Changes in the chemical structure of alpha-carboxylate of the D1 C-terminal Ala-344 during S-state cycling of photosynthetic oxygen-evolving complex were selectively measured using light-induced Fourier transform infrared (FTIR) difference spectroscopy in combination with specific [(13)C]alanine labeling and site-directed mutagenesis in photosystem II core particles from Synechocystis sp. PCC 6803. Several bands for carboxylate symmetric stretching modes in an S(2)/S(1) FTIR difference spectrum were affected by selective (13)C labeling of the alpha-carboxylate of Ala with l-[1-(13)C]alanine, whereas most of the isotopic effects failed to be induced in a site-directed mutant in which Ala-344 was replaced with Gly. Labeling of the alpha-methyl of Ala with l-[3-(13)C]alanine had much smaller effects on the spectrum to induce isotopic bands due to a symmetric CH(3) deformation coupled with the alpha-carboxylate. The isotopic bands for the alpha-carboxylate of Ala-344 showed characteristic changes during S-state cycling. The bands appeared prominently upon the S(1)-to-S(2) transition and to a lesser extent upon the S(2)-to-S(3) transition but reappeared at slightly upshifted frequencies with the opposite sign upon the S(3)-to-S(0) transition. No obvious isotopic band appeared upon the S(0)-to-S(1) transition. These results indicate that the alpha-carboxylate of C-terminal Ala-344 is structurally associated with a manganese ion that becomes oxidized upon the S(1)-to-S(2) transition and reduced reversely upon the S(3)-to-S(0) transition but is not associated with manganese ion(s) oxidized during the S(0)-to-S(1) (and S(2)-to-S(3)) transition(s). Consistently, l-[1-(13)C]alanine labeling also induced spectral changes in the low frequency (670-350 cm(-1)) S(2)/S(1) FTIR difference spectrum.
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http://dx.doi.org/10.1074/jbc.M410627200 | DOI Listing |
Adv Mater
November 2024
Faculty of Physics, University of Warsaw, Pasteura 5, Warsaw, 02-093, Poland.
The electrochemical metallization (ECM) mechanism is emerging as a promising approach for the development of optical memristors-nonvolatile memory systems proposed for use as artificial synapses in neuromorphic computing applications. ECM memristors offer exceptional operating dynamics and power efficiency compared to other systems, but challenges with reproducible cycle-to-cycle state switching and the absence of advanced optical functionalities hinder their integration into photonic systems. In this work, an ECM free-standing memristor structure is proposed, which simultaneously offers wavelength-dependent multilevel nonvolatile optical storage, volatile light modulation, and dynamic polarization control.
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September 2024
Community Medicine, Employee's State Insurance Corporation (ESIC) Medical College and Hospital, Alwar, IND.
Esophageal cancer is more common with increasing age and rarely seen below the age of 45. The current case report is a case of squamous cell carcinoma of the esophagus in a 17-year-old male patient who presented with progressive dysphagia and significant weight loss. Contrast-enhanced computed tomography (CECT) neck, chest, and abdomen showed a lesion involving the middle and lower third of the esophagus with contiguous involvement of the gastroesophageal junction (GEJ), extending from D7 to D11 vertebral segments and completely occluding the lumen.
View Article and Find Full Text PDFPsychiatry Res
December 2024
Azrieli Faculty of Medicine, Bar-Ilan University, Safed, Israel; Kyung Hee University, Seoul, Republic of Korea. Electronic address:
The microbiome has been linked to numerous neurological and psychiatric diseases, including schizophrenia. Nevertheless, correlating microbial perturbations to pathophysiological aspects of schizophrenia remains elusive, as study participants are typically medicated when sampled, complicating mechanistic investigation. Here we explored specific microbial and metabolic alterations in schizophrenia patients, while explicitly considering their medications.
View Article and Find Full Text PDFHeliyon
September 2024
Fraunhofer IKTS, Ausere Nuernberger str 62, Forchheim, Germany.
Entropy measurement at various states of charge (SOC) is a potential non-destructive tool for characterizing lithium-ion batteries; however, traditional potentiometric methods are time-consuming. To address this, we developed a fast potentiometric method that estimates entropy by employing charging after pulse discharging to partly eliminate voltage relaxation. This method, combined with precise mathematical processing, reduces estimation time by approximately 4.
View Article and Find Full Text PDFAdv Mater
December 2024
Advanced Membranes and Porous Materials Center, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
The transition toward hydrogen gas (H) as an eco-friendly and renewable energy source necessitates advanced safety technologies, particularly robust sensors for H leak detection and concentration monitoring. Although palladium (Pd)-based materials are preferred for their strong H affinity, intense palladium-hydrogen (Pd-H) interactions lead to phase transitions to palladium hydride (PdH), compromising sensors' durability and detection speeds after multiple uses. In response, this study introduces a high-performance H sensor designed from thiolate-protected Pd nanoclusters (PdSR), which leverages the synergistic effect between the metal and protective ligands to form an intermediate palladium-hydrogen-sulfur (Pd-H-S) state during H adsorption.
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