Apoptosis
Apoptosis(凋亡)
As one of the cellular death mechanisms, apoptosis, also known as programmed cell death, can be defined as the process of a proper death of any cell under certain or necessary conditions. Apoptosis is controlled by the interactions between several molecules and responsible for the elimination of unwanted cells from the body.
Many biochemical events and a series of morphological changes occur at the early stage and increasingly continue till the end of apoptosis process. Morphological event cascade including cytoplasmic filament aggregation, nuclear condensation, cellular fragmentation, and plasma membrane blebbing finally results in the formation of apoptotic bodies. Several biochemical changes such as protein modifications/degradations, DNA and chromatin deteriorations, and synthesis of cell surface markers form morphological process during apoptosis.
Apoptosis can be stimulated by two different pathways: (1) intrinsic pathway (or mitochondria pathway) that mainly occurs via release of cytochrome c from the mitochondria and (2) extrinsic pathway when Fas death receptor is activated by a signal coming from the outside of the cell.
Different gene families such as caspases, inhibitor of apoptosis proteins, B cell lymphoma (Bcl)-2 family, tumor necrosis factor (TNF) receptor gene superfamily, or p53 gene are involved and/or collaborate in the process of apoptosis.
Caspase family comprises conserved cysteine aspartic-specific proteases, and members of caspase family are considerably crucial in the regulation of apoptosis. There are 14 different caspases in mammals, and they are basically classified as the initiators including caspase-2, -8, -9, and -10; and the effectors including caspase-3, -6, -7, and -14; and also the cytokine activators including caspase-1, -4, -5, -11, -12, and -13. In vertebrates, caspase-dependent apoptosis occurs through two main interconnected pathways which are intrinsic and extrinsic pathways. The intrinsic or mitochondrial apoptosis pathway can be activated through various cellular stresses that lead to cytochrome c release from the mitochondria and the formation of the apoptosome, comprised of APAF1, cytochrome c, ATP, and caspase-9, resulting in the activation of caspase-9. Active caspase-9 then initiates apoptosis by cleaving and thereby activating executioner caspases. The extrinsic apoptosis pathway is activated through the binding of a ligand to a death receptor, which in turn leads, with the help of the adapter proteins (FADD/TRADD), to recruitment, dimerization, and activation of caspase-8 (or 10). Active caspase-8 (or 10) then either initiates apoptosis directly by cleaving and thereby activating executioner caspase (-3, -6, -7), or activates the intrinsic apoptotic pathway through cleavage of BID to induce efficient cell death. In a heat shock-induced death, caspase-2 induces apoptosis via cleavage of Bid.
Bcl-2 family members are divided into three subfamilies including (i) pro-survival subfamily members (Bcl-2, Bcl-xl, Bcl-W, MCL1, and BFL1/A1), (ii) BH3-only subfamily members (Bad, Bim, Noxa, and Puma9), and (iii) pro-apoptotic mediator subfamily members (Bax and Bak). Following activation of the intrinsic pathway by cellular stress, pro‑apoptotic BCL‑2 homology 3 (BH3)‑only proteins inhibit the anti‑apoptotic proteins Bcl‑2, Bcl-xl, Bcl‑W and MCL1. The subsequent activation and oligomerization of the Bak and Bax result in mitochondrial outer membrane permeabilization (MOMP). This results in the release of cytochrome c and SMAC from the mitochondria. Cytochrome c forms a complex with caspase-9 and APAF1, which leads to the activation of caspase-9. Caspase-9 then activates caspase-3 and caspase-7, resulting in cell death. Inhibition of this process by anti‑apoptotic Bcl‑2 proteins occurs via sequestration of pro‑apoptotic proteins through binding to their BH3 motifs.
