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Ribosome: an Ancient Cellular Nano-Machine for Genetic Code Translation,ve ribosomes illuminated the significant of PTC mobility and supported the hypothesis that the ancient ribosome produced single peptides bonds and non-coded chains, utilizing nucleotide conjugated amino acids. Genetic control of the reaction evolved after polypeptides capable of enzymatic function wAdornment 发表于 2025-3-22 12:43:51
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https://doi.org/10.1007/978-1-59745-240-3ture determination, mapping of intermolecular interactions, exploring fundamental biological mechanisms, following compound cycling in the environmental, analysis of synthetic solid compounds, and microimaging of a model organism.博爱家 发表于 2025-3-22 18:05:09
https://doi.org/10.1007/978-1-4614-7780-8f reducing potential. In contrast, anti-oxidants stabilize the Cy3 and Alexa488 fluorophores. We recommend use of the protocatechuate-3,4,-dioxygenase system with antioxidant additives, and in the absence of biological reducing agents. This system should have wide application to single-molecule fluocaldron 发表于 2025-3-22 22:33:51
Cheryl P. Andam,Johann Peter Gogarten PhDve ribosomes illuminated the significant of PTC mobility and supported the hypothesis that the ancient ribosome produced single peptides bonds and non-coded chains, utilizing nucleotide conjugated amino acids. Genetic control of the reaction evolved after polypeptides capable of enzymatic function w因无茶而冷淡 发表于 2025-3-23 03:37:46
Conference proceedings 2009rpretation of fl- rescence fluctuations . Molecular oxygen (O) modulates dye stability. Triplet O efficiently 2 2 quenches dye triplet states responsible for blinking. This results in the for- tion of singlet oxygen . Singlet O reacts efficiently with organic dyes, 2 amino acids, andPLAYS 发表于 2025-3-23 09:06:28
1874-6500 lity. Triplet O efficiently 2 2 quenches dye triplet states responsible for blinking. This results in the for- tion of singlet oxygen . Singlet O reacts efficiently with organic dyes, 2 amino acids, and 978-90-481-2367-4978-90-481-2368-1Series ISSN 1874-6500 Series E-ISSN 1874-6535