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Thermo Fisher Scientific PTPN3 Polyclonal Antibody
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Thermo Fisher Scientific PTPN3 Polyclonal Antibody

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Human PTPN3 단백질을 인식하는 Rabbit Polyclonal Antibody로, IHC(P)에서 1:20–1:50 희석으로 사용 가능. 항원 친화 크로마토그래피로 정제되었으며, PBS 버퍼(40% 글리세롤, 0.02% sodium azide) 용액 형태로 제공. 단기 4°C, 장기 -20°C 보관.

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마지막 업데이트 2025. 08. 05. 오전 10:14
Thermo Fisher Scientific PA583414 PTPN3 Polyclonal Antibody 100 ul pk판매 단위 pk ·
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740,000원VAT 포함 814,000원

Thermo Fisher Scientific · Thermo Fisher Scientific PTPN3 Polyclonal Antibody

Applications

Immunohistochemistry (Paraffin) [IHC (P)]

  • Tested Dilution: 1:20–1:50

Product Specifications

항목 내용
Species Reactivity Human
Host / Isotype Rabbit / IgG
Class Polyclonal
Type Antibody
Immunogen Recombinant protein corresponding to Human PTPN3. Recombinant protein control fragment (Product #RP-98328).
Conjugate Unconjugated
Form Liquid
Concentration 0.2 mg/mL
Purification Antigen affinity chromatography
Storage Buffer PBS, pH 7.2, with 40% glycerol
Contains 0.02% sodium azide
Storage Conditions Store at 4°C short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles.
Shipping Conditions Wet ice
RRID AB_2790570

Product Specific Information

Immunogen sequence:
TPNWRSPRLR HEIRKPRHSS ADNLANEMTY ITETEDVFYT YKGSLAPQDS DSEVSQNRSP HQESLSENNP AQSYLTQ


Target Information

Phosphorylation of receptors by protein kinases is a process that can be reversed by a group of enzymes called protein phosphatases. Coordinated control of kinases and phosphatases provides the cell with the capacity to rapidly switch between phosphorylated and dephosphorylated protein states in dynamic response to environmental stimuli. Activation of critical enzymes by kinase phosphorylation alone is not enough to provide adequate regulation—it is the combination with phosphatase dephosphorylation that effectively creates on/off switches to control cellular events.

Errors in control, either through kinases or their counterpart phosphatases, can lead to unchecked cell growth attributable to human cancers and developmental disorders. Potential mechanisms to control dephosphorylation include changes in the expression of protein phosphatases, their subcellular localization, phosphorylation of phosphatase catalytic and regulatory subunits, and regulation by endogenous phosphatase inhibitors.

Most protein phosphatases are not stringently specific for their substrates. Consequently, changes in phosphatase activity may have a broad impact on dephosphorylation and turnover of phosphoproteins that are substrates for different kinases. This may be an important point of control to connect cellular circuitry of interrelated signaling pathways and to synchronize physiological responses.


For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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