SIRT7: a novel molecular target for personalized cancer treatment?

被引:0
作者
Alessandro Ianni
Poonam Kumari
Shahriar Tarighi
Thomas Braun
Alejandro Vaquero
机构
[1] Josep Carreras Leukaemia Research Institute (IJC),Chromatin Biology Laboratory
[2] Ctra de Can Ruti,Department of Cardiac Development and Remodeling
[3] Camí de les Escoles,undefined
[4] Badalona,undefined
[5] Max-Planck-Institute for Heart and Lung Research,undefined
来源
Oncogene | 2024年 / 43卷
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摘要
The Sirtuin family of NAD+-dependent enzymes assumes a pivotal role in orchestrating adaptive responses to environmental fluctuations and stress stimuli, operating at both genomic and metabolic levels. Within this family, SIRT7 emerges as a versatile player in tumorigenesis, displaying both pro-tumorigenic and tumor-suppressive functions in a context-dependent manner. While other sirtuins, such as SIRT1 and SIRT6, exhibit a similar dual role in cancer, SIRT7 stands out due to distinctive attributes that sharply distinguish it from other family members. Among these are a unique key role in regulation of nucleolar functions, a close functional relationship with RNA metabolism and processing -exceptional among sirtuins- and a complex multienzymatic nature, which provides a diverse range of molecular targets. This review offers a comprehensive overview of the current understanding of the role of SIRT7 in various malignancies, placing particular emphasis on the intricate molecular mechanisms employed by SIRT7 to either stimulate or counteract tumorigenesis. Additionally, it delves into the unique features of SIRT7, discussing their potential and specific implications in tumor initiation and progression, underscoring the promising avenue of targeting SIRT7 for the development of innovative anti-cancer therapies.
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页码:993 / 1006
页数:13
相关论文
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  • [1] Kumari P(2021)SIRT7 acts as a guardian of cellular integrity by controlling nucleolar and extra-nucleolar functions Genes 12 1361-92
  • [2] Tarighi S(2018)Sirtuins in the cardiovascular system: potential targets in pediatric cardiology Pediatr Cardiol 39 983-54
  • [3] Braun T(2006)SIRT4 inhibits glutamate dehydrogenase and opposes the effects of calorie restriction in pancreatic beta cells Cell 126 941-28
  • [4] Ianni A(2019)SIRT6 promotes transcription of a subset of NRF2 targets by mono-ADP-ribosylating BAF170 Nucleic Acids Res 47 7914-63
  • [5] Ianni A(2020)SirT7 auto-ADP-ribosylation regulates glucose starvation response through mH2A1 Sci Adv 6 148-75
  • [6] Yuan X(2013)The diversity of histone versus nonhistone sirtuin substrates Genes Cancer 4 3764-94
  • [7] Bober E(2021)Bacterial sirtuins overview: an open niche to explore Front Microbiol 12 483-53
  • [8] Braun T(2014)Sirtuins in stress response: guardians of the genome Oncogene 33 639-63
  • [9] Haigis MC(2017)Haploinsufficiency of SIRT1 enhances glutamine metabolism and promotes cancer development Curr Biol 27 450-99
  • [10] Mostoslavsky R(2013)The tumor suppressor SirT2 regulates cell cycle progression and genome stability by modulating the mitotic deposition of H4K20 methylation Genes Dev 27 1185-76