Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Wayne Lang is active.

Publication


Featured researches published by Wayne Lang.


Blood | 2011

R723, a selective JAK2 inhibitor, effectively treats JAK2V617F-induced murine myeloproliferative neoplasm

Kotaro Shide; Takuro Kameda; Vadim Markovtsov; Haruko Shimoda; Elizabeth Tonkin; Shuling Fang; Chian Liu; Marina Gelman; Wayne Lang; Jason Romero; John McLaughlin; Somasekhar Bhamidipati; Jeffrey Clough; Caroline Low; Andrea Reitsma; Stacey Siu; Polly Pine; Gary Park; Allan Torneros; Matt Duan; Rajinder Singh; Donald G. Payan; Takuya Matsunaga; Yasumichi Hitoshi; Kazuya Shimoda

The activating mutations in JAK2 (including JAK2V617F) that have been described in patients with myeloproliferative neoplasms (MPNs) are linked directly to MPN pathogenesis. We developed R723, an orally bioavailable small molecule that inhibits JAK2 activity in vitro by 50% at a concentration of 2nM, while having minimal effects on JAK3, TYK2, and JAK1 activity. R723 inhibited cytokine-independent CFU-E growth and constitutive activation of STAT5 in primary hematopoietic cells expressing JAK2V617F. In an anemia mouse model induced by phenylhydrazine, R723 inhibited erythropoiesis. In a leukemia mouse model using Ba/F3 cells expressing JAK2V617F, R723 treatment prolonged survival and decreased tumor burden. In V617F-transgenic mice that closely mimic human primary myelofibrosis, R723 treatment improved survival, hepatosplenomegaly, leukocytosis, and thrombocytosis. R723 preferentially targeted the JAK2-dependent pathway rather than the JAK1- and JAK3-dependent pathways in vivo, and its effects on T and B lymphocytes were mild compared with its effects on myeloid cells. Our preclinical data indicate that R723 has a favorable safety profile and the potential to become an efficacious treatment for patients with JAK2V617F-positive MPNs.


The FASEB Journal | 2014

Inhibition of Janus kinase signaling during controlled mechanical ventilation prevents ventilation-induced diaphragm dysfunction

Ira J. Smith; Guillermo L. Godinez; Baljit Singh; Kelly McCaughey; Raniel R. Alcantara; Tarikere L. Gururaja; Melissa S. Ho; Henry N. Nguyen; Annabelle M. Friera; Kathy White; John R. McLaughlin; Derek Hansen; Jason Romero; Kristen A. Baltgalvis; Mark D. Claypool; Wei Li; Wayne Lang; George C. Yam; Marina Gelman; Rongxian Ding; Stephanie Yung; Daniel P. Creger; Yan Chen; Rajinder Singh; Ashley J. Smuder; Michael P. Wiggs; Oh-Sung Kwon; Kurt J. Sollanek; Scott K. Powers; Esteban Masuda

Controlled mechanical ventilation (CMV) is associated with the development of diaphragm atrophy and contractile dysfunction, and respiratory muscle weakness is thought to contribute significantly to delayed weaning of patients. Therefore, therapeutic strategies for preventing these processes may have clinical benefit. The aim of the current study was to investigate the role of the Janus kinase (JAK)/signal transducer and activator of transcription 3 (STAT3) signaling pathway in CMV‐mediated diaphragm wasting and weakness in rats. CMV‐induced diaphragm atrophy and contractile dysfunction coincided with marked increases in STAT3 phosphorylation on both tyrosine 705 (Tyr705) and serine 727 (Ser727). STAT3 activation was accompanied by its translocation into mitochondria within diaphragm muscle and mitochondrial dysfunction. Inhibition of JAK signaling during CMV prevented phosphorylation of both target sites on STAT3, eliminated the accumulation of phosphorylated STAT3 within the mitochondria, and reversed the pathologic alterations in mitochondrial function, reduced oxidative stress in the diaphragm, and maintained normal diaphragm contractility. In addition, JAK inhibition during CMV blunted the activation of key proteolytic pathways in the diaphragm, as well as diaphragm atrophy. These findings implicate JAK/STAT3 signaling in the development of diaphragm muscle atrophy and dysfunction during CMV and suggest that the delayed extubation times associated with CMV can be prevented by inhibition of Janus kinase signaling.—Smith, I. J., Godinez, G. L., Singh, B. K., McCaughey, K. M., Alcantara, R. R., Gururaja, T., Ho, M. S., Nguyen, H. N., Friera, A. M., White, K. A., McLaughlin, J. R., Hansen, D., Romero, J. M., Baltgalvis, K. A., Claypool, M. D., Li, W., Lang, W., Yam, G. C., Gelman, M. S., Ding, R., Yung, S. L., Creger, D. P., Chen, Y., Singh, R., Smuder, A. J., Wiggs, M. P., Kwon, O.‐S., Sollanek, K. J., Powers, S. K., Masuda, E. S., Taylor, V. C., Payan, D. G., Kinoshita, T., Kinsella, T. M. Inhibition of Janus kinase signaling during controlled mechanical ventilation prevents ventilation‐induced diaphragm dysfunction. FASEB J. 28, 2790–2803 (2014). www.fasebj.org


PLOS ONE | 2014

Noninvasive imaging of in vivo MuRF1 expression during muscle atrophy.

