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Dive into the research topics where Dong Hai Xiong is active.

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Featured researches published by Dong Hai Xiong.


Cell | 2012

GENOMIC LANDSCAPE OF NON-SMALL CELL LUNG CANCER IN SMOKERS AND NEVER SMOKERS

Ramaswamy Govindan; Li Ding; Malachi Griffith; Janakiraman Subramanian; Nathan D. Dees; Krishna L. Kanchi; Christopher A. Maher; Robert S. Fulton; Lucinda Fulton; John W. Wallis; Ken Chen; Jason Walker; Sandra A. McDonald; Ron Bose; David M. Ornitz; Dong Hai Xiong; Ming You; David J. Dooling; Mark A. Watson; Elaine R. Mardis; Richard Wilson

We report the results of whole-genome and transcriptome sequencing of tumor and adjacent normal tissue samples from 17 patients with non-small cell lung carcinoma (NSCLC). We identified 3,726 point mutations and more than 90 indels in the coding sequence, with an average mutation frequency more than 10-fold higher in smokers than in never-smokers. Novel alterations in genes involved in chromatin modification and DNA repair pathways were identified, along with DACH1, CFTR, RELN, ABCB5, and HGF. Deep digital sequencing revealed diverse clonality patterns in both never-smokers and smokers. All validated EFGR and KRAS mutations were present in the founder clones, suggesting possible roles in cancer initiation. Analysis revealed 14 fusions, including ROS1 and ALK, as well as novel metabolic enzymes. Cell-cycle and JAK-STAT pathways are significantly altered in lung cancer, along with perturbations in 54 genes that are potentially targetable with currently available drugs.


American Journal of Human Genetics | 2009

Genome-wide Association and Follow-Up Replication Studies Identified ADAMTS18 and TGFBR3 as Bone Mass Candidate Genes in Different Ethnic Groups

Dong Hai Xiong; Xiao Gang Liu; Yan Fang Guo; Li Jun Tan; Liang Wang; Bao Yong Sha; Zi Hui Tang; Feng Pan; Tie-Lin Yang; Xiang Ding Chen; Shu Feng Lei; Laura M. Yerges; Xue Zen Zhu; Victor W. Wheeler; Alan L. Patrick; Clareann H. Bunker; Yan Guo; Han Yan; Yu Fang Pei; Yin Pin Zhang; Shawn Levy; Christopher J. Papasian; Peng Xiao; Y. Wang Lundberg; Robert R. Recker; Yao Zhong Liu; Yong Jun Liu; Joseph M. Zmuda; Hong-Wen Deng

To identify and validate genes associated with bone mineral density (BMD), which is a prominent osteoporosis risk factor, we tested 379,319 SNPs in 1000 unrelated white U.S. subjects for associations with BMD. For replication, we genotyped the most significant SNPs in 593 white U.S. families (1972 subjects), a Chinese hip fracture (HF) sample (350 cases, 350 controls), a Chinese BMD sample (2955 subjects), and a Tobago cohort of African ancestry (908 males). Publicly available Framingham genome-wide association study (GWAS) data (2953 whites) were also used for in silico replication. The GWAS detected two BMD candidate genes, ADAMTS18 (ADAM metallopeptidase with thrombospondin type 1 motif, 18) and TGFBR3 (transforming growth factor, beta receptor III). Replication studies verified the significant findings by GWAS. We also detected significant associations with hip fracture for ADAMTS18 SNPs in the Chinese HF sample. Meta-analyses supported the significant associations of ADAMTS18 and TGFBR3 with BMD (p values: 2.56 x 10(-5) to 2.13 x 10(-8); total sample size: n = 5925 to 9828). Electrophoretic mobility shift assay suggested that the minor allele of one significant ADAMTS18 SNP might promote binding of the TEL2 factor, which may repress ADAMTS18 expression. The data from NCBI GEO expression profiles also showed that ADAMTS18 and TGFBR3 genes were differentially expressed in subjects with normal skeletal fracture versus subjects with nonunion skeletal fracture. Overall, the evidence supports that ADAMTS18 and TGFBR3 might underlie BMD determination in the major human ethnic groups.


