Mei-Ju May Chen
University of Texas MD Anderson Cancer Center
36 Papers
46 Citations
Mei-Ju May Chen is an academic researcher from University of Texas MD Anderson Cancer Center. The author has contributed to research in topics: Genomics & Biology. The author has an hindex of 14, co-authored 34 publications. Previous affiliations of Mei-Ju May Chen include National Taiwan University & Agricultural Research Service.
Chat about Author
Papers
A model species for agricultural pest genomics: The genome of the Colorado potato beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae)
Sean D. Schoville,Yolanda H. Chen,Martin Andersson,Joshua B. Benoit,Anita Bhandari,Julia H. Bowsher,Kristian Brevik,Kaat Cappelle,Mei-Ju May Chen,Anna K. Childers,Christopher P. Childers,Olivier Christiaens,Justin Clements,Elise M. Didion,Elena N. Elpidina,Patamarerk Engsontia,Markus Friedrich,Inmaculada García-Robles,Richard A. Gibbs,Chandan Goswami,Alessandro Grapputo,Kristina Gruden,Marcin Grynberg,Bernard Henrissat,Bernard Henrissat,Bernard Henrissat,Emily C. Jennings,Jeffery W. Jones,Megha Kalsi,Sher Afzal Khan,Abhishek Kumar,Abhishek Kumar,Fei Li,Vincent Lombard,Vincent Lombard,Xingzhou Ma,Alexander G. Martynov,Nicholas J. Miller,Robert F. Mitchell,Monica Munoz-Torres,Anna Muszewska,Brenda Oppert,Subba Reddy Palli,Kristen A. Panfilio,Kristen A. Panfilio,Yannick Pauchet,Lindsey C. Perkin,Marko Petek,Monica F. Poelchau,Eric Record,Joseph P. Rinehart,Hugh M. Robertson,Andrew J. Rosendale,Victor M. Ruiz-Arroyo,Guy Smagghe,Zsofia Szendrei,Gregg W.C. Thomas,Alex S. Torson,Iris M. Vargas Jentzsch,Matthew T. Weirauch,Matthew T. Weirauch,Ashley D. Yates,George D. Yocum,June-Sun Yoon,Stephen Richards +64 more
TL;DR: Surprisingly, the suite of genes involved in insecticide resistance is similar to other beetles, and duplications in the RNAi pathway might explain why Leptinotarsa decemlineata has high sensitivity to dsRNA.
245
Multi-omics characterization of molecular features of gastric cancer correlated with response to neoadjuvant chemotherapy.
Ziyu Li,Xiangyu Gao,Xinxin Peng,Mei-Ju May Chen,Zhe Li,Bin Wei,Xian-Zi Wen,Baoye Wei,Dong Yu,Zhaode Bu,Aiwen Wu,Qi Wu,Lei Tang,Zhongwu Li,Yiqiang Liu,Li Zhang,Shuqin Jia,Lianhai Zhang,Fei Shan,Ji Zhang,Xiaojiang Wu,Xin Ji,Ke Ji,Xiaolong Wu,Jinyao Shi,Xiaofang Xing,Jianmin Wu,Guoqing Lv,Lin Shen,Xuwo Ji,Han Liang,Jiafu Ji +31 more
TL;DR: The multi-omic characterization of gastric cancer to detect key molecular features for neoadjuvant chemotherapy found that C10orf71 mutations were associated with treatment resistance, which was supported by drug response data and potentially through inhibition of cell cycle, and that MYC amplification correlated with treatment sensitivity, whereas MDM2 amplification showed the opposite pattern.
