-
1
-
-
47749140333
-
SIRT1 regulates circadian clock gene expression through PER2 deacetylation
-
Asher G., Gatfield D., Stratmann M., Reinke H., Dibner C., Kreppel F., Mostoslavsky R., Alt F.W., Schibler U. SIRT1 regulates circadian clock gene expression through PER2 deacetylation. Cell 2008, 134:317-328.
-
(2008)
Cell
, vol.134
, pp. 317-328
-
-
Asher, G.1
Gatfield, D.2
Stratmann, M.3
Reinke, H.4
Dibner, C.5
Kreppel, F.6
Mostoslavsky, R.7
Alt, F.W.8
Schibler, U.9
-
2
-
-
52749091816
-
SirT1 gain of function increases energy efficiency and prevents diabetes in mice
-
Banks A.S., Kon N., Knight C., Matsumoto M., Gutiérrez-Juárez R., Rossetti L., Gu W., Accili D. SirT1 gain of function increases energy efficiency and prevents diabetes in mice. Cell Metab. 2008, 8:333-341.
-
(2008)
Cell Metab.
, vol.8
, pp. 333-341
-
-
Banks, A.S.1
Kon, N.2
Knight, C.3
Matsumoto, M.4
Gutiérrez-Juárez, R.5
Rossetti, L.6
Gu, W.7
Accili, D.8
-
3
-
-
33749853607
-
A probability-based approach for high-throughput protein phosphorylation analysis and site localization
-
Beausoleil S.A., Villén J., Gerber S.A., Rush J., Gygi S.P. A probability-based approach for high-throughput protein phosphorylation analysis and site localization. Nat. Biotechnol. 2006, 24:1285-1292.
-
(2006)
Nat. Biotechnol.
, vol.24
, pp. 1285-1292
-
-
Beausoleil, S.A.1
Villén, J.2
Gerber, S.A.3
Rush, J.4
Gygi, S.P.5
-
4
-
-
67349276169
-
AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity
-
Cantó C., Gerhart-Hines Z., Feige J.N., Lagouge M., Noriega L., Milne J.C., Elliott P.J., Puigserver P., Auwerx J. AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity. Nature 2009, 458:1056-1060.
-
(2009)
Nature
, vol.458
, pp. 1056-1060
-
-
Cantó, C.1
Gerhart-Hines, Z.2
Feige, J.N.3
Lagouge, M.4
Noriega, L.5
Milne, J.C.6
Elliott, P.J.7
Puigserver, P.8
Auwerx, J.9
-
5
-
-
77953257025
-
Aging and disease: connections to sirtuins
-
Donmez G., Guarente L. Aging and disease: connections to sirtuins. Aging Cell 2010, 9:285-290.
-
(2010)
Aging Cell
, vol.9
, pp. 285-290
-
-
Donmez, G.1
Guarente, L.2
-
6
-
-
77955046461
-
SIRT1 suppresses beta-amyloid production by activating the alpha-secretase gene ADAM10
-
Donmez G., Wang D., Cohen D.E., Guarente L. SIRT1 suppresses beta-amyloid production by activating the alpha-secretase gene ADAM10. Cell 2010, 142:320-332.
-
(2010)
Cell
, vol.142
, pp. 320-332
-
-
Donmez, G.1
Wang, D.2
Cohen, D.E.3
Guarente, L.4
-
7
-
-
33644660537
-
PGC-1 coactivators: inducible regulators of energy metabolism in health and disease
-
Finck B.N., Kelly D.P. PGC-1 coactivators: inducible regulators of energy metabolism in health and disease. J. Clin. Invest. 2006, 116:615-622.
-
(2006)
J. Clin. Invest.
, vol.116
, pp. 615-622
-
-
Finck, B.N.1
Kelly, D.P.2
-
8
-
-
43049121395
-
Glucose restriction inhibits skeletal myoblast differentiation by activating SIRT1 through AMPK-mediated regulation of Nampt
-
Fulco M., Cen Y., Zhao P., Hoffman E.P., McBurney M.W., Sauve A.A., Sartorelli V. Glucose restriction inhibits skeletal myoblast differentiation by activating SIRT1 through AMPK-mediated regulation of Nampt. Dev. Cell 2008, 14:661-673.