Journal of Bone and Mineral Research | 2005

Molecular Genetic Studies of Gene Identification for Osteoporosis: A 2004 Update†‡

Yong-Jun Liu; Hui Shen; Peng Xiao; Dong Hai Xiong; Li Hua Li; Robert R. Recker; Hong-Wen Deng

This review summarizes comprehensively the most important and representative molecular genetics studies of gene identification for osteoporosis published up to the end of December 2004. It is intended to constitute a sequential update of our previously published review covering the available data up to the end of 2002. Evidence from candidate gene association studies and genome‐wide linkage studies in humans, as well as quantitative trait locus mapping animal models are reviewed separately. Studies of transgenic and knockout mice models relevant to osteoporosis are summarized. An important extension of this update is incorporation of functional genomic studies (including DNA microarrays and proteomics) on osteogenesis and osteoporosis, in light of the rapid advances and the promising prospects of the field. Comments are made on the most notable findings and representative studies for their potential influence and implications on our present understanding of genetics of osteoporosis. The format adopted by this review should be ideal for accommodating future new advances and studies.


Carcinogenesis | 2012

Identification of somatic mutations in non-small cell lung carcinomas using whole-exome sequencing

Pengyuan Liu; Carl Morrison; Liang Wang; Dong Hai Xiong; Peter T. Vedell; Peng Cui; Xing Hua; Feng Ding; Yan Lu; Michael A. James; John D. Ebben; Haiming Xu; Alex A. Adjei; Karen Head; Jaime Wendt Andrae; Michael Tschannen; Howard J. Jacob; Jing Pan; Qi Zhang; Françoise Van den Bergh; Haijie Xiao; Ken C. Lo; Jigar Patel; Todd Richmond; Mary Anne Watt; Thomas J. Albert; Rebecca R. Selzer; Marshall W. Anderson; Jiang Wang; Yian Wang

Lung cancer is the leading cause of cancer-related death, with non-small cell lung cancer (NSCLC) being the predominant form of the disease. Most lung cancer is caused by the accumulation of genomic alterations due to tobacco exposure. To uncover its mutational landscape, we performed whole-exome sequencing in 31 NSCLCs and their matched normal tissue samples. We identified both common and unique mutation spectra and pathway activation in lung adenocarcinomas and squamous cell carcinomas, two major histologies in NSCLC. In addition to identifying previously known lung cancer genes (TP53, KRAS, EGFR, CDKN2A and RB1), the analysis revealed many genes not previously implicated in this malignancy. Notably, a novel gene CSMD3 was identified as the second most frequently mutated gene (next to TP53) in lung cancer. We further demonstrated that loss of CSMD3 results in increased proliferation of airway epithelial cells. The study provides unprecedented insights into mutational processes, cellular pathways and gene networks associated with lung cancer. Of potential immediate clinical relevance, several highly mutated genes identified in our study are promising druggable targets in cancer therapy including ALK, CTNNA3, DCC, MLL3, PCDHIIX, PIK3C2B, PIK3CG and ROCK2.


Journal of Bone and Mineral Research | 2006

Robust and Comprehensive Analysis of 20 Osteoporosis Candidate Genes by Very High-Density Single-Nucleotide Polymorphism Screen Among 405 White Nuclear Families Identified Significant Association and Gene–Gene Interaction

Dong Hai Xiong; Hui Shen; Lan Juan Zhao; Peng Xiao; Tie-Lin Yang; Yan Guo; Wei Wang; Yan Fang Guo; Yong Jun Liu; Robert R. Recker; Hong-Wen Deng

Many “novel” osteoporosis candidate genes have been proposed in recent years. To advance our knowledge of their roles in osteoporosis, we screened 20 such genes using a set of high‐density SNPs in a large family‐based study. Our efforts led to the prioritization of those osteoporosis genes and the detection of gene–gene interactions.


