O

Orit Karni-Schmidt

Columbia University

Publishes on Cancer-related Molecular Pathways, Ubiquitin and proteasome pathways, Epigenetics and DNA Methylation. 14 papers and 2.6k citations.

14Publications
2.6kTotal Citations

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Top publicationsby citations

The Roles of MDM2 and MDMX in Cancer
Orit Karni-Schmidt, Maria Lokshin, Carol Prives|Annual Review of Pathology Mechanisms of Disease|2016
Cited by 310Open Access

For more than 25 years, MDM2 and its homolog MDMX (also known as MDM4) have been shown to exert oncogenic activity. These two proteins are best understood as negative regulators of the p53 tumor suppressor, although they may have additional p53-independent roles. Understanding the dysregulation of MDM2 and MDMX in human cancers and how they function either together or separately in tumorigenesis may improve methods of diagnosis and for assessing prognosis. Targeting the proteins themselves, or their regulators, may be a promising therapeutic approach to treating some forms of cancer.

p53 Down-Regulates CHK1 through p21 and the Retinoblastoma Protein
Vanesa Gottifredi, Orit Karni-Schmidt, Sheau-Yann Shieh et al.|Molecular and Cellular Biology|2001
Cited by 163Open Access

Both fission yeast and mammalian cells require the function of the checkpoint kinase CHK1 for G2 arrest after DNA damage. The tumor suppressor p53, a well-studied stress response factor, has also been shown to play a role in DNA damage G2 arrest, although in a manner that is probably independent of CHK1. p53, however, can be phosphorylated and regulated by both CHK1 as well as another checkpoint kinase, hCds1 (also called CHK2). It was therefore of interest to determine whether reciprocally, p53 affects either CHK1 or CHK2. We found that induction of p53 either by diverse stress signals or ectopically using a tetracycline-regulated promoter causes a marked reduction in CHK1 protein levels. CHK1 downregulation by p53 occurs as a result of reduced CHK1 RNA accumulation, indicating that repression occurs at the level of transcription. Repression of CHK1 by p53 requires p21, since p21 alone is sufficient for this to occur and cells lacking p21 cannot downregulate CHK1. Interestingly, pRB is also required for CHK1 downregulation, suggesting the possible involvement of E2F-dependent transcription in the regulation of CHK1. Our results identify a new repression target of p53 and suggest that p53 and CHK1 play interdependent and complementary roles in regulating both the arrest and resumption of G2 after DNA damage.