Zobrazeno 1 - 10
of 716
pro vyhledávání: '"T. Schafer"'
Publikováno v:
Biological Psychiatry. 93:616-621
Publikováno v:
JAIDS Journal of Acquired Immune Deficiency Syndromes.
Autor:
Zachary T. Schafer, Matthew M. Champion, W. Matthew Leevy, William J. Kaliney, Sarah E. Chapman, Brooke A. Conti, Ana Jakimenko, Kelsey J. Weigel
Figure S1. Additional Details on Mass Spectrometry Figure S2. CAF conditioned media promotes growth in soft agar. Figure S3. CAF-secreted IGFBPs Regulate Breast Cancer Cell Anoikis. Figure S4. Example Annotated MS/MS spectra for IGFBP-2 identificatio
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6768d3c18bc9d1ec8549b368d705e6f0
https://doi.org/10.1158/1541-7786.22511136.v1
https://doi.org/10.1158/1541-7786.22511136.v1
Autor:
Zachary T. Schafer, W. Matthew Leevy, Connor Wathen, Justin Diener, Sarah E. Chapman, Victoria R. Zellmer, Matthew R. Thau, Sienna M. Durbin, Calli A. Davison
Catalase elimination in MDA-MB-231 cells does not alter glucose uptake activity, Catalase elimination in MDA-MB-231cells does not alter cell proliferation, Catalase deficiency in MDA-MB-231 cells has no bearing on cell viability, Catalase deficiency
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::43444c3fca85b4b7e1cc37127c95e0f6
https://doi.org/10.1158/0008-5472.22395944.v1
https://doi.org/10.1158/0008-5472.22395944.v1
Autor:
Zachary T. Schafer, W. Matthew Leevy, Connor Wathen, Justin Diener, Sarah E. Chapman, Victoria R. Zellmer, Matthew R. Thau, Sienna M. Durbin, Calli A. Davison
The expression of antioxidant enzymes is unchanged during ECM-detachment and is comparable between untransformed and transformed cells, The expression of catalase leads to viability changes in the absence of apoptosis, Catalase re-expression rescues
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a0b44c968b3dd0a67cc9920f0e99d959
https://doi.org/10.1158/0008-5472.22395947
https://doi.org/10.1158/0008-5472.22395947
Autor:
Zachary T. Schafer, W. Matthew Leevy, Connor Wathen, Justin Diener, Sarah E. Chapman, Victoria R. Zellmer, Matthew R. Thau, Sienna M. Durbin, Calli A. Davison
Antioxidant compound treatment does not affect glucose uptake in detached MCF-10A cells, Antioxidant compound treatment does not alter cell viability in attached E7/Bcl2 cells, Antioxidant compound treatment can be reversible, Catalase expression has
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::1ade856e5b1c1f25290ab08005ddfa04
https://doi.org/10.1158/0008-5472.22395956.v1
https://doi.org/10.1158/0008-5472.22395956.v1
Autor:
Zachary T. Schafer, W. Matthew Leevy, Connor Wathen, Justin Diener, Sarah E. Chapman, Victoria R. Zellmer, Matthew R. Thau, Sienna M. Durbin, Calli A. Davison
SOD2 deficiency in T47D cells has a negligible impact on cell viability, SOD1 deficiency in T47D cells diminishes ATP levels in ECM-detached cells, Nrf2 deficiency in T47D cells diminishes ATP levels in ECM-detached cells, SOD2 deficiency in ErbB2 po
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::02fa0284f4892d72e570b5f41d125e7f
https://doi.org/10.1158/0008-5472.22395950
https://doi.org/10.1158/0008-5472.22395950
Publikováno v:
bioRxiv
The overproduction of cells and subsequent production of debris is a universal principle of neurodevelopment. Here we show an additional feature of the developing nervous system that causes neural debris – promoted by the sacrificial nature of embr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::c3286b214b474d84e6c506f2426338f4
https://europepmc.org/articles/PMC10055159/
https://europepmc.org/articles/PMC10055159/
Autor:
