Genetic variation at the chromosome 9p21 risk locus promotes cardiovascular disease; however, it is unclear how or which proteins encoded at this locus contribute to disease. We have previously demonstrated that loss of one candidate gene at this locus, cyclin-dependent kinase inhibitor 2B (Cdkn2b), in mice promotes vascular SMC apoptosis and aneurysm progression. Here, we investigated the role of Cdnk2b in atherogenesis and found that in a mouse model of atherosclerosis, deletion of Cdnk2b promoted advanced development of atherosclerotic plaques composed of large necrotic cores. Furthermore, human carriers of the 9p21 risk allele had reduced expression of CDKN2B in atherosclerotic plaques, which was associated with impaired expression of calreticulin, a ligand required for activation of engulfment receptors on phagocytic cells. As a result of decreased calreticulin, CDKN2B-deficient apoptotic bodies were resistant to efferocytosis and not efficiently cleared by neighboring macrophages. These uncleared SMCs elicited a series of proatherogenic juxtacrine responses associated with increased foam cell formation and inflammatory cytokine elaboration. The addition of exogenous calreticulin reversed defects associated with loss of Cdkn2b and normalized engulfment of Cdkn2b-deficient cells. Together, these data suggest that loss of CDKN2B promotes atherosclerosis by increasing the size and complexity of the lipid-laden necrotic core through impaired efferocytosis.
Yoko Kojima, Kelly Downing, Ramendra Kundu, Clint Miller, Frederick Dewey, Hope Lancero, Uwe Raaz, Ljubica Perisic, Ulf Hedin, Eric Schadt, Lars Maegdefessel, Tom Quertermous, Nicholas J. Leeper
Title and authors | Publication | Year |
---|---|---|
Lysosome Functions in Atherosclerosis: A Potential Therapeutic Target
Wang Z, Li X, Moura AK, Hu JZ, Wang YT, Zhang Y |
Cells | 2025 |
CDKN2B-AS1 polymorphism rs1333049 is associated with advanced carotid artery atherosclerosis in a Slovenian population
Letonja J, Petrovič D, Petrovič D |
Biomolecules and Biomedicine | 2025 |
Omics Approaches Unveiling the Biology of Human Atherosclerotic Plaques
Wu X, Zhang H |
The American Journal of Pathology | 2024 |
Efferocytosis in atherosclerosis.
Adkar SS, Leeper NJ |
Nature reviews. Cardiology | 2024 |
Macrophage polarisation and inflammatory mechanisms in atherosclerosis: Implications for prevention and treatment
Yang B, Hang S, Xu S, Gao Y, Yu W, Zang G, Zhang L, Wang Z |
Heliyon | 2024 |
Identification and validation of efferocytosis-related biomarkers for the diagnosis of metabolic dysfunction-associated steatohepatitis based on bioinformatics analysis and machine learning.
Cao C, Liu W, Guo X, Weng S, Chen Y, Luo Y, Wang S, Zhu B, Liu Y, Peng D |
Frontiers in immunology | 2024 |
Unraveling the understudied influence of a lead variant in the 9p21 locus on the atherogenic index among type 2 diabetes patients with coronary artery disease
Naserian M, Alizadeh A, Nosrati M, Mahrooz A |
Journal of Diabetes and Metabolic Disorders | 2024 |
Phytochemical-mediated efferocytosis and autophagy in inflammation control
Vafadar A, Tajbakhsh A, Hosseinpour-Soleimani F, Savardshtaki A, Hashempur MH |
Cell Death Discovery | 2024 |
Cellular Mechanisms Underlying the Impairment of Macrophage Efferocytosis
Ma Y, Kemp S, Yang X, Wu MH, Yuan SY |
Immunology Letters | 2023 |
Macrophage Anti-inflammatory Behaviour in a Multiphase Model of Atherosclerotic Plaque Development.
Ahmed IU, Byrne HM, Myerscough MR |
Bulletin of Mathematical Biology | 2023 |
CDKN2B‐AS (rs2891168), SOD2 (rs4880), and PON1 (rs662) polymorphisms and susceptibility to coronary artery disease and type 2 diabetes mellitus in Iranian patients: A case‐control study
Yari A, Karam ZM, Meybodi SM, Sargazi ML, Saeidi K |
2023 | |
Top Five Stories of the Cellular Landscape and Therapies of Atherosclerosis: Current Knowledge and Future Perspectives.
Pan Q, Chen C, Yang YJ |
2023 | |
The role of CD47 in non-neoplastic diseases
Wang C, Feng Y, Patel D, Xie H, Lv Y, Zhao H |
Heliyon | 2023 |
Therapeutic strategies targeting inflammation and immunity in atherosclerosis: how to proceed?
