MLIP and Its Potential Influence on Key Oncogenic Pathways

Author:

Hamwi Mahmoud N.1,Elsayed Engy1,Dabash Hanan2,Abuawad Amani2,Aweer Noor A.1,Al Zeir Faissal1,Pedersen Shona1ORCID,Al-Mansoori Layla3,Burgon Patrick G.2ORCID

Affiliation:

1. College of Medicine, Qatar University, Doha P.O. Box 0974, Qatar

2. Department of Chemistry and Earth Sciences, College of Arts and Sciences, Qatar University, Doha P.O. Box 2713, Qatar

3. Biomedical Research Centre, Qatar University, Doha P.O. Box 2713, Qatar

Abstract

Muscle-enriched A-type lamin-interacting protein (MLIP) is an emerging protein involved in cellular homeostasis and stress adaptation. Eukaryotic cells regulate various cellular processes, including metabolism, DNA repair, and cell cycle progression, to maintain cellular homeostasis. Disruptions in this homeostasis can lead to diseases such as cancer, characterized by uncontrolled cell growth and division. This review aims to explore for the first time the unique role MLIP may play in cancer development and progression, given its interactions with the PI3K/Akt/mTOR pathway, p53, MAPK9, and FOXO transcription factors, all critical regulators of cellular homeostasis and tumor suppression. We discuss the current understanding of MLIP’s involvement in pro-survival pathways and its potential implications in cancer cells’ metabolic remodeling and dysregulated homeostasis. Additionally, we examine the potential of MLIP as a novel therapeutic target for cancer treatment. This review aims to shed light on MLIP’s potential impact on cancer biology and contribute to developing innovative therapeutic strategies.

Funder

QRDI

Publisher

MDPI AG

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