Clara S. Tang
University of Hong Kong
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Clara S. Tang.
Proceedings of the National Academy of Sciences of the United States of America | 2009
Maria-Mercè Garcia-Barceló; Clara S. Tang; Elly Sau-Wai Ngan; Vincent Chi Hang Lui; Yan Chen; Man-Ting So; Thomas Yuk-Yu Leon; Xiaoping Miao; Cathy K. Y. Shum; Feng-Qin Liu; Ming-Yiu Yeung; Zhen-wei Yuan; Wei-hong Guo; Lei Liu; Xiao-bing Sun; Liuming Huang; Jin-fa Tou; You-Qiang Song; Danny Chan; Kenneth M.C. Cheung; Kenneth Kak Yuen Wong; Stacey S. Cherny; Pak-Chung Sham; Paul Kwong Hang Tam
Hirschsprungs disease (HSCR), or aganglionic megacolon, is a congenital disorder characterized by the absence of enteric ganglia in variable portions of the distal intestine. RET is a well-established susceptibility locus, although existing evidence strongly suggests additional loci contributing to sporadic HSCR. To identify these additional genetic loci, we carried out a genome-wide association study using the Affymetrix 500K marker set. We successfully genotyped 293,836 SNPs in 181 Chinese subjects with sporadic HSCR and 346 ethnically matched control subjects. The SNPs most associated with HSCR were genotyped in an independent set of 190 HSCR and 510 control subjects. Aside from SNPs in RET, the strongest overall associations in plausible candidate genes were found for 2 SNPs located in intron 1 of the neuregulin1 gene (NRG1) on 8p12, with rs16879552 and rs7835688 yielding odds ratios of 1.68 [CI95%:(1.40, 2.00), P = 1.80 × 10−8] and 1.98 [CI95%:(1.59, 2.47), P = 1.12 × 10−9], respectively, for the heterozygous risk genotypes under an additive model. There was also a significant interaction between RET and NRG1 (P = 0.0095), increasing the odds ratio 2.3-fold to 19.53 for the RET rs2435357 risk genotype (TT) in the presence of the NRG1 rs7835688 heterozygote, indicating that NRG1 is a modifier of HSRC penetrance. Our highly significant association findings are backed-up by the important role of NRG1 as regulator of the development of the enteric ganglia precursors. The identification of NRG1 as an additional HSCR susceptibility locus not only opens unique fields of investigation into the mechanisms underlying the HSCR pathology, but also the mechanisms by which a discrete number of loci interact with each other to cause disease.
WOS | 2013
Klaus Bønnelykke; Melanie C. Matheson; Tune H. Pers; Raquel Granell; David P. Strachan; Alexessander Couto Alves; Allan Linneberg; John A. Curtin; Nicole M. Warrington; Marie Standl; Marjan Kerkhof; Ingileif Jonsdottir; Blazenka Kljaic Bukvic; Marika Kaakinen; Patrick Sleimann; Gudmar Thorleifsson; Unnur Thorsteinsdottir; Katharina Schramm; Svetlana Baltic; Eskil Kreiner-Møller; Angela Simpson; Beate St Pourcain; Lachlan Coin; Jennie Hui; Eh Walters; Carla M.T. Tiesler; David L. Duffy; G. Jones; Susan M. Ring; Wendy L. McArdle
Allergen-specific immunoglobulin E (present in allergic sensitization) has a central role in the pathogenesis of allergic disease. We performed the first large-scale genome-wide association study (GWAS) of allergic sensitization in 5,789 affected individuals and 10,056 controls and followed up the top SNP at each of 26 loci in 6,114 affected individuals and 9,920 controls. We increased the number of susceptibility loci with genome-wide significant association with allergic sensitization from three to ten, including SNPs in or near TLR6, C11orf30, STAT6, SLC25A46, HLA-DQB1, IL1RL1, LPP, MYC, IL2 and HLA-B. All the top SNPs were associated with allergic symptoms in an independent study. Risk-associated variants at these ten loci were estimated to account for at least 25% of allergic sensitization and allergic rhinitis. Understanding the molecular mechanisms underlying these associations may provide new insights into the etiology of allergic disease.