Journal of Medical Genetics | 2006

Polymorphisms of the Low-density lipoprotein receptor-related protein 5 (LRP5) gene are associated with obesity phenotypes in a large family-based association study

Yan Fang Guo; Dong Hai Xiong; Hui Shen; Lan Juan Zhao; Peng Xiao; Yan Guo; Wei Wang; Tie-Lin Yang; Robert R. Recker; Hong-Wen Deng

Background: The low-density lipoprotein receptor-related protein 5 (LRP5) gene, essential for glucose and cholesterol metabolism, may have a role in the aetiology of obesity, an important risk factor for diabetes. Participants and methods: To investigate the association between LRP5 polymorphisms and obesity, 27 single-nucleotide polymorphisms (SNPs), spacing about 5 kb apart on average and covering the full transcript length of the LRP5 gene, were genotyped in 1873 Caucasian people from 405 nuclear families. Obesity (defined as body mass index (BMI) >30 kg/m2) and three obesity-related phenotypes (BMI, fat mass and percentage of fat mass (PFM)) were investigated. Results: Single markers (12 tagging SNPs and 4 untaggable SNPs) and haplotypes (5 blocks) were tested for associations, using family-based designs. SNP4 (rs4988300) and SNP6 (rs634008) located in block 2 (intron 1) showed significant associations with obesity and BMI after Bonferroni correction (SNP4: p<0.001 and p = 0.001, respectively; SNP6: p = 0.002 and 0.003, respectively). The common allele A for SNP4 and minor allele G for SNP6 were associated with an increased risk of obesity. Significant associations were also observed between common haplotype A–G–G–G of block 2 with obesity, BMI, fat mass and PFM with global empirical values p<0.001, p<0.001, p = 0.003 and p = 0.074, respectively. Subsequent sex-stratified analyses showed that the association in the total sample between block 2 and obesity may be mainly driven by female subjects. Conclusion: Intronic variants of the LRP5 gene are markedly associated with obesity. We hypothesise that such an association may be due to the role of LRP5 in the WNT signalling pathway or lipid metabolism. Further functional studies are needed to elucidate the exact molecular mechanism underlying our finding.


American Journal of Human Genetics | 2009

Genome-wide Association and Replication Studies Identified TRHR as an Important Gene for Lean Body Mass

Xiao Gang Liu; Li Jun Tan; Shu Feng Lei; Yong Jun Liu; Hui Shen; Liang Wang; Han Yan; Yan Fang Guo; Dong Hai Xiong; Xiang Ding Chen; Feng Pan; Tie-Lin Yang; Yin Ping Zhang; Yan Guo; Nelson L.S. Tang; Xue Zhen Zhu; Hong Yi Deng; Shawn Levy; Robert R. Recker; Christopher J. Papasian; Hong-Wen Deng

Low lean body mass (LBM) is related to a series of health problems, such as osteoporotic fracture and sarcopenia. Here we report a genome-wide association (GWA) study on LBM variation, by using Affymetrix 500K single-nucleotide polymorphism (SNP) arrays. In the GWA scan, we tested 379,319 eligible SNPs in 1,000 unrelated US whites and found that two SNPs, rs16892496 (p = 7.55 x 10(-8)) and rs7832552 (p = 7.58 x 10(-8)), within the thyrotropin-releasing hormone receptor (TRHR) gene were significantly associated with LBM. Subjects carrying unfavorable genotypes at rs16892496 and rs7832552 had, on average, 2.70 and 2.55 kg lower LBM, respectively, compared to those with alternative genotypes. We replicated the significant associations in three independent samples: (1) 1488 unrelated US whites, (2) 2955 Chinese unrelated subjects, and (3) 593 nuclear families comprising 1972 US whites. Meta-analyses of the GWA scan and the replication studies yielded p values of 5.53 x 10(-9) for rs16892496 and 3.88 x 10(-10) for rs7832552. In addition, we found significant interactions between rs16892496 and polymorphisms of several other genes involved in the hypothalamic-pituitary-thyroid and the growth hormone-insulin-like growth factor-I axes. Results of this study, together with the functional relevance of TRHR in muscle metabolism, support the TRHR gene as an important gene for LBM variation.


