Identification of the Transgene Integration Site and Host Genome Changes in MRP8-Cre/ires-EGFP Transgenic Mice by Targeted Locus Amplification

被引:6
作者
Wang, Guan [1 ,2 ]
Zhang, Cunling [3 ]
Kambara, Hiroto [1 ,2 ]
Dambrot, Cheryl [4 ]
Xie, Xuemei [1 ,2 ]
Zhao, Li [1 ,2 ]
Xu, Rong [1 ,2 ]
Oneglia, Andrea [4 ]
Liu, Fei [3 ]
Luo, Hongbo R. [1 ,2 ]
机构
[1] Harvard Med Sch, Dana Farber Harvard Canc Ctr, Dept Pathol, Boston, MA 02115 USA
[2] Boston Childrens Hosp, Dept Lab Med, Enders Res Bldg, Boston, MA USA
[3] Chinese Acad Med Sci & Peking Union Med Coll, Inst Hematol, Blood Dis Hosp, Tianjin, Peoples R China
[4] Cergentis BV, Utrecht, Netherlands
来源
FRONTIERS IN IMMUNOLOGY | 2022年 / 13卷
关键词
MRP8-Cre transgenic mouse; TLA sequencing; Cre-loxP system; neutrophil; homozygous lethality; PLASMINOGEN-ACTIVATOR INHIBITOR-1; CALCIUM-BINDING PROTEINS; CRE RECOMBINASE; NEUTROPHILS; PAI-1; EXPRESSION; DELETION; GENES; MRP14; CELLS;
D O I
10.3389/fimmu.2022.875991
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
The MRP8-Cre-ires/EGFP transgenic mouse (Mrp8cre(Tg), on C57BL/6J genetic background) is popular in immunological and hematological research for specifically expressing Cre recombinase and an EGFP reporter in neutrophils. It is often crossed with other transgenic lines carrying loxP-flanked genes to achieve restricted gene knockout in neutrophils. However, due to the way in which the line was created, basic knowledge about the MRP8-Cre-ires/EGFP transgene in the host genome, such as its integration site(s) and flanking sequences, remains largely unknown, hampering robust experimental design and data interpretation. Here we used a recently developed technique, targeted locus amplification (TLA) sequencing, to fill these knowledge gaps. We found that the MRP8-Cre-ires/EGFP transgene was integrated into chromosome 5 (5qG2) of the host mouse genome. This integration led to a 44 kb deletion of the host genomic sequence, resulting in complete deletion of Serpine1 and partial deletion of Ap1s1. Having determined the flanking sequences of the transgene, we designed a new genotyping protocol that can distinguish homozygous, heterozygous, and wildtype Mrp8cre(Tg) mice. To our surprise, crossing heterozygous mice produced no homozygous Mrp8cre(Tg) mice, most likely due to prenatal lethality resulting from disrupted Ap1s1 gene expression.
引用
收藏
页数:7
相关论文
共 52 条
[1]   Comparative analysis of the efficiency and specificity of myeloid-Cre deleting strains using ROSA-EYFP reporter mice [J].
Abram, Clare L. ;
Roberge, Gray L. ;
Hu, Yongmei ;
Lowell, Clifford A. .
JOURNAL OF IMMUNOLOGICAL METHODS, 2014, 408 :89-100
[2]   Plasminogen activator inhibitor 1: Physiological and pathophysiological roles [J].
Binder, BR ;
Christ, G ;
Gruber, F ;
Grubic, N ;
Hufnagl, P ;
Krebs, M ;
Mihaly, J ;
Prager, GW .
NEWS IN PHYSIOLOGICAL SCIENCES, 2002, 17 :56-61
[3]   Regulation of Inflammation- and Infection-Driven Hematopoiesis [J].
Boettcher, Steffen ;
Manz, Markus G. .
TRENDS IN IMMUNOLOGY, 2017, 38 (05) :345-357
[4]  
Brault V, 2007, Handb Exp Pharmacol, P29
[5]   Efficient mapping of transgene integration sites and local structural changes in Cre transgenic mice using targeted locus amplification [J].