One of the most important ways of triggering apoptosis is mediated through death receptors (DRs), which are classified in TNF superfamily. There exist six DRs: DR1 (also called TNFR1); DR2 (also called Fas); DR3, to which VEGI binds; DR4 and DR5, to which TRAIL binds; and DR6, no ligand has yet been identified that binds to DR6. The induction of apoptosis by TNF ligands is initiated by binding to their specific DRs, such as TNFα/TNFR1, FasL /Fas (CD95, DR2), TRAIL (Apo2L)/DR4 (TRAIL-R1) or DR5 (TRAIL-R2). When TNF-α binds to TNFR1, it recruits a protein called TNFR-associated death domain (TRADD) through its death domain (DD). TRADD then recruits a protein called Fas-associated protein with death domain (FADD), which then sequentially activates caspase-8 and caspase-3, and thus apoptosis. Alternatively, TNF-α can activate mitochondria to sequentially release ROS, cytochrome c, and Bax, leading to activation of caspase-9 and caspase-3 and thus apoptosis. Some of the miRNAs can inhibit apoptosis by targeting the death-receptor pathway including miR-21, miR-24, and miR-200c.
p53 has the ability to activate intrinsic and extrinsic pathways of apoptosis by inducing transcription of several proteins like Puma, Bid, Bax, TRAIL-R2, and CD95.
Some inhibitors of apoptosis proteins (IAPs) can inhibit apoptosis indirectly (such as cIAP1/BIRC2, cIAP2/BIRC3) or inhibit caspase directly, such as XIAP/BIRC4 (inhibits caspase-3, -7, -9), and Bruce/BIRC6 (inhibits caspase-3, -6, -7, -8, -9).
Any alterations or abnormalities occurring in apoptotic processes contribute to development of human diseases and malignancies especially cancer.
References:
1.Yağmur Kiraz, Aysun Adan, Melis Kartal Yandim, et al. Major apoptotic mechanisms and genes involved in apoptosis[J]. Tumor Biology, 2016, 37(7):8471.
2.Aggarwal B B, Gupta S C, Kim J H. Historical perspectives on tumor necrosis factor and its superfamily: 25 years later, a golden journey.[J]. Blood, 2012, 119(3):651.
3.Ashkenazi A, Fairbrother W J, Leverson J D, et al. From basic apoptosis discoveries to advanced selective BCL-2 family inhibitors[J]. Nature Reviews Drug Discovery, 2017.
4.McIlwain D R, Berger T, Mak T W. Caspase functions in cell death and disease[J]. Cold Spring Harbor perspectives in biology, 2013, 5(4): a008656.
5.Ola M S, Nawaz M, Ahsan H. Role of Bcl-2 family proteins and caspases in the regulation of apoptosis[J]. Molecular and cellular biochemistry, 2011, 351(1-2): 41-58.
- Caspase(102)
- 14.3.3 Proteins(2)
- Apoptosis Inducers(45)
- Bax(7)
- Bcl-2 Family(122)
- Bcl-xL(8)
- c-RET(9)
- IAP(27)
- KEAP1-Nrf2(67)
- MDM2(15)
- p53(128)
- PC-PLC(5)
- PKD(8)
- RasGAP (Ras- P21)(1)
- Survivin(8)
- Thymidylate Synthase(10)
- TNF-α(151)
- Other Apoptosis(900)
- Apoptosis Detection
- Caspase Substrate
- APC(6)
- PD-1/PD-L1 interaction(91)
- ASK1(3)
- PAR4(2)
- RIP kinase(52)
- FKBP(20)
- Pyroptosis(32)
Apoptosis 相关产品(2721)
- GC37765Terrestrosin DCAS: 179464-23-4纯度: >98.50%
Terrestrosin D 是从 Tribulus terrestris L. 中提取得到的一种甾体皂苷,可诱导细胞周期阻滞和癌细胞凋亡。Terrestrosin D 具有抗血管生成的活性。
- GC37836Tubulysin BCAS: 205304-87-6
Tubulysin B 是一种高度细胞毒性的肽,有效的微管去稳定剂,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。Tubulysin B 抑制许多癌细胞系,包括具有多药抗性的细胞系,IC50 值在皮纳摩尔范围内。Tubulysin B 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37837Tubulysin CCAS: 205304-88-7
Tubulysin C 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin C 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37839Tubulysin ECAS: 309935-58-8
Tubulysin E 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin E 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37840Tubulysin FCAS: 368870-67-1
Tubulysin F 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin F 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37841Tubulysin GCAS: 799822-08-5
Tubulysin G 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin G 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37842Tubulysin HCAS: 799822-09-6
Tubulysin H 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin H 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37843Tubulysin ICAS: 799822-10-9
Tubulysin I 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin I 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37844Tubulysin MCAS: 936691-46-2
Tubulysin M 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin M 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。
- GC37873Ursonic acidCAS: 6246-46-4纯度: >98.00%
Ursonic acid (Prunol, Malol, beta-Ursolic acid, NSC4060, CCRIS 7123, TOS-BB-0966), present in many plants, is a pentacyclic triterpenoid that can be used as a cosmetics additive and serve as a starting material for synthesis of more potent bioactive derivatives, such as experimental antitumor agents. Ursonic acid induces the apoptosis of human cancer cells through multiple signaling pathways.
