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

Molecular characterization of a Rhodococcus jostii RHA1 γ-butyrolactone(-like) signalling molecule and its main biosynthesis gene gblA.

红球菌 jostii RHA1 γ-丁内酯(样)信号分子及其主要生物合成基因 gblA 的分子特征

Ceniceros Ana, Dijkhuizen Lubbert, Petrusma Mirjan

Genome-based exploration of the specialized metabolic capacities of the genus Rhodococcus

基于基因组的红球菌属特化代谢能力探索

Ceniceros, Ana; Dijkhuizen, Lubbert; Petrusma, Mirjan; Medema, Marnix H

3-Ketosteroid 9α-hydroxylase enzymes: Rieske non-heme monooxygenases essential for bacterial steroid degradation

3-酮类固醇9α-羟化酶:Rieske非血红素单加氧酶,对细菌类固醇降解至关重要

Petrusma, Mirjan; van der Geize, Robert; Dijkhuizen, Lubbert

Structural features in the KshA terminal oxygenase protein that determine substrate preference of 3-ketosteroid 9α-hydroxylase enzymes

KshA 末端加氧酶蛋白的结构特征决定了 3-酮类固醇 9α-羟化酶的底物偏好

Mirjan Petrusma, Lubbert Dijkhuizen, Robert van der Geize

FadD19 of Rhodococcus rhodochrous DSM43269, a steroid-coenzyme A ligase essential for degradation of C-24 branched sterol side chains

Rhodococcus rhodochrous DSM43269 的 FadD19 是一种类固醇辅酶 A 连接酶,对 C-24 支链甾醇侧链的降解至关重要

M H Wilbrink, M Petrusma, L Dijkhuizen, R van der Geize

Multiplicity of 3-Ketosteroid-9α-Hydroxylase enzymes in Rhodococcus rhodochrous DSM43269 for specific degradation of different classes of steroids

紫红红球菌 DSM43269 中的 3-酮类固醇-9α-羟化酶具有多种功能,能够特异性地降解不同类别的类固醇

Mirjan Petrusma, Gerda Hessels, Lubbert Dijkhuizen, Robert van der Geize

Rhodococcus rhodochrous DSM 43269 3-ketosteroid 9alpha-hydroxylase, a two-component iron-sulfur-containing monooxygenase with subtle steroid substrate specificity

Rhodococcus rhodochrous DSM 43269 3-酮类固醇 9α-羟化酶,一种双组分含铁硫单加氧酶,具有微妙的类固醇底物特异性

M Petrusma, L Dijkhuizen, R van der Geize

Functional persistence of exonized mammalian-wide interspersed repeat elements (MIRs)

外显子化的哺乳动物广泛散在重复序列元件(MIRs)的功能持久性

Krull, Maren; Petrusma, Mirjan; Makalowski, Wojciech; Brosius, Jürgen; Schmitz, Jürgen