추천 제품
재조합
expressed in baculovirus infected Sf9 cells
Quality Level
제품 라인
PRECISIO® Kinase
분석
≥70% (SDS-PAGE)
양식
buffered aqueous glycerol solution
특이 활성도
583-789 nmol/min·mg
분자량
CDK5 subunit ~59 kDa
p25 subunit ~49 kDa
배송 상태
dry ice
저장 온도
−70°C
유전자 정보
human ... CDK5(1020) , CDK5R1(8851)
생화학적/생리학적 작용
CDK5 is a member of the Cyclin-Dependent Kinase family that is most abundant in the mammalian brain. Active form of CDK5, which has also been called neuronal cdc2-like kinase, is a heterodimer of CDK5 and a 25 kDa protein which is derived proteolytically from a 35 kDa brain and neuron-specific protein and is essential for the kinase activity of CDK5. CDK5 has emerged as a crucial regulator of neuronal migration in the developing central nervous system. CDK5 phosphorylates a diverse list of substrates, implicating it in the regulation of a range of cellular processes - from adhesion and motility, to synaptic plasticity and drug addiction.
물리적 형태
Supplied in 50 mM Tris-HCl, pH 7.5, with 150 mM NaCl, 0.2 5mM DTT, 0.1 mM EGTA, 0.1 mM EDTA, 0.1 mM PMSF, and 25% glycerol.
법적 정보
PRECISIO is a registered trademark of Merck KGaA, Darmstadt, Germany
Storage Class Code
10 - Combustible liquids
WGK
WGK 1
Flash Point (°F)
Not applicable
Flash Point (°C)
Not applicable
개인 보호 장비
Eyeshields, Gloves, multi-purpose combination respirator cartridge (US)
R Dhavan et al.
Nature reviews. Molecular cell biology, 2(10), 749-759 (2001-10-05)
Since it was identified a decade ago, cyclin-dependent kinase 5 (CDK5) has emerged as a crucial regulator of neuronal migration in the developing central nervous system. CDK5 phosphorylates a diverse list of substrates, implicating it in the regulation of a
D Tang et al.
Progress in cell cycle research, 2, 205-216 (1996-01-01)
While cyclin-dependent kinase 5 (Cdk5) is widely distributed in mammalian tissues and in cultured cell lines, Cdk5-associated kinase activity has been demonstrated only in mammalian brains. An active form of Cdk5, called neuronal cdc2-like kinase (Nclk) has been purified from
Son T Le et al.
Nanoscale, 11(33), 15622-15632 (2019-08-14)
We have demonstrated atomically thin, quantum capacitance-limited, field-effect transistors (FETs) that enable the detection of pH changes with 75-fold higher sensitivity (≈4.4 V per pH) over the Nernst value of 59 mV per pH at room temperature when used as
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