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The chemical "C6H4ClFO3P(1-)*K(1+)" is a complex compound consisting of two parts: a negatively charged organic phosphate anion (C6H4ClFO3P(1-)) and a positively charged potassium cation (K(1+)). The anion features a benzene ring (C6H4) with a chlorine atom, a fluorine atom, and a phosphate group (PO3) attached to it. The potassium cation is a simple metal ion with a +1 charge. C6H4ClFO3P(1-)*K(1+) is likely to be a salt, where the potassium ion balances the charge of the organic phosphate anion. The presence of chlorine, fluorine, and phosphorus in the anion suggests that C6H4ClFO3P(1-)*K(1+) may have applications in areas such as pharmaceuticals or agrochemicals, where such functional groups are common. The specific properties and uses of C6H4ClFO3P(1-)*K(1+) would depend on the arrangement of these atoms within the molecule and the overall structure.

1894-88-8

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1894-88-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1894-88-8 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,8,9 and 4 respectively; the second part has 2 digits, 8 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 1894-88:
(6*1)+(5*8)+(4*9)+(3*4)+(2*8)+(1*8)=118
118 % 10 = 8
So 1894-88-8 is a valid CAS Registry Number.

1894-88-8Upstream product

1894-88-8Downstream Products

1894-88-8Relevant academic research and scientific papers

Transition States and Control of Substrate Preference in the Promiscuous Phosphatase PP1

Chu, Yuan,Williams, Nicholas H.,Hengge, Alvan C.

, p. 3923 - 3933 (2017/08/07)

Catalytically promiscuous enzymes are an attractive frontier for biochemistry, because enzyme promiscuities not only plausibly explain enzyme evolution through the mechanism of gene duplication but also could provide an efficient route to changing the catalytic function of proteins by mimicking this evolutionary process. PP1γ is an effectively promiscuous phosphatase for the hydrolysis of both monoanionic and dianionic phosphate ester-based substrates. In addition to its native phosphate monoester substrate, PP1γ catalyzes the hydrolysis of aryl methylphosphonates, fluorophosphate esters, phosphorothioate esters, and phosphodiesters, with second-order rate accelerations that fall within the narrow range of 1011-1013. In contrast to the different transition states in the uncatalyzed hydrolysis reactions of these substrates, PP1γ catalyzes their hydrolysis through similar transition states. PP1γ does not catalyze the hydrolysis of a sulfate ester, which is unexpected. The PP1γ active site is tolerant of variations in the geometry of bound ligands, which permit the effective catalysis even of substrates whose steric requirements may result in perturbations to the positioning of the transferring group, both in the initial enzyme-substrate complex and in the transition state. The conservative mutation of arginine 221 to lysine results in a mutant that is a more effective catalyst toward monoanionic substrates. The surprising conversion of substrate preference lends support to the notion that mutations following gene duplication can result in an altered enzyme with different catalytic capabilities and preferences and may provide a pathway for the evolution of new enzymes.

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