P Achenbach, D Adhikari, A Afanasev, F Afzal, C Aidala, A Al-bataineh, D Almaaloi, M Amaryan, D Androic, W Armstrong, M Arriatia, J Arrington, A Asaturyan, E Aschenauer, H Atac, H Avakian, T Averett, C Ayerbe Gayoso, X Bai, K Barish, N Barnea, G Basar, M Battaglieri, A Baty, I Bautista, A Bazilevsky, C Beattie, S Behera, V Bellini, R Bellwied, J Benesch, F Benmokhtar, C Bernardes, J Bernauer, H Bhatt, S Bhatta, M Boer, T Boettcher, S Bogacz, H Bossi, J Brandenburg, E Brash, R Briceno, W Briscoe, S Brodsky, D Brown, V Burkert, H Caines, I Cali, A Camsonne, D Carman, J Caylor, S Cerci, M Chamizo Llatas, J Chen, Y Chen, Y Chien, P Chou, X Chu, E Chudakov, E Cline, I Cloet, P Cole, M Conners, M Constantinou, W Cosyn, S Covrig Dusa, R Cruz-Torres, U D'Alesio, C da Silva, Z Davoudi, C Dean, D Dean, M Demarteau, A Deshpande, W Detmold, A Deur, B Devkota, S Dhital, M Diefenthaler, S Dobbs, M Doring, X Dong, R Dotel, K Dow, E Downie, J Drachenberg, A Dumitru, J Dunlop, R Dupre, J Durham, D Dutta, R Edwards, R Ehlers, L El Fassi, M Elaasar, L Elouadrhiri, M Engelhardt, R Ent, S Esumi, O Evdokimov, O Eyser, C Fanelli, R Fatemi, I Fernando, F Flor, N Fomin, A Frawley, T Federico, R Fries, C Gal, B Gamage, L Gamberg, H Gao, D Gaskell, F Geurts, Y Ghandilyan, R Gilman, C Gleason, K Gnanvo, R Gothe, S Greene, H Griesshammer, S Grossberndt, B Grube, D Hackett, T Hague, H Hakobyan, J Hansen, Y Hatta, M Hattawy, L Havener, O Hen, W Henry, D Higinbotham, T Hobbs, A Hodges, T Holmstrom, B Hong, T Horn, C Howell, H Huang, M Huang, S Huang, G Huber, C Hyde, E Isupov, P Jacobs, J Jalilian-Marian, A Jentsch, H Jheng, C Ji, X Ji, J Jia, D Jones, M Jones, N Kalantarians, G Kalicy, Z Kang, J Karthein, D Keller, C Keppel, V Khachartryan, D Kharzeev, M Kim, Y Kim, P King, E Kinney, S Klein, H Ko, V Koch, M Kohl, Y Kovchegov, G Krintiras, V Kubarovsky, S Kuhn, K Kumar, T Kutz, J Lajoie, J Lauret, I Lavrukhin, D Lawrence, J Lee, K Lee, S Lee, Y Lee, S Li, W Li, X Li, J Liao, H Lin, M Lisa, K Liu, M Liu, T Liu, S Liuti, N Liyanage, W Llope, C Loizides, R Longo, W Lorenzon, X Luo, R Ma, B McKinnon, D Meekins, Y Mehtar-Tani, W Melnitchouk, A Metz, C Meyer, Z Meziani, R Michaels, R Milner, H Mkrtchyan, P Mohanmurthy, B Mohanty, V Mokeev, I Mooney, C Morningstar, D Morrison, B Muller, S Mukherjee, J Mulligan, C Munoz Camacho, J Murillo Quijada, M Murray, S Nadeeshani, P Nadel-Turonski, J Nam, C Nattrass, G Nijs, J Norohna, J Noronha-Hostler, N Novitzky, M Nycz, F Olness, J Osborn, R Pak, B Pandey, M Paolone, Z Papandreou, J Paquet, S Park, K Paschke, B Pasquini, E Pasyuk, T Patel, A Patton, C Paudel, C Peng, J Peng, H Pereira Da Costa, D Perepelitsa, M Peters, P Petreczky, R Pisarski, D Pitonyak, M Ploskon, M Posik, J Poudel, R Pradhan, A Prokudin, C Pruneau, J Putschke, J Pybus, J Qiu, K Rajagopal, C Ratti, K Read, R Reed, D Richards, C Riedl, F Ringer, T Rinn, J Rittenhouse West, J Roche, A Rodas, G Roland, F Romero-Lopez, P Rossi, T Rostomyan, L Ruan, O Ruimi, N Saha, N Sahoo, T Sakaguchi, F Salazar, C Salgado, G Salme, S Salur, S Santiesteban, M Sargsian, M Sarsour, N Sato, T Satogata, S Sawada, T Schafer, B Scheihing-Hitschfeld, B Schenke, S Schindler, A Schmidt, R Seidl, M Sabestari, P Shanahan, C Shen, T Sheng, M Shepherd, A M Sickles, M Sievert, K Smith, Y Song, A Sorensen, P Souder, N Spareveris, S Srednyak, A Stahl Leiton, A Stasto, P Steinberg, S Stepanyan, M Stephanov, J Stevens, D Stewart, I Stewart, M Stojanovic, I Strakovsky, S Strauch, M Strickland, D Sunar Cerci, M Suresh, B Surrow, S Syritsyn, A Szczepaniak, A Tadepalli, A H Tang, J Tapia Takaki, T Tarnowsky, A Tawfik, M Taylor, C Tennant, A Thiel, D Thomas, Y Tian, A Timmins, P Tribedy, Z Tu, S Tuo, T Ullrich, E Umaka, N Ghimire, J Vary, J Velkovska, R Venugopalan, A Vijayakumar, I Vitev, W Vogelsang, R Vogt, A Vossen, E Voutier, V Vovchenko, A Walker-Loud, F Wang, J Wang, X Wang, L Weinstein, T Wenaus, S Weyhmiller, S Wissink, B Wojtsekhowski, C Wong, M Wood, Y Wunderlich, B Wyslouch, B Xiao, W Xie, W Xiong, N Xu, Q Xu, Z Xu, D Yaari, X Yao, Z Ye, C Yero, F Yuan, W Zajc, C Zhang, J Zhang, F Zhao, Y Zhao, Z Zhao, X Zheng, J Zhou
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::b4ad7699be12c363e91fdf400993b3d0
https://doi.org/10.2172/1962477
https://doi.org/10.2172/1962477
Publikováno v:
bioRxiv
Atypical chemokine receptor 3 (ACKR3) is an arrestin-biased receptor that regulates extracellular chemokine levels through scavenging. The scavenging action mediates the availability of the chemokine CXCL12 for the G protein-coupled receptor (GPCR) C
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::676638fcf1095a466d9f3d5af5fad1c1
https://europepmc.org/articles/PMC9980177/
https://europepmc.org/articles/PMC9980177/