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

The global extent of the grassland biome and implications for the terrestrial carbon sink

草原生物群落的全球分布范围及其对陆地碳汇的影响

MacDougall, A S; Vanzant, B; Sulik, J; Bagchi, S; Naidu, D; Muraina, T O; Seabloom, E W; Borer, E T; Wilfahrt, P; Slette, I; Hierro, J L; Pearson, D E; Abedi, M; Akasaka, M; Alberti, J; Aleksanyan, A; Amisu, A A; Anderson, T M; Arnillas, C A; Ayer, M; Bakker, J D; Basant, S; Basto, S; Biederman, L; Bloodworth, K J; Boscutti, F; Boughton, E H; Bruschetti, C M; Buckley, H L; Buckley, Y M; Bugalho, M N; Caldeira, M C; Campetella, G; Cannone, N; Carbognani, M; Carbutt, C; Carniello, M A; Cervellini, M; Chaudhary, T; Chen, Q; Clark, A T; Cousins, S; Dalle Fratte, M; Day, N J; Deák, B; Dietrich, J; Dixon, A; Eisenhauer, N; Elgersma, K J; Eren, O; Eskelinen, A; Estrada, C; Fay, P A; Fayvush, G; Flynn, K C; García Meza, D; Gargano, D; Gherardi, L; Girkin, N T; González, L; Graff, P; Hagenberg, L W C; Halbritter, A H; Havrilchak, N A; Herdoiza, N; Hersch-Green, E; Hopping, K; Jentsch, A; Jimoh, S O; Kerby, J; Kirkman, K; Knops, J M H; Koerner, S E; Koltz, A; Komatsu, K J; Koura, B I; Kruse, S; Laanisto, L; Lannes, L S; Li, W; Liang, M; Lkhagva, A; López-Olmedo, L; Lorenzo, P; Lortie, C J; Loydi, A; Luo, W; Macek, P; Malfasi, F; Mariotte, P; Martina, J P; Martínez-Blancas, A; Martinson, H; Martorell, C; Meave, J A; Medina-Villar, S; Mganga, K Z; Monsimet, J; Nerlekar, A N; Niu, S; Ohlert, T; Oliveras Menor, I; Oñatibia, G R; Ortega, Y K; Osborne, B; Palpurina, S; Pascual, J; Pennings, S C; Pérez-García, E; Peri, P L; Petit Bon, M; Petraglia, A; Pijcke, F; Prober, S M; Quiroga, R E; Ramirez, J I; Reed, S; Rosado, B H P; Roscher, C; Rowley, D W; Sereda, I; Small, D M; Smith, N G; Song, Y; Stevens, C; Suarez Jimenez, L E; Te Beest, M; Tedder, M; Terry, R S; Thornton, K S; Tian, D; Titcomb, G; Valkó, O; 'Ciska' Veen, G F; Virtanen, R; Welti, E A R; Wheeler, G R; Wolf, A A; Wolff, P; Young, A L; Young, H S; Zeglin, L H; Zhu, K; Zong, S; Siewert, M B

Soil net nitrogen mineralisation across global grasslands

全球草原土壤净氮矿化作用

Risch, A C; Zimmermann, S; Ochoa-Hueso, R; Schütz, M; Frey, B; Firn, J L; Fay, P A; Hagedorn, F; Borer, E T; Seabloom, E W; Harpole, W S; Knops, J M H; McCulley, R L; Broadbent, A A D; Stevens, C J; Silveira, M L; Adler, P B; Báez, S; Biederman, L A; Blair, J M; Brown, C S; Caldeira, M C; Collins, S L; Daleo, P; di Virgilio, A; Ebeling, A; Eisenhauer, N; Esch, E; Eskelinen, A; Hagenah, N; Hautier, Y; Kirkman, K P; MacDougall, A S; Moore, J L; Power, S A; Prober, S M; Roscher, C; Sankaran, M; Siebert, J; Speziale, K L; Tognetti, P M; Virtanen, R; Yahdjian, L; Moser, B

Cyclin A2 promotes DNA repair in the brain during both development and aging

细胞周期蛋白A2在发育和衰老过程中促进大脑DNA修复。

Gygli, Patrick E; Chang, Joshua C; Gokozan, Hamza N; Catacutan, Fay P; Schmidt, Theresa A; Kaya, Behiye; Goksel, Mustafa; Baig, Faisal S; Chen, Shannon; Griveau, Amelie; Michowski, Wojciech; Wong, Michael; Palanichamy, Kamalakannan; Sicinski, Piotr; Nelson, Randy J; Czeisler, Catherine; Otero, José J

Combining mutations that modulate inter-subunit interactions and proteolytic inactivation enhance the stability of factor VIIIa

调节亚基间相互作用和蛋白水解失活的突变相结合,可增强因子VIIIa的稳定性。

Wakabayashi, H; Wintermute, J M; Fay, P J

Enhanced factor VIIIa stability of A2 domain interface variants results from an increased apparent affinity for the A2 subunit. Results from an increased apparent affinity for the A2 subunit

A2结构域界面变体的VIIIa因子稳定性增强是由于其对A2亚基的表观亲和力增加所致。

Monaghan, M; Wakabayashi, H; Griffiths, A; Wintermute, J; Fay, P J

Enhancing factor VIII and VIIIa stability by combining mutations at the A2 domain interface and A1-C2 domain interface

通过结合A2结构域界面和A1-C2结构域界面的突变来增强因子VIII和VIIIa的稳定性

Wakabayashi, H; Griffiths, A E; Fay, P J

Combining mutations of charged residues at the A2 domain interface enhances factor VIII stability over single point mutations

与单点突变相比,A2结构域界面带电残基的突变组合可增强VIII因子的稳定性。

Wakabayashi, H; Griffiths, A E; Fay, P J

Unique progressive cleavage mechanism of HIV reverse transcriptase RNase H

HIV逆转录酶RNase H独特的渐进式切割机制

Wisniewski, M; Balakrishnan, M; Palaniappan, C; Fay, P J; Bambara, R A

The P236L delavirdine-resistant human immunodeficiency virus type 1 mutant is replication defective and demonstrates alterations in both RNA 5'-end- and DNA 3'-end-directed RNase H activities

耐地拉韦啶的P236L突变型人类免疫缺陷病毒1型具有复制缺陷,并且其RNA 5'端和DNA 3'端导向的RNase H活性均发生改变。

Gerondelis, P; Archer, R H; Palaniappan, C; Reichman, R C; Fay, P J; Bambara, R A; Demeter, L M

Relationship between plus strand DNA synthesis removal of downstream segments of RNA by human immunodeficiency virus, murine leukemia virus and avian myeloblastoma virus reverse transcriptases

人类免疫缺陷病毒、鼠白血病病毒和禽成髓细胞瘤病毒逆转录酶对正链DNA合成去除下游RNA片段之间的关系

Fuentes, G M; Fay, P J; Bambara, R A