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

99 Intake, digestion and nitrogen balance in beef cattle offered grass herbage supplemented with citrus pulp

99. 饲喂添加柑橘果肉的牧草对肉牛采食量、消化率和氮平衡的影响

An, W; van Holde, K; Zlatanova, J; Bach, Alex; Guimaraes, Octavio; Wagner, John; Spears, Jerry; Engle, Terry; O’Connor, A; Moloney, A; O’Kiely, P; Boland, T; McGee, M

Structures of two molluscan hemocyanin genes: significance for gene evolution

两种软体动物血蓝蛋白基因的结构:对基因进化的意义

Lieb, B; Altenhein, B; Markl, J; Vincent, A; van Olden, E; van Holde, K E; Miller, K I

Linker histone protects linker DNA on only one side of the core particle and in a sequence-dependent manner

连接组蛋白仅以序列依赖的方式保护核心颗粒一侧的连接DNA。

An, W; Leuba, S H; van Holde, K; Zlatanova, J

Linker histone tails and N-tails of histone H3 are redundant: scanning force microscopy studies of reconstituted fibers

连接组蛋白尾和组蛋白H3的N端尾是冗余的:重组纤维的扫描力显微镜研究

Leuba, S H; Bustamante, C; van Holde, K; Zlatanova, J

Contributions of linker histones and histone H3 to chromatin structure: scanning force microscopy studies on trypsinized fibers

连接组蛋白和组蛋白H3对染色质结构的贡献:胰蛋白酶处理纤维的扫描力显微镜研究

Leuba, S H; Bustamante, C; Zlatanova, J; van Holde, K

Chromatin fiber structure: morphology, molecular determinants, structural transitions

染色质纤维结构:形态、分子决定因素、结构转变

Zlatanova, J; Leuba, S H; van Holde, K

Histone H1 preferentially binds to superhelical DNA molecules of higher compaction

组蛋白H1优先结合于高度致密的超螺旋DNA分子。

Ivanchenko, M; Zlatanova, J; van Holde, K

Linker histones affect patterns of digestion of supercoiled plasmids by single-strand-specific nucleases

连接组蛋白影响单链特异性核酸酶对超螺旋质粒的消化模式

Ivanchenko, M; Zlatanova, J; Varga-Weisz, P; Hassan, A; van Holde, K

What determines the folding of the chromatin fiber?

染色质纤维的折叠是由什么决定的?

van Holde, K; Zlatanova, J

A random walk amid the macromolecules

在大分子中随机游走

van Holde, K E