S Engelen, A Robinson, Y Zurke, C Monaco |
Nature Reviews Cardiology | 2022 |
Inflammation Resolution: Implications for Atherosclerosis
A Doran |
Circulation research | 2022 |
2021 Hoeg Lecture: Defining The Role Of Efferocytosis In Cardiovascular Disease – A Focus On The CD47 Axis
Jarr KU, Kojima Y, Weissman IL, Leeper NJ |
Arteriosclerosis, thrombosis, and vascular biology | 2022 |
Defective efferocytosis of vascular cells in heart disease
Singh B, Li K, Cui K, Peng Q, Cowan DB, Wang DZ, Chen K, Chen H |
Frontiers in Cardiovascular Medicine | 2022 |
Autophagy in Atherosclerotic Plaque Cells: Targeting NLRP3 Inflammasome for Self-Rescue
Li X, Zhu X, Wei Y |
Biomolecules | 2022 |
Deficiency of macrophage PHACTR1 impairs efferocytosis and promotes atherosclerotic plaque necrosis
Canan Kasikara, Maaike Schilperoort, Brennan D. Gerlach, Chenyi Xue, Xiaobo Wang, Ze Zheng, George Kuriakose, Bernhard Dorweiler, Hanrui Zhang, Gabrielle Fredman, Danish Saleheen, Muredach P Reilly, Ira Tabas |
Journal of Clinical Investigation | 2021 |
The Dual Role of Low-Density Lipoprotein Receptor-Related Protein 1 in Atherosclerosis
J Chen, Y Su, S Pi, B Hu, L Mao |
Frontiers in Cardiovascular Medicine | 2021 |
Potential Mechanisms and Effects of Efferocytosis in Atherosclerosis
L Wang, H Li, Y Tang, P Yao |
Frontiers in Endocrinology | 2021 |
Efferocytosis of vascular cells in cardiovascular disease
JT Cabrera, A Makino |
Pharmacology & Therapeutics | 2021 |
Ligand-dependent kinase activity of MERTK drives efferocytosis in human iPSC-derived macrophages
F Wanke, S Gutbier, A Rümmelin, M Steinberg, LD Hughes, M Koenen, J Komuczki, D Regan-Komito, S Wagage, J Hesselmann, R Thoma, D Brugger, T Christopeit, H Wang, F Point, R Hallet, S Ghosh, CV Rothlin, C Patsch, B Geering |
Cell Death and Disease | 2021 |
Apoptotic vesicles restore liver macrophage homeostasis to counteract type 2 diabetes
C Zheng, B Sui, X Zhang, J Hu, J Chen, J Liu, D Wu, Q Ye, L Xiang, X Qiu, S Liu, Z Deng, J Zhou, S Liu, S Shi, Y Jin |
Journal of Extracellular Vesicles | 2021 |
Macrophage LRP1 (Low-Density Lipoprotein Receptor-Related Protein 1) Is Required for the Effect of CD47 Blockade on Efferocytosis and Atherogenesis
PA Mueller, Y Kojima, KT Huynh, RA Maldonado, J Ye, H Tavori, N Pamir, NJ Leeper, S Fazio |
Arteriosclerosis, thrombosis, and vascular biology | 2021 |
Genetic Analysis for Coronary Artery Disease Toward Diverse Populations
K Miyazawa, K Ito |
Frontiers in Genetics | 2021 |
Cyclophilin A Impairs Efferocytosis and Accelerates Atherosclerosis by Overexpressing CD 47 and Down-Regulating Calreticulin
V Anandan, T Thulaseedharan, AS Kumar, KC Latha, A Revikumar, A Mullasari, CC Kartha, A Jaleel, S Ramachandran |
Cells | 2021 |
Metabolic Consequences of Efferocytosis and its Impact on Atherosclerosis.
Yurdagul A Jr |
Immunometabolism | 2021 |
Pro-efferocytic nanoparticles are specifically taken up by lesional macrophages and prevent atherosclerosis
AM Flores, N Hosseini-Nassab, KU Jarr, J Ye, X Zhu, R Wirka, AL Koh, P Tsantilas, Y Wang, V Nanda, Y Kojima, Y Zeng, M Lotfi, R Sinclair, IL Weissman, E Ingelsson, BR Smith, NJ Leeper |
Nature Nanotechnology | 2020 |
Nanoparticle-Based Approaches towards the Treatment of Atherosclerosis
AY Prilepskii, NS Serov, DV Kladko, VV Vinogradov |
Pharmaceutics | 2020 |
Senescent cells and macrophages: key players for regeneration?