91
Improved annotation of the insect vector of citrus greening disease: biocuration by a diverse genomics community
Surya Saha,Prashant S. Hosmani,Krystal Villalobos-Ayala,Sherry Miller,Teresa D. Shippy,Mirella Flores,Andrew J. Rosendale,Chris Cordola,Tracey Bell,Hannah Mann,Gabe DeAvila,Daniel DeAvila,Zachary W. Q. Moore,Kyle Buller,Kathryn Ciolkevich,Samantha Nandyal,Robert Mahoney,Joshua Von Voorhis,Megan E. Dunlevy,David W. Farrow,David Hunter,Taylar Morgan,Kayla Shore,Victoria Guzman,Allison Izsak,Danielle E. Dixon,Danielle E. Dixon,Andrew G. Cridge,Liliana M. Cano,Xiaolong Cao,Haobo Jiang,Nan Leng,Shannon L. Johnson,Brandi L. Cantarel,Stephen Richards,Stephen Richards,Adam C. English,Adam C. English,Robert G. Shatters,Christopher P. Childers,Mei-Ju May Chen,Wayne B. Hunter,Michelle Cilia,Lukas A Mueller,Lukas A Mueller,Monica Munoz-Torres,David R. Nelson,Monica F. Poelchau,Joshua B. Benoit,Helen Wiersma-Koch,Tom D’Elia,Susan J Brown +51 more
TL;DR: To identify and improve gene models as potential targets for pest control, a community effort manually curated several gene families with a focus on genes that have key functional roles in D. citri biology and CLas interactions.
Molecular evolutionary trends and feeding ecology diversification in the Hemiptera, anchored by the milkweed bug genome
Kristen A. Panfilio,Iris M. Vargas Jentzsch,Joshua B. Benoit,Deniz F. Erezyilmaz,Yuichiro Suzuki,Stefano Colella,Hugh M. Robertson,Monica F. Poelchau,Robert M. Waterhouse,Panagiotis Ioannidis,Matthew T. Weirauch,Daniel S.T. Hughes,Shwetha C. Murali,John H. Werren,Chris Jacobs,Elizabeth J. Duncan,David Armisén,Barbara M. I. Vreede,Patrice Baa-Puyoulet,Chloé Suzanne Berger,Chun-che Chang,Hsu Chao,Mei-Ju May Chen,Yen-Ta Chen,Christopher P. Childers,Ariel D. Chipman,Andrew G. Cridge,Antonin J.J. Crumière,Peter K. Dearden,Elise M. Didion,Huyen Dinh,Harshavardhan Doddapaneni,Amanda Dolan,Shannon Dugan,Cassandra G. Extavour,Gérard Febvay,Markus Friedrich,Neta Ginzburg,Yi Han,Peter Heger,Thorsten Horn,Yi Min Hsiao,Emily C. Jennings,J. Spencer Johnston,Tamsin E. M. Jones,Jeffery W. Jones,Abderrahman Khila,Stefan Koelzer,Viera Kovacova,Megan Leask,Sandra L. Lee,Chien-Yueh Lee,Mackenzie Lovegrove,Hsiao-ling Lu,Yong Lu,Patricia J. Moore,Monica Munoz-Torres,Donna M. Muzny,Subba Reddy Palli,Nicolas Parisot,Leslie Pick,Megan L. Porter,Jiaxin Qu,Peter Nagui Refki,Peter Nagui Refki,Rose Richter,Rolando Rivera-Pomar,Andrew J. Rosendale,Siegfried Roth,Lena Sachs,M. Emília Santos,Jan Seibert,Essia Sghaier,Jayendra Nath Shukla,Richard J. Stancliffe,Olivia Tidswell,Lucila Traverso,Maurijn van der Zee,Séverine Viala,Kim C. Worley,Evgeny M. Zdobnov,Richard A. Gibbs,Stephen Richards +82 more
TL;DR: The genome sequence and comparative analyses centered on the milkweed bug Oncopeltus fasciatus, a seed feeder of the family Lygaeidae, define commonalities among the Hemiptera and delve into how hemipteran genomes reflect distinct feeding ecologies.
TCPA v3.0: An Integrative Platform to Explore the Pan-Cancer Analysis of Functional Proteomic Data *
Mei-Ju May Chen,Jun Li,Yumeng Wang,Rehan Akbani,Yiling Lu,Gordon B. Mills,Gordon B. Mills,Han Liang +7 more
TL;DR: The value of this module is demonstrated by examining the correlations of RPPA proteins with significantly mutated genes, assessing the predictive power of somatic copy-number alterations, DNA methylation, and mRNA onprotein expression, inferring the regulatory effects of miRNAs on protein expression, constructing a co-expression network of proteins and pathways, and identifying clinically relevant protein markers.
76