Programmed Cell Death

Programmed Cell Death

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    Description:

    Programmed Cell Death 6 Interacting Protein Human Recombinant

    AIP1, Alix, PDCD6-Interacting Protein, DRIP4, ALG-2 interacting protein 1, Programmed cell death 6-interacting protein, Hp95, PDCD6IP, KIAA1375, MGC17003.

    Product # :

    PRO-792

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    Purity

    Greater than 95.0% as determined by SDS-PAGE.

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    Pdcd6Ip Human
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    Programmed Cell Death 6 Human Recombinant

    Programmed cell death 6, ALG-2, PEF1B, Apoptosis-linked gene 2 protein, Probable calcium-binding protein ALG-2, FLJ46208, MGC111017, MGC119050, MGC9123.

    Product # :

    PRO-184

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    Greater than 95% as determined by SDS-PAGE.

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    Pdcd6 Human
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    Programmed Cell Death-5 Human Recombinant

    Programmed cell death protein 5, TF-1 cell apoptosis-related protein 19, Protein TFAR19, PDCD5, TFAR19, MGC9294.

    Product # :

    PRO-624

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    Purity

    Greater than 95.0% as determined by SDS-PAGE.

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    Pdcd5 Human
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    Programmed Cell Death 4 Human Recombinant

    Programmed cell death protein 4, Nuclear antigen H731-like, Neoplastic transformation inhibitor protein, Protein 197/15a, PDCD4, H731, MGC33046, MGC33047.

    Product # :

    PRO-606

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    Purity

    Greater than 90.0% as determined by:
    (a) Analysis by RP-HPLC.
    (b) Analysis by SDS-PAGE.

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    Pdcd4 Human
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    Description:

    Programmed Cell Death 1 Ligand 2 Human Recombinant, Sf9

    Programmed Cell Death 1 Ligand 2, B7 Dendritic Cell Molecule, Programmed Death Ligand 2, Butyrophilin B7-DC, PDCD1 Ligand 2, PDCD1L2, B7-DC, CD273, PD-L2,B7DC, PDL2, PD-1-Ligand 2, CD273 Antigen, PD-1 Ligand 2, BA574F11.2, Btdc.

    Product # :

    PRO-2434

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    Purity

    Greater than 95.0% as determined by SDS-PAGE.

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    Pdcd1Lg2 Human Sf9
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    Description:

    Programmed Cell Death 1 Ligand 2 Human Recombinant

    Programmed cell death 1 ligand 2, PD-1 ligand 2, PD-L2, PDCD1 ligand 2, Programmed death ligand 2, PDCD1LG2, B7-DC, Butyrophilin B7-DC, CD273, B7DC, CD273, PDCD1L2, PDL2, bA574F11.2, Btdc.

    Product # :

    PRO-2019

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    • purity
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    Greater than 90% as determined by SDS-PAGE.

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    • Amino Acid Sequence
    Pdcd1Lg2 Human
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    Description:

    Programmed Cell Death 1 Human Recombinant, Active

    Programmed cell death protein 1, CD279, hPD-1, SLEB2, hPD-l, hSLE1, PD-1, PD1, PDCD1.

    Product # :

    PRO-2724

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    Greater than 95.0% as determined by SDS-PAGE.

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    • Synonyms
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    • Stability
    • Amino Acid Sequence
    Pdcd1 Protein
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    Description:

    Programmed Cell Death 1 Human Recombinant

    Programmed Cell Death 1, Systemic Lupus Erythematosus Susceptibility 2, Protein PD-1, HPD-1, PD1, Programmed Cell Death 1 Protein, Programmed Cell Death Protein 1, CD279 Antigen, CD279, HPD-L, HSLE1, SLEB2, PD-1.

    Product # :

    PRO-2442

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    • purity
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    Purity

    Greater than 90.0% as determined by SDS-PAGE.

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    • Introduction
    • Synonyms
    • Physical Appearance
    • Stability
    • Amino Acid Sequence
    Pdcd1 Human

About PDCD / Programmed Cell Death:

Programmed cell death, otherwise referred to as cellular suicide, is the end death of a cell that takes place as a result of the functions within it. Autophagy and apoptosis are the most common examples. It is carried out in a biological process for the purpose of sustaining the lifecycle and growth of an organism. It serves crucial developmental functions during plant and animal tissue growth.
Unlike necrosis, which is the death of a cell which was caused by external factors such as infection or perhaps even trauma, apoptosis and autophagy are programmed cell death, occurring as a biological process for the advantage of an organism. For instance, human embryos developing distinctions between fingers and toes is caused by apoptosis.
Other forms of PCD involve anoikis, which is similar to apoptosis aside from how its induction is processed, in this form, cornification which relates to cell death in the eyes, Wallerian degeneration, and ferroptosis, caused by iron deficiency.

PDCD Regulation
The kinase MTOR is a critical regular of autophagy, which is promoted in its inactive form and suppressed in its inactive form. Extensive crosstalk exists between autophagy and apoptosis, for instance, fasting and nutrient deficiency causes autophagy functions to develop as a pro-survival mechanism. However, if this is excessive, it can lead to cell death.
Atrophic factors can also contribute to PCD, such as senility, bad nutrition, bad blood supply, and a decreased workload. The leading hypothesis that explains the function of programmed cell death is called neurotrophic theory.