S S., E Emmerson |
Open Biology | 2020 |
Long non-coding RNA CDKN2B-AS1 contributes to atherosclerotic plaque formation by forming RNA-DNA triplex in the CDKN2B promoter
M Ou, X Li, S Zhao, S Cui, J Tu |
EBioMedicine | 2020 |
Immune Clearance of Senescent Cells to Combat Ageing and Chronic Diseases
P Song, J An, MH Zou |
Cells | 2020 |
Targeting senescent cells to attenuate cardiovascular disease progression
P Song, Q Zhao, MH Zou |
Ageing Research Reviews | 2020 |
Efferocytosis and Its Associated Cytokines: A Light on Non-tumor and Tumor Diseases?
D Lin, X Kang, L Shen, S Tu, C Lenahan, Y Chen, X Wang, A Shao |
Molecular Therapy — Oncolytics | 2020 |
Clonally expanding smooth muscle cells promote atherosclerosis by escaping efferocytosis and activating the complement cascade
Y Wang, V Nanda, D Direnzo, J Ye, S Xiao, Y Kojima, KL Howe, KU Jarr, AM Flores, P Tsantilas, N Tsao, A Rao, AA Newman, AV Eberhard, JR Priest, A Ruusalepp, G Pasterkamp, L Maegdefessel, CL Miller, L Lind, S Koplev, JL Björkegren, GK Owens, E Ingelsson, IL Weissman, NJ Leeper |
Proceedings of the National Academy of Sciences | 2020 |
Neural reflex control of vascular inflammation
AS Caravaca, M Centa, AL Gallina, L Tarnawski, PS Olofsson |
Bioelectronic medicine | 2020 |
Human papillomavirus type 38 alters wild-type p53 activity to promote cell proliferation via the downregulation of integrin alpha 1 expression
MC Romero-Medina, A Venuti, G Melita, A Robitaille, MG Ceraolo, L Pacini, C Sirand, D Viarisio, V Taverniti, P Gupta, M Scalise, C Indiveri, R Accardi, M Tommasino, PF Lambert |
PLoS pathogens | 2020 |
Coronary Disease-Associated Gene TCF21 Inhibits Smooth Muscle Cell Differentiation by Blocking the Myocardin-Serum Response Factor Pathway
M Nagao, Q Lyu, Q Zhao, RC Wirka, J Bagga, T Nguyen, P Cheng, JB Kim, M Pjanic, JM Miano, T Quertermous |
Circulation research | 2020 |
Vascular Macrophages in Atherosclerosis
H Xu, J Jiang, W Chen, W Li, Z Chen |
Journal of Immunology Research | 2019 |
Nanoparticle Therapy for Vascular Diseases
AM Flores, J Ye, KU Jarr, N Hosseini-Nassab, BR Smith, NJ Leeper |
Arteriosclerosis, thrombosis, and vascular biology | 2019 |
Can Inflammation-Resolution Provide Clues to Treat Patients According to Their Plaque Phenotype?
G Fredman |
Frontiers in pharmacology | 2019 |
Inflammation and its resolution in atherosclerosis: mediators and therapeutic opportunities
M Bäck, A Yurdagul, I Tabas, K Öörni, PT Kovanen |
Nature Reviews Cardiology | 2019 |
Genetic Insights Into Smooth Muscle Cell Contributions to Coronary Artery Disease
D Wong, A Turner, C Miller |
Arteriosclerosis, thrombosis, and vascular biology | 2019 |
Loss of CDKN2B Promotes Fibrosis via Increased Fibroblast Differentiation Rather Than Proliferation
AM Scruggs, HB Koh, P Tripathi, NJ Leeper, ES White, SK Huang |
American journal of respiratory cell and molecular biology | 2018 |
Macrophage Trafficking, Inflammatory Resolution, and Genomics in Atherosclerosis
KJ Moore, S Koplev, EA Fisher, I Tabas, JL Björkegren, AC Doran, JC Kovacic |
Journal of the American College of Cardiology | 2018 |
Mechanisms and Consequences of Defective Efferocytosis in Atherosclerosis
A Yurdagul, AC Doran, B Cai, G Fredman, IA Tabas |
Frontiers in Cardiovascular Medicine | 2018 |
Deletion of Macrophage Low-Density Lipoprotein Receptor-Related Protein 1 (LRP1) Accelerates Atherosclerosis Regression and Increases CCR7 Expression in Plaque Macrophages
PA Mueller, L Zhu, H Tavori, K Huynh, I Giunzioni, JM Stafford, MR Linton, S Fazio |
Circulation | 2018 |
