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High-throughput screening of mouse gene knockouts identifies established and novel skeletal phenotypes

机译:小鼠基因敲除的高通量筛选可确定已建立的和新颖的骨骼表型

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Screening gene function in vivo is a powerful approach to discover novel drug targets. We present high-throughput screening (HTS) data for 3?762 distinct global gene knockout (KO) mouse lines with viable adult homozygous mice generated using either gene-trap or homologous recombination technologies. Bone mass was determined from DEXA scans of male and female mice at 14 weeks of age and by microCT analyses of bones from male mice at 16 weeks of age. Wild-type (WT) cagemates/littermates were examined for each gene KO. Lethality was observed in an additional 850 KO lines. Since primary HTS are susceptible to false positive findings, additional cohorts of mice from KO lines with intriguing HTS bone data were examined. Aging, ovariectomy, histomorphometry and bone strength studies were performed and possible non-skeletal phenotypes were explored. Together, these screens identified multiple genes affecting bone mass: 23 previously reported genes ( Calcr , Cebpb , Crtap , Dcstamp , Dkk1 , Duoxa2 , Enpp1 , Fgf23 , Kiss1/Kiss1r , Kl (Klotho) , Lrp5 , Mstn , Neo1 , Npr2 , Ostm1 , Postn , Sfrp4 , Slc30a5 , Slc39a13 , Sost , Sumf1 , Src , Wnt10b ), five novel genes extensively characterized ( Cldn18 , Fam20c , Lrrk1 , Sgpl1 , Wnt16), five novel genes with preliminary characterization ( Agpat2 , Rassf5 , Slc10a7 , Slc26a7 , Slc30a10 ) and three novel undisclosed genes coding for potential osteoporosis drug targets.
机译:在体内筛选基因功能是发现新型药物靶标的有力方法。我们提出了高通量筛选(HTS)数据,以3?762种独特的全球基因敲除(KO)小鼠品系与使用基因捕获或同源重组技术产生的成年纯合子小鼠一起。通过对14周龄雄性和雌性小鼠的DEXA扫描以及对16周龄雄性小鼠的骨骼进行microCT分析来确定骨量。检查每个基因KO的野生型(WT)笼伴侣/同窝仔。在另外的850个KO系中观察到致命性。由于原发性HTS易受假阳性结果的影响,因此对来自KO系的其他小鼠以及有趣的HTS骨骼数据进行了研究。进行了老化,卵巢切除术,组织形态计量学和骨强度研究,并探讨了可能的非骨骼表型。这些筛查共同确定了影响骨骼质量的多个基因:23个先前报道的基因(Calcr,Cebpb,Crtap,Dcstamp,Dkk1,Duoxx2,Enpp1,Fgf23,Kiss1 / Kiss1r,Kl(Klotho),Lrp5,Mstn,Neo1,Npr2,Ostm1 ,Postn,Sfrp4,Slc30a5,Slc39a13,Sost,Sumf1,Src,Wnt10b),五个特征广泛的新基因(Cldn18,Fam20c,Lrrk1,Sgpl1,Wnt16),五个具有初步特征的新基因(Agpat2,Rassf5,Slc10a7,Slc26a) Slc30a10)和三个新的未公开基因,它们编码潜在的骨质疏松症药物靶标。

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