Journal of Medical Genetics | 2005

Vitamin D receptor gene polymorphisms are linked to and associated with adult height

Dong Hai Xiong; F. H. Xu; Pengyuan Liu; Hui Shen; Jirong Long; Leo Elze; Robert R. Recker; Hong-Wen Deng

Background: The vitamin D receptor (VDR) gene is important to human stature, as it mediates metabolic pathways, calcium homeostasis, and phosphate homeostasis, which influence growth. Methods: We examined the relationship between VDR and adult height in 1873 white subjects from 406 nuclear families. Four SNPs, namely −4817A/G at intron 1, FokI C/T at exon 2 start codon, BsmI A/G at intron 8, and TaqI T/C at exon 9 in VDR were tested for linkage and association with adult height variation by the program QTDT (quantitative transmission disequilibrium test). The bT haplotype of the BsmI and TaqI loci was further tested for its association with height in unrelated samples randomly chosen from the 406 nuclear families by traditional population association methods. Results: All four tested SNPs were linked to adult height. Within family associations with height were detected at BsmI and TaqI loci (p = 0.048 and 0.039, respectively). Analyses based on BsmI/TaqI haplotypes also revealed evidence for linkage (p = 0.05) and association (p = 0.001) with height. The bT haplotype was significantly associated with higher adult height (p = 0.033, within family association test). Such an association might be female specific and influenced by menstrual status. Conclusions: Our results strongly suggest that VDR may be linked to and associated with adult height variation in white popuations.


Journal of Medical Genetics | 2004

A genome-wide linkage scan for bone mineral density in an extended sample: evidence for linkage on 11q23 and Xq27

Hui Shen; Yuan Yuan Zhang; Jirong Long; F. H. Xu; Yao Zhong Liu; Peng Xiao; L. J. Zhao; Dong Hai Xiong; Yong Jun Liu; Volodymyr Dvornyk; Sonia M. Rocha-Sanchez; Pengyuan Liu; Jin-Long Li; Theresa Conway; K. M. Davies; Robert R. Recker; Hong-Wen Deng

Background: Osteoporosis is a major public health problem, mainly quantified by low bone mineral density (BMD). The majority of BMD variation is determined by genetic effects. A pilot whole genome linkage scan (WGS) was previously reported in 53 white pedigrees with 630 subjects. Several genomic regions were suggested to be linked to BMD variation. Objective: To substantiate these previous findings and detect new genomic regions. Methods: A WGS was conducted on an extended sample where the size was almost tripled (1816 subjects from 79 pedigrees). All the subjects were genotyped with 451 microsatellite markers spaced ∼8.1 cM apart across the human genome. Two point and multipoint linkage analyses were carried out using the variance component method. Results: The strongest linkage signal was obtained on Xq27 with two point LOD scores of 4.30 for wrist BMD, and 2.57 for hip BMD, respectively. Another important region was 11q23, which achieved a maximum LOD score of 3.13 for spine BMD in multipoint analyses, confirming the results on this region in two earlier independent studies. Suggestive linkage evidence was also found on 7p14 and 20p12. Conclusions: Together with the findings from other studies, the current study has further delineated the genetic basis of bone mass and highlights the importance of increasing sample size to confirm linkage findings and to identify new regions of linkage.


Journal of Bone and Mineral Research | 2006

Genomic Regions Identified for BMD in a Large Sample Including Epistatic Interactions and Gender-Specific Effects†‡

Peng Xiao; Hui Shen; Yan Fang Guo; Dong Hai Xiong; Yao Zhong Liu; Yong Jun Liu; Lan Juan Zhao; Jirong Long; Yan Guo; Robert R. Recker; Hong-Wen Deng

A genome‐wide linkage scan was conducted using a large white sample to identify QTLs for BMD. We found QTLs in the total sample and the gender‐specific subgroups, as well as significant epistatic interactions underlying BMD variations.

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Hong-Wen Deng

University of Missouri–Kansas City

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Yan Fang Guo

Xi'an Jiaotong University

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Yong Jun Liu

University of Missouri–Kansas City

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Ming You

Medical College of Wisconsin

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Yan Guo

Xi'an Jiaotong University

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Lan Juan Zhao

University of Missouri–Kansas City

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