- GC37887Vanillyl alcoholCAS: 498-00-0纯度: >99.50%
Vanillyl alcohol (4-Hydroxy-3-methoxybenzyl alcohol, Vanillin alcohol, Vanillic alcohol, 3-Methoxy-4-hydroxybenzyl alcohol), derived from vanillin, is used to flavor food.
- GC38044FraxinelloneCAS: 28808-62-0纯度: >99.50%
A liminoid degradant with diverse biological activities
- GC38083EthoxysanguinarineCAS: 28342-31-6纯度: >99.50%
Ethoxysanguinarine 是主要存在龙葵中的一种 benzophenanthridine 生物碱天然产物。Ethoxysanguinarine 通过抑制蛋白磷酸酶 2A (CIP2A),抑制结直肠癌细胞的活力,诱导细胞凋亡。
- GC38086LinderalactoneCAS: 728-61-0纯度: >98.00%
Linderalactone inhibits human lung cancer growth by modulating the expression of apoptosis-related proteins (Bax and Bcl-2) with an IC50 of 15 ?M in A-549 cells. Linderalactone induces G2/M cell cycle arrest and could also suppress the JAK/STAT signalling pathway. Linderalactone can be isolated from Radix linderae.
- GC38088Hederacolchiside A1CAS: 106577-39-3纯度: >99.50%
Hederacolchiside A1 是从白头翁中分离的,通过调节 PI3K/Akt/mTOR 信号通路诱导凋亡,从而抑制肿瘤细胞的增殖。Hederacolchiside A1 具有抗血吸虫病活性,影响体内和体外的寄生虫生存力。
| 货号 | 产品名称 | CAS号 | 纯度 | 结构 |
|---|---|---|---|---|
| GC37761 | Tenovin-6 Hydrochloride | 1011301-29-3 | >98.00% | |
A small molecule activator of p53 | ||||
| GC37765 | Terrestrosin D | 179464-23-4 | >98.50% | |
Terrestrosin D 是从 Tribulus terrestris L. 中提取得到的一种甾体皂苷,可诱导细胞周期阻滞和癌细胞凋亡。Terrestrosin D 具有抗血管生成的活性。 | ||||
| GC37780 | Thevetiaflavone | 29376-68-9 | - | |
Thevetiaflavone 可以上调 Bcl?2 的表达,下调 Bax 和 caspase-3 的表达。 | ||||
| GC37798 | Tipiracil | 183204-74-2 | - | |
A potent TPase inhibitor | ||||
| GC37836 | Tubulysin B | 205304-87-6 | - | |
Tubulysin B 是一种高度细胞毒性的肽,有效的微管去稳定剂,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。Tubulysin B 抑制许多癌细胞系,包括具有多药抗性的细胞系,IC50 值在皮纳摩尔范围内。Tubulysin B 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37837 | Tubulysin C | 205304-88-7 | - | |
Tubulysin C 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin C 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37839 | Tubulysin E | 309935-58-8 | - | |
Tubulysin E 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin E 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37840 | Tubulysin F | 368870-67-1 | - | |
Tubulysin F 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin F 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37841 | Tubulysin G | 799822-08-5 | - | |
Tubulysin G 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin G 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37842 | Tubulysin H | 799822-09-6 | - | |
Tubulysin H 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin H 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37843 | Tubulysin I | 799822-10-9 | - | |
