Apoptosis and Molecular Targeting Therapy in Cancer

Апоптоз и молекулярно-таргетная терапия рака
Yusuke Ohba, Hidemichi Watari, Mohamed K. Hassan, Ali H. Abu-Almaaty, Noriaki Sakuragi
2014-06-12

Bcl-2 family proteinsapoptosiscancerinhibitor of apoptosis proteinsmolecular targeting therapy
Apoptosis is the programmed cell death which maintains the healthy survival/death balance in metazoan cells. Defect in apoptosis can cause cancer or autoimmunity, while enhanced apoptosis may cause degenerative diseases. The apoptotic signals contribute into safeguarding the genomic integrity while defective apoptosis may promote carcinogenesis. The apoptotic signals are complicated and they are regulated at several levels. The signals of carcinogenesis modulate the central control points of the apoptotic pathways, including inhibitor of apoptosis (IAP) proteins and FLICE-inhibitory protein (c-FLIP). The tumor cells may use some of several molecular mechanisms to suppress apoptosis and acquire resistance to apoptotic agents, for example, by the expression of antiapoptotic proteins such as Bcl-2 or by the downregulation or mutation of proapoptotic proteins such as BAX. In this review, we provide the main regulatory molecules that govern the main basic mechanisms, extrinsic and intrinsic, of apoptosis in normal cells. We discuss how carcinogenesis could be developed via defective apoptotic pathways or their convergence. We listed some molecules which could be targeted to stimulate apoptosis in different cancers. Together, we briefly discuss the development of some promising cancer treatment strategies which target apoptotic inhibitors including Bcl-2 family proteins, IAPs, and c-FLIP for apoptosis induction.
1
Apoptosis maintains cellular survival–death balance and genomic integrity; its disruption can promote cancer or autoimmunity, whereas excessive apoptosis may cause degenerative disease.
2
Cancer cells suppress apoptosis and acquire treatment resistance through mechanisms including antiapoptotic Bcl-2 expression and downregulation or mutation of proapoptotic BAX.
3
Carcinogenic signaling alters central apoptotic control points, particularly inhibitor of apoptosis proteins (IAPs) and FLICE-inhibitory protein (c-FLIP).
4
Targeting apoptotic inhibitors, including Bcl-2 family proteins, IAPs, and c-FLIP, represents a promising strategy for inducing apoptosis in cancer therapy.
5
The review describes extrinsic and intrinsic apoptosis pathways and their regulatory molecules in normal cells, including pathway convergence during carcinogenesis.

Apoptotic pathways and their regulatory molecules in cancer cells

The molecular mechanisms regulating apoptosis, their defects in carcinogenesis, and therapeutic targeting of apoptotic inhibitors to induce cancer-cell death

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2014-06-12
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Authors
Yusuke Ohba
Hidemichi Watari
Mohamed K. Hassan
Ali H. Abu-Almaaty
Noriaki Sakuragi
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