-
(2008)
Dev. Cell
, vol.14
, pp. 661-673
-
-
Fulco, M.1
Cen, Y.2
Zhao, P.3
Hoffman, E.P.4
McBurney, M.W.5
Sauve, A.A.6
Sartorelli, V.7
-
9
-
-
34247259630
-
Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC-1alpha
-
Gerhart-Hines Z., Rodgers J.T., Bare O., Lerin C., Kim S.-H., Mostoslavsky R., Alt F.W., Wu Z., Puigserver P. Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC-1alpha. EMBO J. 2007, 26:1913-1923.
-
(2007)
EMBO J.
, vol.26
, pp. 1913-1923
-
-
Gerhart-Hines, Z.1
Rodgers, J.T.2
Bare, O.3
Lerin, C.4
Kim, S.-H.5
Mostoslavsky, R.6
Alt, F.W.7
Wu, Z.8
Puigserver, P.9
-
10
-
-
77951225449
-
DYRK1A and DYRK3 promote cell survival through phosphorylation and activation of SIRT1
-
Guo X., Williams J.G., Schug T.T., Li X. DYRK1A and DYRK3 promote cell survival through phosphorylation and activation of SIRT1. J. Biol. Chem. 2010, 285:13223-13232.
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 13223-13232
-
-
Guo, X.1
Williams, J.G.2
Schug, T.T.3
Li, X.4
-
11
-
-
78649482634
-
SIRT1: recent lessons from mouse models
-
Herranz D., Serrano M. SIRT1: recent lessons from mouse models. Nat. Rev. Cancer 2010, 10:819-823.
-
(2010)
Nat. Rev. Cancer
, vol.10
, pp. 819-823
-
-
Herranz, D.1
Serrano, M.2
-
12
-
-
33745534953
-
Insights into the sirtuin mechanism from ternary complexes containing NAD+ and acetylated peptide
-
Hoff K.G., Avalos J.L., Sens K., Wolberger C. Insights into the sirtuin mechanism from ternary complexes containing NAD+ and acetylated peptide. Structure 2006, 14:1231-1240.
-
(2006)
Structure
, vol.14
, pp. 1231-1240
-
-
Hoff, K.G.1
Avalos, J.L.2
Sens, K.3
Wolberger, C.4
-
13
-
-
48249099388
-
Adopting new orphans into the family of metabolic regulators
-
Hummasti S., Tontonoz P. Adopting new orphans into the family of metabolic regulators. Mol. Endocrinol. 2008, 22:1743-1753.
-
(2008)
Mol. Endocrinol.
, vol.22
, pp. 1743-1753
-
-
Hummasti, S.1
Tontonoz, P.2
-
14
-
-
4744371376
-
Estrogen-related receptor alpha directs peroxisome proliferator-activated receptor alpha signaling in the transcriptional control of energy metabolism in cardiac and skeletal muscle
-
Huss J.M., Torra I.P., Staels B., Giguère V., Kelly D.P. Estrogen-related receptor alpha directs peroxisome proliferator-activated receptor alpha signaling in the transcriptional control of energy metabolism in cardiac and skeletal muscle. Mol. Cell. Biol. 2004, 24:9079-9091.
-
(2004)
Mol. Cell. Biol.
, vol.24
, pp. 9079-9091
-
-
Huss, J.M.1
Torra, I.P.2
Staels, B.3
Giguère, V.4
Kelly, D.P.5
-
15
-
-
0034677535
-
Transcriptional silencing and longevity protein Sir2 is an NAD-dependent histone deacetylase
-
Imai S., Armstrong C.M., Kaeberlein M., Guarente L. Transcriptional silencing and longevity protein Sir2 is an NAD-dependent histone deacetylase. Nature 2000, 403:795-800.
