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Massimo Di Giulio
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2020 – today
- 2025
- [j19]Massimo Di Giulio:
The existence of the two domains of life, Bacteria and Archaea, would in itself imply that LUCA and the ancestors of these domains were progenotes. Biosyst. 247: 105375 (2025) - 2024
- [j18]Massimo Di Giulio:
The time of appearance of the genetic code. Biosyst. 237: 105159 (2024) - [j17]Massimo Di Giulio:
Theories of the origin of the genetic code: Strong corroboration for the coevolution theory. Biosyst. 239: 105217 (2024) - [j16]Massimo Di Giulio:
The polyphyletic origins of glycyl-tRNA synthetase and lysyl-tRNA synthetase and their implications. Biosyst. 244: 105287 (2024) - 2023
- [j15]Massimo Di Giulio:
The error minimization of the genetic code would have been determined by natural selection and not by a neutral evolution. Biosyst. 224: 104838 (2023) - [j14]Massimo Di Giulio:
The absence of the evolutionary state of the Prokaryote would imply a polyphyletic origin of proteins and that LUCA, the ancestor of bacteria and that of archaea were progenotes. Biosyst. 233: 105014 (2023) - 2022
- [j13]Massimo Di Giulio:
The RNase P, LUCA, the ancestors of the life domains, the progenote, and the tree of life. Biosyst. 212: 104604 (2022) - [j12]Franco Caldararo, Massimo Di Giulio:
The genetic code is very close to a global optimum in a model of its origin taking into account both the partition energy of amino acids and their biosynthetic relationships. Biosyst. 214: 104613 (2022) - [j11]Massimo Di Giulio:
Arguments against the stereochemical theory of the origin of the genetic code. Biosyst. 221: 104750 (2022) - [j10]Massimo Di Giulio:
The origins of the cell membrane, the progenote, and the universal ancestor (LUCA). Biosyst. 222: 104799 (2022) - 2021
- [j9]Massimo Di Giulio:
The late appearance of DNA, the nature of the LUCA and ancestors of the domains of life. Biosyst. 202: 104330 (2021) - [j8]Massimo Di Giulio:
Errors of the ancestral translation, LUCA, and nature of its direct descendants. Biosyst. 206: 104433 (2021) - [j7]Massimo Di Giulio:
The evolutionary stages of the complexity of biological catalysts mark and clarify the phases of the origin of the genetic code: A model for the origin of the reading frame with codons from proto-mRNAs with different frames. Biosyst. 207: 104449 (2021) - [j6]Massimo Di Giulio:
The phylogenetic distribution of the cell division system would not imply a cellular LUCA but a progenotic LUCA. Biosyst. 210: 104563 (2021) - 2020
- [j5]Massimo Di Giulio:
The phylogenetic distribution of the glutaminyl-tRNA synthetase and Glu-tRNAGln amidotransferase in the fundamental lineages would imply that the ancestor of archaea, that of eukaryotes and LUCA were progenotes. Biosyst. 196: 104174 (2020) - [j4]Massimo Di Giulio:
LUCA as well as the ancestors of archaea, bacteria and eukaryotes were progenotes: Inference from the distribution and diversity of the reading mechanism of the AUA and AUG codons in the domains of life. Biosyst. 198: 104239 (2020)
2010 – 2019
- 2019
- [j3]Massimo Di Giulio:
The key role of the elongation factors in the origin of the organization of the genetic code. Biosyst. 181: 20-26 (2019) - 2018
- [j2]Massimo Di Giulio:
A discriminative test among the different theories proposed to explain the origin of the genetic code: The coevolution theory finds additional support. Biosyst. 169-170: 1-4 (2018)
2000 – 2009
- 2007
- [j1]Sacha Barion, Marco Franchi, Enzo Gallori, Massimo Di Giulio:
The first lines of divergence in the Bacteria domain were the hyperthermophilic organisms, the Thermotogales and the Aquificales, and not the mesophilic Planctomycetales. Biosyst. 87(1): 13-19 (2007)
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