Translating GWAS Findings to Novel Therapeutic Targets for Coronary Artery Disease
L Shu, M Blencowe, X Yang |
Frontiers in Cardiovascular Medicine | 2018 |
LncRNA ANRIL Expression and ANRIL Gene Polymorphisms Contribute to the Risk of Ischemic Stroke in the Chinese Han Population
J Yang, L Gu, X Guo, J Huang, Z Chen, G Huang, Y Kang, X Zhang, J Long, L Su |
Cellular and Molecular Neurobiology | 2018 |
Roles of the Chr.9p21.3 ANRIL Locus in Regulating Inflammation and Implications for Anti-Inflammatory Drug Target Identification
G Aarabi, T Zeller, G Heydecke, M Munz, A Schäfer, U Seedorf |
Frontiers in Cardiovascular Medicine | 2018 |
Functional Assays to Screen and Dissect Genomic Hits: Doubling Down on the National Investment in Genomic Research
K Musunuru, D Bernstein, FS Cole, MK Khokha, FS Lee, S Lin, TV McDonald, IP Moskowitz, T Quertermous, VG Sankaran, DA Schwartz, EK Silverman, X Zhou, AA Hasan, XJ Luo |
Circulation. Genomic and precision medicine | 2018 |
Complex genetics of female fertility
R Gajbhiye, JN Fung, GW Montgomery |
npj Genomic Medicine | 2018 |
Coronary artery disease genes SMAD3 and TCF21 promote opposing interactive genetic programs that regulate smooth muscle cell differentiation and disease risk
D Iyer, Q Zhao, R Wirka, A Naravane, T Nguyen, B Liu, M Nagao, P Cheng, CL Miller, JB Kim, M Pjanic, T Quertermous, D Rader |
PLoS genetics | 2018 |
Current status and strategies of long noncoding RNA research for diabetic cardiomyopathy
T Pant, A Dhanasekaran, J Fang, X Bai, ZJ Bosnjak, M Liang, ZD Ge |
BMC Cardiovascular Disorders | 2018 |
Long Noncoding RNA ANRIL: Lnc-ing Genetic Variation at the Chromosome 9p21 Locus to Molecular Mechanisms of Atherosclerosis
LM Holdt, D Teupser |
Frontiers in Cardiovascular Medicine | 2018 |
Functional regulatory mechanism of smooth muscle cell-restricted LMOD1 coronary artery disease locus
V Nanda, T Wang, M Pjanic, B Liu, T Nguyen, LP Matic, U Hedin, S Koplev, L Ma, O Franzén, A Ruusalepp, EE Schadt, JL Björkegren, SB Montgomery, MP Snyder, T Quertermous, NJ Leeper, CL Miller, CD Brown |
PLoS genetics | 2018 |
Elevated methylation of cyclin dependent kinase inhibitor 2B contributes to the risk of coronary heart disease in women
X Chen, D Jiang, L Xu, L Han, H Hu, Y Huang, D Lu, H Ji, B Li, Y Yang, C Zhou, X Xu, N Wu, X Xu, Y Xu, Y Shen, J Li, S Duan |
Experimental and therapeutic medicine | 2018 |
Monocytes and macrophages in abdominal aortic aneurysm
J Raffort, F Lareyre, M Clément, R Hassen-Khodja, G Chinetti, Z Mallat |
Nature Reviews Cardiology | 2017 |
Cell Death in the Vessel Wall: The Good, the Bad, the Ugly
KJ Rayner |
Arteriosclerosis, thrombosis, and vascular biology | 2017 |
Eating the Dead to Keep Atherosclerosis at Bay
ML Brophy, Y Dong, H Wu, HN Rahman, K Song, H Chen |
Frontiers in Cardiovascular Medicine | 2017 |
Acute CD47 Blockade During Ischemic Myocardial Reperfusion Enhances Phagocytosis-Associated Cardiac Repair
S Zhang, XY Yeap, M DeBerge, NK Naresh, K Wang, Z Jiang, JE Wilcox, SM White, JP Morrow, PW Burridge, D Procissi, EA Scott, W Frazier, EB Thorp |
JACC: Basic to Translational Science | 2017 |
The Role of Efferocytosis in Atherosclerosis
Y Kojima, IL Weissman, NJ Leeper |
Circulation | 2017 |
A Missing LNC in Vascular Diseases
JP Cooke, NJ Leeper |
Circulation research | 2017 |
CDKN2A and CDKN2B methylation in coronary heart disease cases and controls
J Zhong, X Chen, H Ye, N Wu, X Chen, S Duan |
Experimental and therapeutic medicine | 2017 |
“Attack of the Clones”: Commonalities Between Cancer and Atherosclerosis