Tubulysin I 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin I 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37844 | Tubulysin M | 936691-46-2 | - | |
Tubulysin M 是一种高度细胞毒性的肽,是从粘细菌 Archangium geophyra 和 Angiococcus disciformis 中分离的。 Tubulysin 在哺乳动物细胞中显示出极其有效的细胞毒活性,包括多药耐药细胞系,IC50 值在较低的纳摩尔范围内。 Tubulysin M 是一种具有细胞毒性活性微管溶素,抑制微管蛋白聚合并导致细胞周期停滞和凋亡。 | ||||
| GC37873 | Ursonic acid | 6246-46-4 | >98.00% | |
Ursonic acid (Prunol, Malol, beta-Ursolic acid, NSC4060, CCRIS 7123, TOS-BB-0966), present in many plants, is a pentacyclic triterpenoid that can be used as a cosmetics additive and serve as a starting material for synthesis of more potent bioactive derivatives, such as experimental antitumor agents. Ursonic acid induces the apoptosis of human cancer cells through multiple signaling pathways. | ||||
| GC37887 | Vanillyl alcohol | 498-00-0 | >99.50% | |
Vanillyl alcohol (4-Hydroxy-3-methoxybenzyl alcohol, Vanillin alcohol, Vanillic alcohol, 3-Methoxy-4-hydroxybenzyl alcohol), derived from vanillin, is used to flavor food. | ||||
| GC37900 | Verubulin | 827031-83-4 | >98.00% | |
Verubulin hydrochloride(MPC 6827 hydrochloride) is a microtubule destabilizer and vascular disrupting agent that achieve high brain concentration relative to plasma in animals. | ||||
| GC37964 | Zeylenone | 193410-84-3 | - | |
Zeylenone,可从 Uvaria grandiflora Roxb 的叶子的乙醇萃取物分离。Zeylenone 是一种天然存在的环己烯氧化物,通过 PI3K/AKT/mTOR 和 MAPK/ERK 信号通路抑制宫颈癌细胞增殖并诱导细胞凋亡 (apoptosis)。 | ||||
| GC37974 | ZYZ-488 | 1470302-79-4 | >99.50% | |
ZYZ-488 是一种竞争性凋亡蛋白酶激活因子-1 (Apaf-1) 抑制剂,抑制结合蛋白 procaspase-9 和 procaspase-3 的激活。 | ||||
| GC38014 | BT2 | 34576-94-8 | >99.50% | |
An Mcl-1 inhibitor | ||||
| GC38037 | GSK2983559 free acid | 1579965-12-0 | >99.50% | |
A RIPK2 inhibitor | ||||
| GC38044 | Fraxinellone | 28808-62-0 | >99.50% | |
A liminoid degradant with diverse biological activities | ||||
| GC38060 | Shield-1 | 914805-33-7 | >98.00% | |
Shield-1是一种特异性、细胞可渗透的FK506结合蛋白-12 (FKBP)配体。 | ||||
| GC38083 | Ethoxysanguinarine | 28342-31-6 | >99.50% | |
Ethoxysanguinarine 是主要存在龙葵中的一种 benzophenanthridine 生物碱天然产物。Ethoxysanguinarine 通过抑制蛋白磷酸酶 2A (CIP2A),抑制结直肠癌细胞的活力,诱导细胞凋亡。 | ||||
| GC38086 | Linderalactone | 728-61-0 | >98.00% | |
Linderalactone inhibits human lung cancer growth by modulating the expression of apoptosis-related proteins (Bax and Bcl-2) with an IC50 of 15 ?M in A-549 cells. Linderalactone induces G2/M cell cycle arrest and could also suppress the JAK/STAT signalling pathway. Linderalactone can be isolated from Radix linderae. | ||||
| GC38088 | Hederacolchiside A1 | 106577-39-3 | >99.50% | |
Hederacolchiside A1 是从白头翁中分离的,通过调节 PI3K/Akt/mTOR 信号通路诱导凋亡,从而抑制肿瘤细胞的增殖。Hederacolchiside A1 具有抗血吸虫病活性,影响体内和体外的寄生虫生存力。 | ||||