The Journal of Allergy and Clinical Immunology | 2014
Manuel A. Ferreira; Melanie C. Matheson; Clara S. Tang; Raquel Granell; Wei Ang; Jennie Hui; Amy K. Kiefer; David L. Duffy; Svetlana Baltic; Patrick Danoy; Minh Bui; Loren Price; Peter D. Sly; Nicholas Eriksson; Pamela A. F. Madden; Michael J. Abramson; Patrick G. Holt; Andrew C. Heath; Michael Hunter; Bill Musk; Colin F. Robertson; Peter Le Souef; Grant W. Montgomery; A. John Henderson; Joyce Y. Tung; Shyamali C. Dharmage; Matthew A. Brown; Alan James; Philip J. Thompson; Craig E. Pennell
BACKGROUND To date, no genome-wide association study (GWAS) has considered the combined phenotype of asthma with hay fever. Previous analyses of family data from the Tasmanian Longitudinal Health Study provide evidence that this phenotype has a stronger genetic cause than asthma without hay fever. OBJECTIVE We sought to perform a GWAS of asthma with hay fever to identify variants associated with having both diseases. METHODS We performed a meta-analysis of GWASs comparing persons with both physician-diagnosed asthma and hay fever (n = 6,685) with persons with neither disease (n = 14,091). RESULTS At genome-wide significance, we identified 11 independent variants associated with the risk of having asthma with hay fever, including 2 associations reaching this level of significance with allergic disease for the first time: ZBTB10 (rs7009110; odds ratio [OR], 1.14; P = 4 × 10(-9)) and CLEC16A (rs62026376; OR, 1.17; P = 1 × 10(-8)). The rs62026376:C allele associated with increased asthma with hay fever risk has been found to be associated also with decreased expression of the nearby DEXI gene in monocytes. The 11 variants were associated with the risk of asthma and hay fever separately, but the estimated associations with the individual phenotypes were weaker than with the combined asthma with hay fever phenotype. A variant near LRRC32 was a stronger risk factor for hay fever than for asthma, whereas the reverse was observed for variants in/near GSDMA and TSLP. Single nucleotide polymorphisms with suggestive evidence for association with asthma with hay fever risk included rs41295115 near IL2RA (OR, 1.28; P = 5 × 10(-7)) and rs76043829 in TNS1 (OR, 1.23; P = 2 × 10(-6)). CONCLUSION By focusing on the combined phenotype of asthma with hay fever, variants associated with the risk of allergic disease can be identified with greater efficiency.
Human Molecular Genetics | 2010
Maria-Mercè Garcia-Barceló; Ming-Yiu Yeung; Xiaoping Miao; Clara S. Tang; Guo Chen; Man-Ting So; Elly Sau-Wai Ngan; Vincent Chi Hang Lui; Yan Chen; Xuelai Liu; K. J. W. S. Hui; Long Li; Wei-hong Guo; Xiao-Bin Sun; Jin-fa Tou; K. W. Chan; Xuan-Zhao Wu; You-Qiang Song; Danny Chan; Kenneth Mc Cheung; Patrick Ho Yu Chung; Kenneth Kak Yuen Wong; Pak-Chung Sham; Stacey S. Cherny; Paul Kwong Hang Tam
Biliary atresia (BA) is characterized by the progressive fibrosclerosing obliteration of the extrahepatic biliary system during the first few weeks of life. Despite early diagnosis and prompt surgical intervention, the disease progresses to cirrhosis in many patients. The current theory for the pathogenesis of BA proposes that during the perinatal period, a still unknown exogenous factor meets the innate immune system of a genetically predisposed individual and induces an uncontrollable and potentially self-limiting immune response, which becomes manifest in liver fibrosis and atresia of the extrahepatic bile ducts. Genetic factors that could account for the disease, let alone for its high incidence in Chinese, are to be investigated. To identify BA susceptibility loci, we carried out a genome-wide association study (GWAS) using the Affymetrix 5.0 and 500 K marker sets. We genotyped nearly 500 000 single-nucleotide polymorphisms (SNPs) in 200 Chinese BA patients and 481 ethnically matched control subjects. The 10 most BA-associated SNPs from the GWAS were genotyped in an independent set of 124 BA and 90 control subjects. The strongest overall association was found for rs17095355 on 10q24, downstream XPNPEP1, a gene involved in the metabolism of inflammatory mediators. Allelic chi-square test P-value for the meta-analysis of the GWAS and replication results was 6.94 x 10(-9). The identification of putative BA susceptibility loci not only opens new fields of investigation into the mechanisms underlying BA but may also provide new clues for the development of preventive and curative strategies.
