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

Structural basis for translation inhibition by MERS-CoV Nsp1 reveals a conserved mechanism for betacoronaviruses

MERS-CoV Nsp1 翻译抑制的结构基础揭示了 betacoronaviruses 的保守机制

Swapnil C Devarkar, Michael Vetick, Shravani Balaji, Ivan B Lomakin, Luojia Yang, Danni Jin, Wendy V Gilbert, Sidi Chen, Yong Xiong

The expression of essential selenoproteins during development requires SECIS-binding protein 2-like

发育过程中必需硒蛋白的表达需要 SECIS 结合蛋白 2 样

Nora T Kiledjian, Rushvi Shah, Michael B Vetick, Paul R Copeland

Processive Recoding and Metazoan Evolution of Selenoprotein P: Up to 132 UGAs in Molluscs.

硒蛋白 P 的逐步重编码和后生动物进化:软体动物中多达 132 个 UGA

Baclaocos Janinah, Santesmasses Didac, Mariotti Marco, Bierła Katarzyna, Vetick Michael B, Lynch Sharon, McAllen Rob, Mackrill John J, Loughran Gary, Guigó Roderic, Szpunar Joanna, Copeland Paul R, Gladyshev Vadim N, Atkins John F

Processive incorporation of multiple selenocysteine residues is driven by a novel feature of the selenocysteine insertion sequence

硒代半胱氨酸插入序列的一个新特征驱动了多个硒代半胱氨酸残基的逐步掺入。

Shetty, Sumangala P; Sturts, Ryan; Vetick, Michael; Copeland, Paul R