Cain-Hom, Carol ;
Splinter, Erik ;
van Min, Max ;
Simonis, Marieke ;
van de Heijning, Monique ;
Martinez, Maria ;
Asghari, Vida ;
Cox, J. Colin ;
Warming, Soren .
NUCLEIC ACIDS RESEARCH, 2017, 45 (08)
[6]   PLASMINOGEN-ACTIVATOR INHIBITOR-1 GENE DEFICIENT MICE .2. EFFECTS ON HEMOSTASIS, THROMBOSIS, AND THROMBOLYSIS [J].
CARMELIET, P ;
STASSEN, JM ;
SCHOONJANS, L ;
REAM, B ;
VANDENOORD, JJ ;
DEMOL, M ;
MULLIGAN, RC ;
COLLEN, D .
JOURNAL OF CLINICAL INVESTIGATION, 1993, 92 (06) :2756-2760
[7]   Research Progress on the SERPINE1 Protein and Chronic Inflammatory Diseases of the Upper Respiratory Tract: A Literature Review [J].
Chen, Teng-Yu ;
Zhou, Min ;
Lin, Man-Qing ;
Liang, Shu-Ting ;
Yan, Yan ;
Wang, Si-Min ;
Fang, Cai-Shan ;
Li, Dan ;
Ruan, Yan .
INTERNATIONAL ARCHIVES OF ALLERGY AND IMMUNOLOGY, 2021, 182 (11) :1097-1102
[8]   Conditional gene targeting in macrophages and granulocytes using LysMcre mice [J].
Clausen, BE ;
Burkhardt, C ;
Reith, W ;
Renkawitz, R ;
Förster, I .
TRANSGENIC RESEARCH, 1999, 8 (04) :265-277
[9]   Single-cell profiling identifies myeloid cell subsets with distinct fates during neuroinflammation [J].
Costa Jordao, Marta Joana ;
Sankowski, Roman ;
Brendecke, Stefanie M. ;
Sagar ;
Locatelli, Giuseppe ;
Tai, Yi-Heng ;
Tay, Tuan Leng ;
Schramm, Eva ;
Armbruster, Stephan ;
Hagemeyer, Nora ;
Gross, Olaf ;
Mai, Dominic ;
Cicek, Ozgun ;
Falk, Thorsten ;
Kerschensteiner, Martin ;
Grun, Dominic ;
Prinz, Marco .
SCIENCE, 2019, 363 (6425) :365-+
[10]   Targeted sequencing by proximity ligation for comprehensive variant detection and local haplotyping [J].
de Vree, Paula J. P. ;
de Wit, Elzo ;
Yilmaz, Mehmet ;
de Heijning, Monique van ;
Klous, Petra ;
Verstegen, Marjon J. A. M. ;
Wan, Yi ;
Teunissen, Hans ;
Krijger, Peter H. L. ;
Geeven, Geert ;
Eijk, Paul P. ;
Sie, Daoud ;
Ylstra, Bauke ;
Hulsman, Lorette O. M. ;
van Dooren, Marieke F. ;
van Zutven, Laura J. C. M. ;
van den Ouweland, Ans ;
Verbeek, Sjef ;
van Dijk, Ko Willems ;
Cornelissen, Marion ;
Das, Atze T. ;
Ben Berkhout ;
Sikkema-Raddatz, Birgit ;
van den Berg, Eva ;
van der Vlies, Pieter ;
Weening, Desiree ;
den Dunnen, Johan T. ;
Matusiak, Magdalena ;
Lamkanfi, Mohamed ;
Ligtenberg, Marjolijn J. L. ;
ter Brugge, Petra ;
Jonkers, Jos ;
Foekens, John A. ;
Martens, John W. ;
van der Luijt, Rob ;
van Amstel, Hans Kristian Ploos ;
van Min, Max ;
Splinter, Erik ;
de Laat, Wouter .
NATURE BIOTECHNOLOGY, 2014, 32 (10) :1019-+