Human Molecular Genetics | 2012
Youling Guo; Larry Baum; Pak Sham; Virginia Wong; Ping Wing Ng; Colin Hiu Tung Lui; Ngai Chuen Sin; Tak Hong Tsoi; Clara S. Tang; Johnny S.H. Kwan; Benjamin H. K. Yip; Su-Mei Xiao; G. Neil Thomas; Yu-Lung Lau; Wanling Yang; Stacey S. Cherny; Patrick Kwan
In the majority of patients, epilepsy is a complex disorder with multiple susceptibility genes interacting with environmental factors. However, we understand little about its genetic risks. Here, we report the first genome-wide association study (GWAS) to identify common susceptibility variants of epilepsy in Chinese. This two-stage GWAS included a total of 1087 patients and 3444 matched controls. In the combined analysis of the two stages, the strongest signals were observed with two highly correlated variants, rs2292096 [G] [P= 1.0 × 10(-8), odds ratio (OR) = 0.63] and rs6660197 [T] (P= 9.9 × 10(-7), OR = 0.69), with the former reaching genome-wide significance, on 1q32.1 in the CAMSAP1L1 gene, which encodes a cytoskeletal protein. We also refined a previously reported association with rs9390754 (P= 1.7 × 10(-5)) on 6q21 in the GRIK2 gene, which encodes a glutamate receptor, and identified several other loci in genes involved in neurotransmission or neuronal networking that warrant further investigation. Our results suggest that common genetic variants may increase the susceptibility to epilepsy in Chinese.
Bioinformatics | 2012
Clara S. Tang; Manuel A. Ferreira
MOTIVATION Canonical correlation analysis (CCA) measures the association between two sets of multidimensional variables. We reasoned that CCA could provide an efficient and powerful approach for both univariate and multivariate gene-based tests of association without the need for permutation testing. RESULTS Compared with a commonly used permutation-based approach, CCA (i) is faster; (ii) has appropriate type-I error rate for normally distributed quantitative traits; (iii) provides comparable power for small to medium-sized genes (<100 kb); (iv) provides greater power when the causal variants are uncommon; (v) provides considerably less power for larger genes (≥100 kb) when the causal variants have a broad minor allele frequency (MAF) spectrum. Application to a GWAS of leukocyte levels identified SAFB and a histone gene cluster as novel putative loci harboring multiple independent variants regulating lymphocyte and neutrophil counts.
PLOS Genetics | 2012
Clara S. Tang; Guo Cheng; Man-Ting So; Benjamin Hon-Kei Yip; Xiaoping Miao; Emily H.M. Wong; Elly Sau-Wai Ngan; Vincent Chi Hang Lui; You-Qiang Song; Danny Chan; Kenneth Mc Cheung; Zhen-wei Yuan; Liu Lei; Patrick Ho Yu Chung; Xuelai Liu; Kenneth Kak Yuen Wong; Christian R. Marshall; Steve Scherer; Stacey S. Cherny; Pak-Chung Sham; Paul Kwong Hang Tam; Maria-Mercè Garcia-Barceló
Hirschsprung disease (HSCR) is a congenital disorder characterized by aganglionosis of the distal intestine. To assess the contribution of copy number variants (CNVs) to HSCR, we analysed the data generated from our previous genome-wide association study on HSCR patients, whereby we identified NRG1 as a new HSCR susceptibility locus. Analysis of 129 Chinese patients and 331 ethnically matched controls showed that HSCR patients have a greater burden of rare CNVs (p = 1.50×10−5), particularly for those encompassing genes (p = 5.00×10−6). Our study identified 246 rare-genic CNVs exclusive to patients. Among those, we detected a NRG3 deletion (p = 1.64×10−3). Subsequent follow-up (96 additional patients and 220 controls) on NRG3 revealed 9 deletions (combined p = 3.36×10−5) and 2 de novo duplications among patients and two deletions among controls. Importantly, NRG3 is a paralog of NRG1. Stratification of patients by presence/absence of HSCR–associated syndromes showed that while syndromic–HSCR patients carried significantly longer CNVs than the non-syndromic or controls (p = 1.50×10−5), non-syndromic patients were enriched in CNV number when compared to controls (p = 4.00×10−6) or the syndromic counterpart. Our results suggest a role for NRG3 in HSCR etiology and provide insights into the relative contribution of structural variants in both syndromic and non-syndromic HSCR. This would be the first genome-wide catalog of copy number variants identified in HSCR.
PLOS ONE | 2011
Clara S. Tang; Wai-Kiu Tang; Man-Ting So; Xiaoping Miao; Brian Man-Chun Leung; Benjamin Hon-Kei Yip; Thomas Yuk-Yu Leon; Elly Sau-Wai Ngan; Vincent Chi Hang Lui; Yan Chen; Ivy Hau-Yee Chan; Patrick Ho Yu Chung; Xuelai Liu; Xuan-Zhao Wu; Kenneth Kak Yuen Wong; Pak-Chung Sham; Stacey S. Cherny; Paul Kwong Hang Tam; Maria-Mercè Garcia-Barceló
The primary pathology of Hirschsprungs disease (HSCR, colon aganglionosis) is the absence of ganglia in variable lengths of the hindgut, resulting in functional obstruction. HSCR is attributed to a failure of migration of the enteric ganglion precursors along the developing gut. RET is a key regulator of the development of the enteric nervous system (ENS) and the major HSCR-causing gene. Yet the reduced penetrance of RET DNA HSCR-associated variants together with the phenotypic variability suggest the involvement of additional genes in the disease. Through a genome-wide association study, we uncovered a ∼350 kb HSCR-associated region encompassing part of the neuregulin-1 gene (NRG1). To identify the causal NRG1 variants contributing to HSCR, we genotyped 243 SNPs variants on 343 ethnic Chinese HSCR patients and 359 controls. Genotype analysis coupled with imputation narrowed down the HSCR-associated region to 21 kb, with four of the most associated SNPs (rs10088313, rs10094655, rs4624987, and rs3884552) mapping to the NRG1 promoter. We investigated whether there was correlation between the genotype at the rs10088313 locus and the amount of NRG1 expressed in human gut tissues (40 patients and 21 controls) and found differences in expression as a function of genotype. We also found significant differences in NRG1 expression levels between diseased and control individuals bearing the same rs10088313 risk genotype. This indicates that the effects of NRG1 common variants are likely to depend on other alleles or epigenetic factors present in the patients and would account for the variability in the genetic predisposition to HSCR.
Nature Communications | 2015
Clara S. Tang; He Zhang; Chloe Y.Y. Cheung; Ming Xu; Jenny C. Y. Ho; Wei Zhou; Stacey S. Cherny; Zhang Y; Oddgeir L. Holmen; Ka-Wing Au; Haiyi Yu; Lin Xu; Jia Jia; Robert M. Porsch; Lijie Sun; Weixian Xu; Huiping Zheng; Lai-Yung Wong; Yiming Mu; Jingtao Dou; Carol H.Y. Fong; Shuyu Wang; Xueyu Hong; Liguang Dong; Yanhua Liao; Jiansong Wang; Levina S. M. Lam; Xi Su; Hua Yan; Min-Lee Yang
Blood lipids are important risk factors for coronary artery disease (CAD). Here we perform an exome-wide association study by genotyping 12,685 Chinese, using a custom Illumina HumanExome BeadChip, to identify additional loci influencing lipid levels. Single-variant association analysis on 65,671 single nucleotide polymorphisms reveals 19 loci associated with lipids at exome-wide significance (P<2.69 × 10−7), including three Asian-specific coding variants in known genes (CETP p.Asp459Gly, PCSK9 p.Arg93Cys and LDLR p.Arg257Trp). Furthermore, missense variants at two novel loci—PNPLA3 p.Ile148Met and PKD1L3 p.Thr429Ser—also influence levels of triglycerides and low-density lipoprotein cholesterol, respectively. Another novel gene, TEAD2, is found to be associated with high-density lipoprotein cholesterol through gene-based association analysis. Most of these newly identified coding variants show suggestive association (P<0.05) with CAD. These findings demonstrate that exome-wide genotyping on samples of non-European ancestry can identify additional population-specific possible causal variants, shedding light on novel lipid biology and CAD.
PLOS ONE | 2012
Youling Guo; Brian Tomlinson; Tanya Chu; Yu Jing Fang; Hongsheng Gui; Clara S. Tang; Benjamin H. Yip; Stacey S. Cherny; Yoon-Mi Hur; Pak-Chung Sham; Tai Hing Lam; Neil Thomas
Hypertension is caused by the interaction of environmental and genetic factors. The condition which is very common, with about 18% of the adult Hong Kong Chinese population and over 50% of older individuals affected, is responsible for considerable morbidity and mortality. To identify genes influencing hypertension and blood pressure, we conducted a combined linkage and association study using over 500,000 single nucleotide polymorphisms (SNPs) genotyped in 328 individuals comprising 111 hypertensive probands and their siblings. Using a family-based association test, we found an association with SNPs on chromosome 5q31.1 (rs6596140; P<9×10−8) for hypertension. One candidate gene, PDC, was replicated, with rs3817586 on 1q31.1 attaining P = 2.5×10−4 and 2.9×10−5 in the within-family tests for DBP and MAP, respectively. We also identified regions of significant linkage for systolic and diastolic blood pressure on chromosomes 2q22 and 5p13, respectively. Further family-based association analysis of the linkage peak on chromosome 5 yielded a significant association (rs1605685, P<7×10−5) for DBP. This is the first combined linkage and association study of hypertension and its related quantitative traits with Chinese ancestry. The associations reported here account for the action of common variants whereas the discovery of linkage regions may point to novel targets for rare variant screening.