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核因子I/B:在癌症病理生理学中的双重作用

Nuclear factor I/B: Duality in action in cancer pathophysiology.

作者信息

Perumal Naveenkumar, Gopalakrishnan Prakadeeswari, Burkovetskaya Maria, Doss David, Dukkipati S Shekar, Kanchan Ranjana K, Mahapatra Sidharth

机构信息

School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore, India.

Department of Ophthalmology, Center for Translational Vision Research, Gavin Herbert Eye Institute, University of California, Irvine, CA, USA.

出版信息

Cancer Lett. 2025 Jan 28;609:217349. doi: 10.1016/j.canlet.2024.217349. Epub 2024 Nov 22.

Abstract

The nuclear factor I (NFI) family of transcription factors plays a decisive role in organ development and maturation. Their deregulation has been linked with various diseases, most notably cancer. NFIB stands apart from the other NFI family members given its unique ability to drive both tumor suppressive and oncogenic programs. Thus, the ultimate impact of deregulated NFIB signaling is cancer-specific and strongly influenced by an intricate network of upstream regulators and downstream effectors. Deciphering the events that drive NFIB's paradoxical roles within these networks will enable us to not only understand how this critical transcription factor enacts its dual roles but also drive innovations to help us effectively target NFIB in different cancers. Here, we provide an in-depth review of NFIB. Starting with its defining role in the development of various organs, most notably the central nervous system, we highlight critical signaling pathways and the impact of deregulation on neoplastic transformation, contrasting it with the effect of silencing alone. We then provide examples of its dual roles in various cancers, identifying specific signaling networks associated with oncogenesis versus tumor suppression. We incorporate an example of a cancer type, osteosarcoma, wherein NFIB enacts its dual functions and explore which pathways influence each function. In this manner, we suggest plausible mechanisms for its role-switching from cancers sharing common triggering events in the setting of NFIB deregulation. We also review how NFIB enhances aggressiveness by driving metastasis, stemness, and chemoresistance. We conclude with a discussion on efficacious ways to target NFIB and pose some unanswered questions that may further help solidify our understanding of NFIB and facilitate clinical translation of NFIB targeting.

摘要

核因子I(NFI)转录因子家族在器官发育和成熟过程中起决定性作用。其失调与多种疾病相关,最显著的是癌症。NFIB与其他NFI家族成员不同,因为它具有驱动肿瘤抑制和致癌程序的独特能力。因此,NFIB信号失调的最终影响具有癌症特异性,并受到上游调节因子和下游效应因子复杂网络的强烈影响。破解在这些网络中驱动NFIB矛盾作用的事件,将使我们不仅能够理解这个关键转录因子如何发挥其双重作用,还能推动创新,帮助我们在不同癌症中有效靶向NFIB。在这里,我们对NFIB进行了深入综述。从其在各种器官(最显著的是中枢神经系统)发育中的决定性作用开始,我们强调关键信号通路以及失调对肿瘤转化的影响,并将其与单独沉默的效果进行对比。然后,我们提供了其在各种癌症中双重作用的例子,确定了与肿瘤发生和肿瘤抑制相关的特定信号网络。我们纳入了一种癌症类型骨肉瘤的例子,其中NFIB发挥其双重功能,并探索哪些通路影响每种功能。通过这种方式,我们提出了在NFIB失调情况下,其在具有共同触发事件的癌症中作用转换的合理机制。我们还综述了NFIB如何通过驱动转移、干性和化疗耐药性来增强侵袭性。我们最后讨论了靶向NFIB的有效方法,并提出了一些未解决的问题,这些问题可能进一步有助于巩固我们对NFIB的理解,并促进NFIB靶向治疗的临床转化。

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