日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Dissection of an Anaerobic Fungal Cellulosomal Endoglucanase: Impact of the Dockerin Module on Activity, Thermostability, and Flexibility

厌氧真菌纤维素体内切葡聚糖酶的结构解析:对接模块对活性、热稳定性和柔性的影响

Andrade, Viviane Brito; Tramontina, Robson; Almeida, Dnane Vieira; Tomazetto, Geizecler; da Silva, Viviam M; Gabel, Frank; Marcello, Yolanda M B; Scott, Ana Ligia; Squina, Fabio Marcio; Garcia, Wanius

Integrative omics analyses of the ligninolytic Rhodosporidium fluviale LM-2 disclose catabolic pathways for biobased chemical production

木质素分解菌 Rhodosporidium fluviale LM-2 的综合组学分析揭示了生物基化学品生产的分解代谢途径

Nathália Vilela, Geizecler Tomazetto, Thiago Augusto Gonçalves, Victoria Sodré, Gabriela Felix Persinoti, Eduardo Cruz Moraes, Arthur Henrique Cavalcante de Oliveira, Stephanie Nemesio da Silva, Taícia Pacheco Fill, André Damasio, Fabio Marcio Squina

arfA antisense RNA regulates MscL excretory activity

arfA 反义 RNA 调节 MscL 排泄活性

Rosa Morra, Fenryco Pratama, Thomas Butterfield, Geizecler Tomazetto, Kate Young, Ruth Lopez, Neil Dixon

Unique properties of a Dictyostelium discoideum carbohydrate-binding module expand our understanding of CBM-ligand interactions

盘基网柄菌碳水化合物结合模块的独特性质拓展了我们对CBM-配体相互作用的理解。

Liberato, Marcelo Vizona; Campos, Bruna Medeia; Tomazetto, Geizecler; Crouch, Lucy Isobel; Garcia, Wanius; Zeri, Ana Carolina de Mattos; Bolam, David Nichol; Squina, Fabio Marcio

Lignolytic-consortium omics analyses reveal novel genomes and pathways involved in lignin modification and valorization

木质素分解联合体组学分析揭示了参与木质素改性和增值的新基因组和途径

Eduardo C Moraes #, Thabata M Alvarez #, Gabriela F Persinoti #, Geizecler Tomazetto, Livia B Brenelli, Douglas A A Paixão, Gabriela C Ematsu, Juliana A Aricetti, Camila Caldana, Neil Dixon, Timothy D H Bugg, Fabio M Squina

Proteiniphilum saccharofermentans str. M3/6(T) isolated from a laboratory biogas reactor is versatile in polysaccharide and oligopeptide utilization as deduced from genome-based metabolic reconstructions

根据基于基因组的代谢重建推断,从实验室沼气反应器中分离出的嗜糖蛋白菌 M3/6(T) 菌株在多糖和寡肽利用方面具有多功能性。

Tomazetto, Geizecler; Hahnke, Sarah; Wibberg, Daniel; Pühler, Alfred; Klocke, Michael; Schlüter, Andreas