Cysteine induced cascade electron transfer by forming a unique ternary complex with Fe(II) on goethite

2021 ◽  
Vol 584 ◽  
pp. 120561
Author(s):  
Shiwen Hu ◽  
Tongxu Liu ◽  
Yang Yang ◽  
Fangbai Li ◽  
Liping Fang
2003 ◽  
Vol 107 (3) ◽  
pp. 379-385 ◽  
Author(s):  
Joe Otsuki ◽  
Masayuki Takatsuki ◽  
Motomu Kaneko ◽  
Hironari Miwa ◽  
Toshio Takido ◽  
...  

2021 ◽  
Author(s):  
Ido Caspy ◽  
Mariia Fadeeva ◽  
Sebastian Kuhlgert ◽  
Anna Borovikova-Sheinker ◽  
Daniel Klaiman ◽  
...  

Photosystem I is defined as plastocyanin-ferredoxin oxidoreductase. Taking advantage of genetic engineering, kinetic analyses and cryo-EM, our data provide novel mechanistic insights into binding and electron transfer between PSI and Pc. Structural data at 2.74 Å resolution reveals strong hydrophobic interactions in the plant PSI-Pc ternary complex, leading to exclusion of water molecules from PsaA-PsaB / Pc interface once the PSI-Pc complex forms. Upon oxidation of Pc, a slight tilt of bound oxidized Pc allows water molecules to accommodate the space between Pc and PSI to drive Pc dissociation. Such a scenario is consistent with the six times larger dissociation constant of oxidized as compared to reduced Pc and mechanistically explains how this molecular machine optimized electron transfer for fast turnover.


2011 ◽  
Vol 7 (1) ◽  
pp. 1240-1255
Author(s):  
H.M. Hassan ◽  
A.A. Abdel-Khalek ◽  
S.H. Abo-Elhana

The kinetics of oxidation of the chromium (III) complexes, [CrIII(IDA)(Ma)(H2O)]- [IDA=iminodiacetate, Ma=malonic] by N-bromosuccinimide in aqueous solution to yield chromium(IV) has been studied spectrometrically at 25-45°C. The reaction rate increased gradually with increasing pH in the range of (5.75–6.86). The reaction proceeds by one first- order pathway in each reactant. Conformation of the formation of the ternary complex has been done using IR spectrum, TGA, uv-visible spectroscopic and cyclic voltammetry measurements. Thermodynamic activation parameters have been calculated. It is proposed that electron transfer proceeds through an inner- sphere mechanism via coordination of NBS to chromium(III). A common mechanism for this reaction is proposed and supported by an excellent isokinetic relationship between ∆H* and ∆S* values for some ternary chromium(III) complexes.


2005 ◽  
Vol 30 (3) ◽  
pp. 215-226 ◽  
Author(s):  
Bidyut Saha ◽  
Monirul Islam ◽  
Asim K. Das

The CrVI oxidation of a mixture of dimethyl sulfoxide (DMSO) and oxalic acid (OXH2) in aqueous acid media occurs much faster than that of either of the two substrates alone (DMSO reacts extremely slowly under the experimental conditions). In the mixture, both substrates undergo oxidation simultaneously in a ternary complex of CrVI through a three electron transfer step (i.e. CrVI → CrIII), two electrons from DMSO and one electron from oxalic acid. Hitherto there has been a debate regarding the existence of a 3e transfer in a single step. The micellar effect may be considered as a probe for 3e transfer in a single step.


Author(s):  
P. Bonhomme ◽  
A. Beorchia

We have already described (1.2.3) a device using a pockel's effect light valve as a microscopical electron image converter. This converter can be read out with incoherent or coherent light. In the last case we can set in line with the converter an optical diffractometer. Now, electron microscopy developments have pointed out different advantages of diffractometry. Indeed diffractogram of an image of a thin amorphous part of a specimen gives information about electron transfer function and a single look at a diffractogram informs on focus, drift, residual astigmatism, and after standardizing, on periods resolved (4.5.6). These informations are obvious from diffractogram but are usualy obtained from a micrograph, so that a correction of electron microscope parameters cannot be realized before recording the micrograph. Diffractometer allows also processing of images by setting spatial filters in diffractogram plane (7) or by reconstruction of Fraunhofer image (8). Using Electrotitus read out with coherent light and fitted to a diffractometer; all these possibilities may be realized in pseudoreal time, so that working parameters may be optimally adjusted before recording a micrograph or before processing an image.


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