-
(2000)
Nature
, vol.403
, pp. 795-800
-
-
Imai, S.1
Armstrong, C.M.2
Kaeberlein, M.3
Guarente, L.4
-
16
-
-
77951872309
-
Adiponectin and AdipoR1 regulate PGC-1alpha and mitochondria by Ca(2+) and AMPK/SIRT1
-
Iwabu M., Yamauchi T., Okada-Iwabu M., Sato K., Nakagawa T., Funata M., Yamaguchi M., Namiki S., Nakayama R., Tabata M., et al. Adiponectin and AdipoR1 regulate PGC-1alpha and mitochondria by Ca(2+) and AMPK/SIRT1. Nature 2010, 464:1313-1319.
-
(2010)
Nature
, vol.464
, pp. 1313-1319
-
-
Iwabu, M.1
Yamauchi, T.2
Okada-Iwabu, M.3
Sato, K.4
Nakagawa, T.5
Funata, M.6
Yamaguchi, M.7
Namiki, S.8
Nakayama, R.9
Tabata, M.10
-
17
-
-
0033214237
-
The SIR2/3/4 complex and SIR2 alone promote longevity in Saccharomyces cerevisiae by two different mechanisms
-
Kaeberlein M., McVey M., Guarente L. The SIR2/3/4 complex and SIR2 alone promote longevity in Saccharomyces cerevisiae by two different mechanisms. Genes Dev. 1999, 13:2570-2580.
-
(1999)
Genes Dev.
, vol.13
, pp. 2570-2580
-
-
Kaeberlein, M.1
McVey, M.2
Guarente, L.3
-
18
-
-
69949138641
-
CK2 is the regulator of SIRT1 substrate-binding affinity, deacetylase activity and cellular response to DNA-damage
-
Kang H., Jung J.-W., Kim M.K., Chung J.H. CK2 is the regulator of SIRT1 substrate-binding affinity, deacetylase activity and cellular response to DNA-damage. PLoS ONE 2009, 4:e6611. 10.1371/journal.pone.0006611.
-
(2009)
PLoS ONE
, vol.4
-
-
Kang, H.1
Jung, J.-W.2
Kim, M.K.3
Chung, J.H.4
-
19
-
-
43049138812
-
Orphan nuclear receptor NOR-1 enhances 3',5'-cyclic adenosine 5'-monophosphate-dependent uncoupling protein-1 gene transcription
-
Kumar N., Liu D., Wang H., Robidoux J., Collins S. Orphan nuclear receptor NOR-1 enhances 3',5'-cyclic adenosine 5'-monophosphate-dependent uncoupling protein-1 gene transcription. Mol. Endocrinol. 2008, 22:1057-1064.
-
(2008)
Mol. Endocrinol.
, vol.22
, pp. 1057-1064
-
-
Kumar, N.1
Liu, D.2
Wang, H.3
Robidoux, J.4
Collins, S.5
-
20
-
-
33845399894
-
Resveratrol improves mitochondrial function and protects against metabolic disease by activating SIRT1 and PGC-1alpha
-
Lagouge M., Argmann C., Gerhart-Hines Z., Meziane H., Lerin C., Daussin F., Messadeq N., Milne J., Lambert P., Elliott P., et al. Resveratrol improves mitochondrial function and protects against metabolic disease by activating SIRT1 and PGC-1alpha. Cell 2006, 127:1109-1122.
-
(2006)
Cell
, vol.127
, pp. 1109-1122
-
-
Lagouge, M.1
Argmann, C.2
Gerhart-Hines, Z.3
Meziane, H.4
Lerin, C.5
Daussin, F.6
Messadeq, N.7
Milne, J.8
Lambert, P.9
Elliott, P.10
-
21
-
-
0035913911
-
Negative control of p53 by Sir2alpha promotes cell survival under stress
-
Luo J., Nikolaev A.Y., Imai S., Chen D., Su F., Shiloh A., Guarente L., Gu W. Negative control of p53 by Sir2alpha promotes cell survival under stress. Cell 2001, 107:137-148.
-
(2001)
Cell
, vol.107
, pp. 137-148
-
-
Luo, J.1
Nikolaev, A.Y.2
Imai, S.3
Chen, D.4
Su, F.5
Shiloh, A.6
Guarente, L.7
Gu, W.8
-
22
-
-
16844384829
-
Nur77 regulates lipolysis in skeletal muscle cells. Evidence for cross-talk between the beta-adrenergic and an orphan nuclear hormone receptor pathway
-
Maxwell M.A., Cleasby M.E., Harding A., Stark A., Cooney G.J., Muscat G.E.O. Nur77 regulates lipolysis in skeletal muscle cells. Evidence for cross-talk between the beta-adrenergic and an orphan nuclear hormone receptor pathway. J. Biol. Chem. 2005, 280:12573-12584.