D DiRenzo, GK Owens, NJ Leeper |
Circulation research | 2017 |
Experimental Biology for the Identification of Causal Pathways in Atherosclerosis
Y Guo, MT Garcia-Barrio, L Wang, YE Chen |
Cardiovascular Drugs and Therapy | 2016 |
Mineralocorticoid Receptor Deficiency in Macrophages Inhibits Atherosclerosis by Affecting Foam Cell Formation and Efferocytosis
ZX Shen, XQ Chen, XN Sun, JY Sun, WC Zhang, XJ Zheng, YY Zhang, HJ Shi, JW Zhang, C Li, J Wang, X Liu, SZ Duan |
The Journal of biological chemistry | 2016 |
Vascular Smooth Muscle Cells in Atherosclerosis
MR Bennett, S Sinha, GK Owens |
Circulation research | 2016 |
Genetics and Genomics of Coronary Artery Disease
M Pjanic, CL Miller, R Wirka, JB Kim, DM DiRenzo, T Quertermous |
Current Cardiology Reports | 2016 |
CD47-blocking antibodies restore phagocytosis and prevent atherosclerosis
Y Kojima, JP Volkmer, K McKenna, M Civelek, AJ Lusis, CL Miller, D Direnzo, V Nanda, J Ye, AJ Connolly, EE Schadt, T Quertermous, P Betancur, L Maegdefessel, LP Matic, U Hedin, IL Weissman, NJ Leeper |
Nature | 2016 |
Calreticulin Regulates Neointima Formation and Collagen Deposition following Carotid Artery Ligation
KA Zimmerman, D Xing, MA Pallero, A Lu, M Ikawa, L Black, KL Hoyt, JH Kabarowski, M Michalak, JE Murphy-Ullrich |
Journal of Vascular Research | 2016 |
In the beginning and at the end: calreticulin
WM Nauseef |
Blood | 2016 |
Integrative functional genomics identifies regulatory mechanisms at coronary artery disease loci
CL Miller, M Pjanic, T Wang, T Nguyen, A Cohain, JD Lee, L Perisic, U Hedin, RK Kundu, D Majmudar, JB Kim, O Wang, C Betsholtz, A Ruusalepp, O Franzén, TL Assimes, SB Montgomery, EE Schadt, JL Björkegren, T Quertermous |
Nature Communications | 2016 |
Heart disease: Death-defying plaque cells
I Tabas |
Nature | 2016 |
Deficient CDKN2B Expression: A Double Hit for PAD
DL Hess, BH Annex |
Circulation research | 2016 |
The Role of Necroptosis in Atherosclerotic Disease
NJ Leeper |
JACC: Basic to Translational Science | 2016 |
Reconciling Smooth Muscle Cell Oligoclonality and Proliferative Capacity in Experimental Atherosclerosis
D Gomez, GK Owens |
Circulation research | 2016 |
The role of T and B cells in human atherosclerosis and atherothrombosis: Role of B and T cells in human atherosclerosis
E Ammirati, F Moroni, M Magnoni, PG Camici |
Clinical & Experimental Immunology | 2015 |
ICAM-1 suppresses tumor metastasis by inhibiting macrophage M2 polarization through blockade of efferocytosis
M Yang, J Liu, C Piao, J Shao, J Du |
Cell Death and Disease | 2015 |
The Genetic Basis of Peripheral Arterial Disease: Current Knowledge, Challenges, and Future Directions
IJ Kullo, NJ Leeper |
Circulation research | 2015 |
CDKN2B Regulates TGF β Signaling and Smooth Muscle Cell Investment of Hypoxic NeovesselsNovelty and Significance
V Nanda, KP Downing, J Ye, S Xiao, Y Kojima, JM Spin, D DiRenzo, KT Nead, AJ Connolly, S Dandona, L Perisic, U Hedin, L Maegdefessel, J Dalman, L Guo, XQ Zhao, FD Kolodgie, R Virmani, HR Davis, NJ Leeper |
Circulation research | 2015 |
CDKN2B expression and subcutaneous adipose tissue expandability: Possible influence of the 9p21 atherosclerosis locus
PA Svensson, B Wahlstrand, M Olsson, P Froguel, M Falchi, RN Bergman, PG McTernan, T Hedner, LM Carlsson, P Jacobson |
Biochemical and Biophysical Research Communications | 2014 |
Pulmonary surfactant: an immunological perspective
ZC Chroneos, Z Sever-Chroneos, VL Shepherd |
Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology | 2009 |