Laura Zannini


Istituto di Genetica Molecolare “Luigi Luca Cavalli-Sforza” – CNR
Via Abbiategrasso, 207
27100 Pavia
Phone: 0382 546363

E-mail: laura.zannini@igm.cnr.it

Curriculum Vitae – Download

Complete List of Publications – download

Research Activity

The main interest of our research work is the study of the DNA damage response (DDR), a complex network of pathways that cells evolved to comply with exogenous or endogenous insults to the genome. Indeed, every day cells are exposed to genotoxic agents that can harm the DNA and, if the lesions are not correctly repaired, genomic instability and cancer formation may occur. Accordingly, disruption of DDR proteins has been found in many types of tumor. However, although DDR defects can promote cancer formation, they also constitute a weakness that can be exploited by therapy since drugs capable to induce more lesions than that allowed by the repair capacity of tumoral cells can be useful in the therapy of cancer patients. Exactly for this reason it is important, and mostly interesting, to elucidate the molecular mechanisms underlying the DDR and the pathways involved in the repair of DNA lesions.

During our studies, we particularly focused on the ATM-Chk2 branch and we have been particularly involved in the research and characterization of proteins interacting with Chk2, a kinase with a main role in the regulation of cell cycle checkpoints activation in response to DNA damage.

In the last years, we identified DBC1 (Deleted in breast cancer-1, CCAR2, KIAA1967) as a nuclear protein whose activity is regulated by ATM and ATR and that, cooperating with Chk2, is involved in DNA damage response and apoptosis regulation. During these studies we also found that TSPYL2 (Testis Specific Y-encoded Like protein 2) is another DDR player that shares with DBC1 important functions in the regulation of p53 activity and apoptosis induction in response to DNA damage. The main focus of our lab is therefore to investigate how DBC1 and TSPYL2 cooperate and participate to the DDR, how they are involved in tumorigenesis and cancer progression and whether they could be in the future good targets for cancer prognosis and therapy.

Research Project

Research Group


Recent Publications

2024

Celli L; Gasparini P; Biino G; Zannini L; Cardano M

CRISPR/Cas9 mediated Y-chromosome elimination affects human cells transcriptome Journal Article

In: Cell & bioscience, vol. 14, iss. 1, pp. 15, 2024.

Abstract | Links | BibTeX

2023

Cardano M; Magni M; Alfieri R; Chan SY; Sabbioneda S; Buscemi G; Zannini L

Sex specific regulation of TSPY-Like 2 in the DNA damage response of cancer cells Journal Article

In: Cell death and disease, vol. 14, iss. 3, pp. 197, 2023.

Abstract | Links | BibTeX

2022

Cardano M; Buscemi G; Zannini L

Sex disparities in DNA damage response pathways: Novel determinants in cancer formation and therapy Journal Article

In: iScience, vol. 25, iss. 3, pp. 103875, 2022.

Abstract | Links | BibTeX

2019

Magni M; Buscemi G; Maita L; Peng L; Chan SY; Montecucco A; Delia D; Zannini L

TSPYL2 is a novel regulator of SIRT1 and p300 activity in response to DNA damage. Journal Article

In: Cell death and differentiation, vol. 26, no. 5, pp. 918-931, 2019.

Abstract | Links | BibTeX

2018

Magni M; Buscemi G; Zannini L

Cell cycle and apoptosis regulator 2 at the interface between DNA damage response and cell physiology Journal Article

In: Mutation research - Reviews in Mutation Research, vol. 776, pp. 1-9, 2018.

Abstract | Links | BibTeX