrich the phylogenetic diversity represented in the available sequenced bacterial genomes and as part of an "Assembling the Tree of Life" project, we determined the genome sequence of Thermomicrobium roseum DSM 5159. T. roseum DSM 5159 is a red-pigmented, rod-shaped, Gram-negative extreme thermophile isolated from a hot spring that possesses both an atypical cell wall composition and an unusual cell membrane that is composed entirely of long-chain 1,2-diols. Its genome is composed of two circular DNA elements, one of 2,006,217 bp (referred to as the chromosome) and one of 919,596 bp (referred to as the megaplasmid). Strikingly, though few standard housekeeping genes are found on the megaplasmid, it does encode a complete system for chemotaxis including both chemosensory components and an entire flagellar apparatus. This is the first known example of a complete flagellar system being encoded on a plasmid and suggests a straightforward means for lateral transfer of flagellum-based motility. Phylogenomic analyses support the recent rRNA-based analyses that led to T. roseum being removed from the phylum Thermomicrobia and assigned to the phylum Chloroflexi. Because T. roseum is a deep-branching member of this phylum, analysis of its genome provides insights into the evolution of the Chloroflexi. In addition, even though this species is not photosynthetic, analysis of the genome provides some insight into the origins of photosynthesis in the Chloroflexi. Metabolic pathway reconstructions and experimental studies revealed new aspects of the biology of this species. For example, we present evidence that T. roseum oxidizes CO aerobically, making it the first thermophile known to do so. In addition, we propose that glycosylation of its carotenoids plays a crucial role in the adaptation of the cell membrane to this bacterium's thermophilic lifestyle. Analyses of published metagenomic sequences from two hot springs similar to the one from which this strain was isolated, show that close relatives of T. roseum DSM 5159 are present but have some key differences from the strain sequenced.
PMCID:2615216
PMID: 19148287
ISSN: 1932-6203
CID: 2245602