^“Towards a proteome-scale map of the human protein-protein interaction network”. Nature437 (7062): 1173–8. (October 2005). doi:10.1038/nature04209. PMID16189514.
“Evidence for different modes of action of cyclin-dependent kinase inhibitors: p15 and p16 bind to kinases, p21 and p27 bind to cyclins”. Oncogene11 (8): 1581–8. (October 1995). PMID7478582.
“Genomic structure, expression and mutational analysis of the P15 (MTS2) gene”. Oncogene11 (5): 987–91. (September 1995). PMID7675459.
“Mutations in the p16INK4/MTS1/CDKN2, p15INK4B/MTS2, and p18 genes in primary and metastatic lung cancer”. Cancer Research55 (7): 1448–51. (April 1995). PMID7882351.
“Deletion of p16 and p15 genes in brain tumors”. Cancer Research54 (24): 6353–8. (December 1994). PMID7987828.
“Growth suppression by p18, a p16INK4/MTS1- and p14INK4B/MTS2-related CDK6 inhibitor, correlates with wild-type pRb function”. Genes & Development8 (24): 2939–52. (December 1994). doi:10.1101/gad.8.24.2939. PMID8001816.
“The subcellular locations of p15(Ink4b) and p27(Kip1) coordinate their inhibitory interactions with cdk4 and cdk2”. Genes & Development11 (4): 492–503. (February 1997). doi:10.1101/gad.11.4.492. PMID9042862.
“Repression of the CDK activator Cdc25A and cell-cycle arrest by cytokine TGF-beta in cells lacking the CDK inhibitor p15”. Nature387 (6631): 417–22. (May 1997). doi:10.1038/387417a0. PMID9163429.
“Cloning and characterization of p10, an alternatively spliced form of p15 cyclin-dependent kinase inhibitor”. Cancer Research57 (14): 2966–73. (July 1997). PMID9230210.
“Transforming growth factor-beta-mediated p15(INK4B) induction and growth inhibition in astrocytes is SMAD3-dependent and a pathway prominently altered in human glioma cell lines”. The Journal of Biological Chemistry274 (49): 35053–8. (December 1999). doi:10.1074/jbc.274.49.35053. PMID10574984.
“Repression of p15INK4b expression by Myc through association with Miz-1”. Nature Cell Biology3 (4): 392–9. (April 2001). doi:10.1038/35070076. PMID11283613.
“Over-expression of CDKIs p15INK4b, p16INK4a and p21CIP1/WAF1 genes mediate growth arrest in human osteosarcoma cell lines”. In Vivo15 (5): 443–6. (2002). PMID11695244.
“Alterations of INK4a(p16-p14ARF)/INK4b(p15) expression and telomerase activation in meningioma progression”. Journal of Neuro-Oncology55 (3): 149–58. (December 2001). doi:10.1023/A:1013863630293. PMID11859969.
“Frequent abnormalities of the p15 and p16 genes in mycosis fungoides and sezary syndrome”. The Journal of Investigative Dermatology118 (3): 493–9. (March 2002). doi:10.1046/j.0022-202x.2001.01682.x. PMID11874489.
“Inactivation of p16/CDKN2 and p15/MTS2 is associated with prognosis and response to chemotherapy in ovarian cancer”. International Journal of Cancer99 (4): 579–82. (June 2002). doi:10.1002/ijc.10331. PMID11992549.
“Cyclin-Dependent Kinase Inhibitor 2b Controls Fibrosis and Functional Changes in Ischemia-Induced Heart Failure via the BMI1-p15-Rb Signalling Pathway”. Canadian Journal of Cardiology37 (4): 655-664. (2021). doi:10.1016/j.cjca.2020.05.016. PMID32428618.