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

Structure of the mammalian ribosome as it decodes the selenocysteine UGA codon

哺乳动物核糖体解码硒代半胱氨酸UGA密码子时的结构

Hilal, Tarek; Killam, Benjamin Y; Grozdanović, Milica; Dobosz-Bartoszek, Malgorzata; Loerke, Justus; Bürger, Jörg; Mielke, Thorsten; Copeland, Paul R; Simonović, Miljan; Spahn, Christian M T

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

Gained in translation: The power of digging deep into disease models

翻译中获得的收获:深入挖掘疾病模型的力量

Copeland, Paul R

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

Multiple RNA structures affect translation initiation and UGA redefinition efficiency during synthesis of selenoprotein P

多种RNA结构影响硒蛋白P合成过程中的翻译起始和UGA重定义效率。

Mariotti, Marco; Shetty, Sumangala; Baird, Lisa; Wu, Sen; Loughran, Gary; Copeland, Paul R; Atkins, John F; Howard, Michael T

Crystal structures of the human elongation factor eEFSec suggest a non-canonical mechanism for selenocysteine incorporation

人类延伸因子eEFSec的晶体结构表明,硒代半胱氨酸的掺入机制并非典型的硒代半胱氨酸掺入机制。

Dobosz-Bartoszek, Malgorzata; Pinkerton, Mark H; Otwinowski, Zbyszek; Chakravarthy, Srinivas; Söll, Dieter; Copeland, Paul R; Simonović, Miljan

Selenoprotein Gene Nomenclature

硒蛋白基因命名法

Gladyshev, Vadim N; Arnér, Elias S; Berry, Marla J; Brigelius-Flohé, Regina; Bruford, Elspeth A; Burk, Raymond F; Carlson, Bradley A; Castellano, Sergi; Chavatte, Laurent; Conrad, Marcus; Copeland, Paul R; Diamond, Alan M; Driscoll, Donna M; Ferreiro, Ana; Flohé, Leopold; Green, Fiona R; Guigó, Roderic; Handy, Diane E; Hatfield, Dolph L; Hesketh, John; Hoffmann, Peter R; Holmgren, Arne; Hondal, Robert J; Howard, Michael T; Huang, Kaixun; Kim, Hwa-Young; Kim, Ick Young; Köhrle, Josef; Krol, Alain; Kryukov, Gregory V; Lee, Byeong Jae; Lee, Byung Cheon; Lei, Xin Gen; Liu, Qiong; Lescure, Alain; Lobanov, Alexei V; Loscalzo, Joseph; Maiorino, Matilde; Mariotti, Marco; Sandeep Prabhu, K; Rayman, Margaret P; Rozovsky, Sharon; Salinas, Gustavo; Schmidt, Edward E; Schomburg, Lutz; Schweizer, Ulrich; Simonović, Miljan; Sunde, Roger A; Tsuji, Petra A; Tweedie, Susan; Ursini, Fulvio; Whanger, Philip D; Zhang, Yan

Selenocysteine incorporation: A trump card in the game of mRNA decay

硒代半胱氨酸掺入:mRNA衰变游戏中的王牌

Shetty, Sumangala P; Copeland, Paul R

The molecular biology of selenocysteine

硒代半胱氨酸的分子生物学

Gonzalez-Flores, Jonathan N; Shetty, Sumangala P; Dubey, Aditi; Copeland, Paul R

Selenocysteine insertion sequence (SECIS)-binding protein 2 alters conformational dynamics of residues involved in tRNA accommodation in 80 S ribosomes.

硒代半胱氨酸插入序列 (SECIS) 结合蛋白 2 改变了 80S 核糖体中 tRNA 容纳相关残基的构象动力学

Caban Kelvin, Copeland Paul R