Page 90 - ITPS-8-3
P. 90
INNOSC Theranostics and
Pharmacological Sciences Activity of green-synthesized nanoparticles
doi: 10.1073/pnas.97.17.9413 71. Roncarati D, Vannini A, Scarlato V. Temperature sensing
and virulence regulation in pathogenic bacteria. Trends
61. Dubey S, Majumder P, Penmatsa A, Sardesai AA. Topological
analyses of the L-lysine exporter LysO reveal a critical role Microbiol. 2024;33:66-79.
for a conserved pair of intramembrane solvent-exposed doi: 10.1016/j.tim.2024.07.009
acidic residues. J Biol Chem. 2021;297(4):101168.
72. McCoy JG, Levin EJ, Zhou M. Structural insight into
doi: 10.1016/j.jbc.2021.101168 the PTS sugar transporter EIIC. Biochim Biophys Acta.
62. Jorgenson MA, Young KD. YtfB, an OapA domain- 2015;1850(3):577-585.
containing protein, is a new cell division protein in doi: 10.1016/j.bbagen.2014.03.013
Escherichia coli. J Bacteriol. 2018;200(13):e00046-48.
73. Fath MK, Garousi S, Mottahedi M, et al. The role of hypoxia-
doi: 10.1128/jb.00046-18 inducible factors in breast cancer stem cell specification.
63. Lancaster MS, Graham BH. Succinyl-CoA synthetase Pathol Res Pract. 2023;243:154349.
dysfunction as a mechanism of mitochondrial doi: 10.1016/j.prp.2023.154349
encephalomyopathy: More than just an oxidative energy
deficit. Int J Mol Sci. 2023;24(13):10725. 74. Rathore AS, Gupta RD. Chitinases from bacteria to human:
Properties, applications, and future perspectives. Enzyme
doi: 10.3390/ijms241310725 Res. 2015;(1):791907.
64. Monti SM, De Simone G, D’Ambrosio K. L-Histidinol doi: 10.1155/2015/791907
dehydrogenase as a new target for old diseases. Curr Top
Med Chem. 2016;16(21):2369-2378. 75. Modrzejewska M, Kawalek A, Bartosik AA. The LysR-type
transcriptional regulator BsrA (PA2121) controls vital
doi: 10.2174/1568026616666160413140000 metabolic pathways in Pseudomonas aeruginosa. Msystems.
65. Aravind L, Anantharaman V, Balaji S, Babu MM, 2021;6(4):e0001521.
Iyer LM. The many faces of the helix-turn-helix domain: doi: 10.1128/msystems.00015-21
Transcription regulation and beyond. FEMS Microbiol Rev.
2005;29(2):231-262. 76. Zawilak-Pawlik A, Nowaczyk M, Zakrzewska-Czerwińska J.
The role of the N-terminal domains of bacterial initiator
doi: 10.1016/j.fmrre.2004.12.008 DnaA in the assembly and regulation of the bacterial
66. Jeckelmann JM, Erni B. Transporters of glucose replication initiation complex. Genes (Basel). 2017;8(5):136.
and other carbohydrates in bacteria. Pflügers Arch. doi: 10.3390/genes8050136
2020;472(9):1129-1153.
77. Dakal TC, Kumar A, Majumdar RS, Yadav V. Mechanistic
doi: 10.1007/s00424-020-02379-0 basis of antimicrobial actions of silver nanoparticles. Front
67. Pan B, Kaldhone PR, Alund AW, et al. Mutagenicity of silver Microbiol. 2016;7:1831.
nanoparticles evaluated using whole-genome sequencing in doi: 10.3389/fmicb.2016.01831
mouse lymphoma cells. Nanotoxicology. 2021;15(3):418-432.
78. Li Y, Shi Z, Radauer-Preiml I, et al. Bacterial endotoxin
doi: 10.1080/17435390.2021.1894614 (lipopolysaccharide) binds to the surface of gold
68. Pasqua M, Grossi M, Zennaro A, et al. The varied role of nanoparticles, interferes with biocorona formation and
efflux pumps of the MFS family in the interplay of bacteria induces human monocyte inflammatory activation.
with animal and plant cells. Microorganisms. 2019;7(9):285. Nanotoxicology. 2017;11(9-10):1157-1175.
doi: 10.3390/microorganisms7090285 doi: 10.1080/17435390.2017.1401142
69. Facey SJ, Kuhn A. Biogenesis of bacterial inner-membrane 79. Whitfield C, Williams DM, Kelly SD. Lipopolysaccharide
proteins. Cell Mol Life Sci. 2010;67:2343-2362. O-antigens-bacterial glycans made to measure. J Biol Chem.
2020;295(31):10593-10609.
doi: 10.1007/s00018-010-0303-0
doi: 10.1074/jbc.REV120.009402
70. Motouchi S, Kobayashi K, Nakai H, Nakajima M.
Identification of enzymatic functions of osmo-regulated 80. Clements A, Tull D, Jenney AW, et al. Secondary acylation
periplasmic glucan biosynthesis proteins from Escherichia of Klebsiella pneumoniae lipopolysaccharide contributes
coli reveals a novel glycoside hydrolase family. Commun to sensitivity to antibacterial peptides. J Biol Chem.
Biol. 2023;6(1):961. 2007;282(21):15569-15577.
doi: 10.1038/s42003-023-05336-6 doi: 10.1074/jbc.M701454200
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