Wei Li; Mark D. Claypool; Annabelle M. Friera; John McLaughlin; Kristen A. Baltgalvis; Ira J. Smith; Taisei Kinoshita; Kathy White; Wayne Lang; Guillermo L. Godinez; Donald G. Payan; Todd M. Kinsella

Numerous human diseases can lead to atrophy of skeletal muscle, and loss of this tissue has been correlated with increased mortality and morbidity rates. Clinically addressing muscle atrophy remains an unmet medical need, and the development of preclinical tools to assist drug discovery and basic research in this effort is important for advancing this goal. In this report, we describe the development of a bioluminescent gene reporter rat, based on the zinc finger nuclease-targeted insertion of a bicistronic luciferase reporter into the 3′ untranslated region of a muscle specific E3 ubiquitin ligase gene, MuRF1 (Trim63). In longitudinal studies, we noninvasively assess atrophy-related expression of this reporter in three distinct models of muscle loss (sciatic denervation, hindlimb unloading and dexamethasone-treatment) and show that these animals are capable of generating refined detail on in vivo MuRF1 expression with high temporal and anatomical resolution.


Molecular Biology of the Cell | 2005

Critical role of the ubiquitin ligase activity of UHRF1, a nuclear RING finger protein, in tumor cell growth

Yonchu Jenkins; Vadim Markovtsov; Wayne Lang; Poonam Sharma; Denise Pearsall; Justin Warner; Christian Franci; Betty Huang; Jianing Huang; George C. Yam; Joseph P. Vistan; Erlina Pali; Jorge Vialard; Michel Janicot; James B. Lorens; Donald G. Payan; Yasumichi Hitoshi


American Journal of Physiology-heart and Circulatory Physiology | 2014

Exercise performance and peripheral vascular insufficiency improve with AMPK activation in high-fat diet-fed mice

Kristen A. Baltgalvis; Kathy White; Wei Li; Mark Claypool; Wayne Lang; Raniel R. Alcantara; Baljit Singh; Annabelle M. Friera; John McLaughlin; Derek Hansen; Kelly McCaughey; Henry Nguyen; Ira J. Smith; Guillermo L. Godinez; Simon J. Shaw; Dane Goff; Rajinder Singh; Vadim Markovtsov; Tian-Qiang Sun; Yonchu Jenkins; Gerald Uy; Yingwu Li; Alison Pan; Tarikere L. Gururaja; David C.W. Lau; Gary Park; Yasumichi Hitoshi; Donald G. Payan; Todd M. Kinsella


Chemistry & Biology | 2003

Cellular Localization and Antiproliferative Effect of Peptides Discovered from a Functional Screen of a Retrovirally Delivered Random Peptide Library

Yasumichi Hitoshi; Tarikere L. Gururaja; Denise Pearsall; Wayne Lang; Poonam Sharma; Betty Huang; Susan Catalano; John McLaughlin; Erlina Pali; Beau Robert Peelle; Jorge Vialard; Michel Janicot; W. Wouters; Walter Luyten; Mark K. Bennett; Dave C. Anderson; Donald G. Payan; James B. Lorens; Jacob Bogenberger; Susan Demo


Cancer Research | 2005

Critical role of the ubiquitin ligase activity of Np95, a nuclear RING finger protein, in tumor cell growth

Yonchu Jenkins; Vadim Markovtsov; Wayne Lang; Poonam Sharma; Denise Pearsall; Justin Warner; Christian Franci; Betty C.B. Huang; Jianing Huang; George C. Yam; Joseph P. Vistan; Erlina Pali; Jorge Vialard; Michel Janicot; James B. Lorens; Donald G. Payan; Yasumichi Hitoshi


Blood | 2008

In Vitro and in Vivo Inhibition of JAK2 Signaling by Potent and Selective JAK2 Inhibitor

Vadim Markovtsov; Elizabeth Tonkin; Shuling Fang; Chiang Liu; Marina Gelman; Wayne Lang; Jason Romero; John R. McLaughlin; Somasekhar Bhamidipati; Jeffrey Clough; Rajinder Singh; Caroline Low; Andrea Reitsma; Vanessa Taylor; Stacey Siu; Gary Park; David Sweeney; Polly Pine; Allan Torneros; George Clemens; Matt Duan; Ruby Daniel; Donald G. Payan; Sacha Holland; Yasumichi Hitoshi


Archive | 2015

diaphragmced protease activation in the Oxidative stress is required for mechanical

Scott K. Powers; Melissa A. Whidden; Ashley J. Smuder; Matthew B. Hudson; W. Bradley; Taisei Kinoshita; Kurt J. Sollanek; Esteban Masuda; Vanessa Taylor; P. Creger; Yan Chen; Rajinder Singh; Michael P. Wiggs; Wayne Lang; George C. Yam; Marina Gelman; Rongxian Ding; Stephanie Yung; R. McLaughlin; Derek Hansen; Jason Romero; Kristen A. Baltgalvis; Mark Claypool; Melissa S. Ho; Henry N. Nguyen; Annabelle M. Friera; Kathy White; Ira J. Smith; Guillermo L. Godinez; Baljit K. Singh


Molecular Cancer Therapeutics | 2007

Selective inhibitors of JAK2 kinase as potential therapeutic agents

Vadim Markovtsov; Diane Yu; Shuling Fang; Marina Gelman; Wayne Lang; Vanessa Taylor; Stacey Huynh; Roy Frances; John R. McLaughlin; Sohasekhar Bhamidipati; Jeffrey Clough; Rajinder Singh; Gary Park; David Sweeney; Elizabeth Tonkin; Rena Bahjat; Betty Y. Chang; Polly Pine; Ruby Daniel; Donald G. Payan; Sacha Holland; Yasumichi Hitoshi

Collaboration


Dive into the Wayne Lang's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Polly Pine

Walter Reed Army Institute of Research

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge