Genome-wide compound heterozygosity analysis highlighted 4 novel susceptibility loci for congenital heart disease in Chinese population
CLINICAL GENETICS
Authors: Jiang, T.; Huang, M.; Jiang, T.; Gu, Y.; Wang, Y.; Wu, Y.; Ma, H.; Jin, G.; Dai, J.; Hu, Z.
Abstract
Genome-wide association studies (GWASs) have achieved great success in deciphering the genetic cause of congenital heart disease (CHD). However, the heritability of CHD remains to be clarified, and numerous genetic factors responsible for occurrence of CHD are yet unclear. In this study, we performed a genome-wide search for relaxed forms of compound heterozygosity (CH) in association with CHD using our existing GWAS data including 2265 individuals (957 CHD cases and 1308 controls). CollapsABEL was used to iteratively test the association between the CH genotype and the CHD phenotype in a sliding window manner. We highlighted 17 genetic loci showing suggestive CH-like associations with CHD (P<5x10(-8)), among which 4 genetic loci had expression quantitative trait loci (eQTL) effects in blood (P-eQTL<0.01). After conditional association analysis, each loci had only 1 independently effective signal reaching the significance threshold (rs2071477/rs3129299 at 6p21.32, P=2.47x10(-10); rs10773097/rs2880921 at 12q24.31, P=3.30x10(-8); rs73032040/rs7259476 at 19q13.11, P=1.14x10(-8); rs10416386/rs4239517 at 19q13.31, P=1.15x10(-9)), together explained 7.83% of the CHD variance. Among these 4 associated loci, outstanding candidates for CHD-associated genes included UBC, CFM2, ZNF302, LYPD3 and CADM4. Although replication studies with larger sample size are warranted, the first CH GWAS of CHD may extend our current knowledge of the genetic contributions to CHD in the Han Chinese population.
Preclinical Antitumor Efficacy of BAY 1129980-a Novel Auristatin-Based Anti-C4.4A (LYPD3) Antibody-Drug Conjugate for the Treatment of Non-Small Cell Lung Cancer
MOLECULAR CANCER THERAPEUTICS
Authors: Willuda, Joerg; Linden, Lars; Lerchen, Hans-Georg; Kopitz, Charlotte; Stelte-Ludwig, Beatrix; Pena, Carol; Lange, Claudia; Golfier, Sven; Kneip, Christoph; Carrigan, Patricia E.; Mclean, Kirk; Schuhmacher, Joachim; von Ahsen, Oliver; Mueller, Joerg; Dittmer, Frank; Beier, Rudolf; El Sheikh, Sherif; Tebbe, Jan; Leder, Gabriele; Apeler, Heiner; Jautelat, Rolf; Ziegelbauer, Karl; Kreft, Bertolt
Abstract
C4.4A (LYPD3) has been identified as a cancer-and metastasisassociated internalizing cell surface protein that is expressed in non-small cell lung cancer (NSCLC), with particularly high prevalence in the squamous cell carcinoma (SCC) subtype. With the exception of skin keratinocytes and esophageal endothelial cells, C4.4A expression is scarce in normal tissues, presenting an opportunity to selectively treat cancers with a C4.4A-directed antibody-drug conjugate (ADC). We have generated BAY 1129980 (C4.4A-ADC), an ADC consisting of a fully human C4.4A-targeting mAb conjugated to a novel, highly potent derivative of the microtubule-disrupting cytotoxic drug auristatin via a noncleavable alkyl hydrazide linker. In vitro, C4.4A-ADC demonstrated potent antiproliferative efficacy in cell lines endogenously expressing C4.4A and inhibited proliferation of C4.4A-transfected A549 lung cancer cells showing selectivity compared with a nontargeted control ADC. In vivo, C4.4A-ADC was efficacious in human NSCLC cell line (NCI-H292 and NCI-H322) and patient-derived xenograft (PDX) models (Lu7064, Lu7126, Lu7433, and Lu7466). C4.4A expression level correlated with in vivo efficacy, the most responsive being the models with C4.4A expression in over 50% of the cells. In the NCI-H292 NSCLC model, C4.4AADC demonstrated equal or superior efficacy compared to cisplatin, paclitaxel, and vinorelbine. Furthermore, an additive antitumor efficacy in combination with cisplatin was observed. Finally, a repeated dosing with C4.4A-ADC was well tolerated without changing the sensitivity to the treatment. Taken together, C4.4AADC is a promising therapeutic candidate for the treatment of NSCLC and other cancers expressing C4.4A. A phase I study (NCT02134197) with the C4.4A-ADC BAY 1129980 is currently ongoing. Mol Cancer Ther; (C) 2017 AACR.