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 12573-12584
-
-
Maxwell, M.A.1
Cleasby, M.E.2
Harding, A.3
Stark, A.4
Cooney, G.J.5
Muscat, G.E.O.6
-
23
-
-
34347237611
-
An increase in murine skeletal muscle peroxisome proliferator-activated receptor-gamma coactivator-1alpha (PGC-1alpha) mRNA in response to exercise is mediated by beta-adrenergic receptor activation
-
Miura S., Kawanaka K., Kai Y., Tamura M., Goto M., Shiuchi T., Minokoshi Y., Ezaki O. An increase in murine skeletal muscle peroxisome proliferator-activated receptor-gamma coactivator-1alpha (PGC-1alpha) mRNA in response to exercise is mediated by beta-adrenergic receptor activation. Endocrinology 2007, 148:3441-3448.
-
(2007)
Endocrinology
, vol.148
, pp. 3441-3448
-
-
Miura, S.1
Kawanaka, K.2
Kai, Y.3
Tamura, M.4
Goto, M.5
Shiuchi, T.6
Minokoshi, Y.7
Ezaki, O.8
-
24
-
-
1342264308
-
Mammalian SIRT1 represses forkhead transcription factors
-
Motta M.C., Divecha N., Lemieux M., Kamel C., Chen D., Gu W., Bultsma Y., McBurney M., Guarente L. Mammalian SIRT1 represses forkhead transcription factors. Cell 2004, 116:551-563.
-
(2004)
Cell
, vol.116
, pp. 551-563
-
-
Motta, M.C.1
Divecha, N.2
Lemieux, M.3
Kamel, C.4
Chen, D.5
Gu, W.6
Bultsma, Y.7
McBurney, M.8
Guarente, L.9
-
25
-
-
47549088250
-
The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control
-
Nakahata Y., Kaluzova M., Grimaldi B., Sahar S., Hirayama J., Chen D., Guarente L.P., Sassone-Corsi P. The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control. Cell 2008, 134:329-340.
-
(2008)
Cell
, vol.134
, pp. 329-340
-
-
Nakahata, Y.1
Kaluzova, M.2
Grimaldi, B.3
Sahar, S.4
Hirayama, J.5
Chen, D.6
Guarente, L.P.7
Sassone-Corsi, P.8
-
26
-
-
77950237717
-
The changed metabolic world with human brown adipose tissue: therapeutic visions
-
Nedergaard J., Cannon B. The changed metabolic world with human brown adipose tissue: therapeutic visions. Cell Metab. 2010, 11:268-272.
-
(2010)
Cell Metab.
, vol.11
, pp. 268-272
-
-
Nedergaard, J.1
Cannon, B.2
-
27
-
-
10844236451
-
Nutrient availability regulates SIRT1 through a forkhead-dependent pathway
-
Nemoto S., Fergusson M.M., Finkel T. Nutrient availability regulates SIRT1 through a forkhead-dependent pathway. Science 2004, 306:2105-2108.
-
(2004)
Science
, vol.306
, pp. 2105-2108
-
-
Nemoto, S.1
Fergusson, M.M.2
Finkel, T.3
-
28
-
-
80053564714
-
CREB and ChREBP oppositely regulate SIRT1 expression in response to energy availability
-
Noriega L.G., Feige J.N., Canto C., Yamamoto H., Yu J., Herman M.A., Mataki C., Kahn B.B., Auwerx J. CREB and ChREBP oppositely regulate SIRT1 expression in response to energy availability. EMBO Rep. 2011, 12:1069-1076.
-
(2011)
EMBO Rep.
, vol.12
, pp. 1069-1076
-
-
Noriega, L.G.1
Feige, J.N.2
Canto, C.3
Yamamoto, H.4
Yu, J.5
Herman, M.A.6
Mataki, C.7
Kahn, B.B.8
Auwerx, J.9
-
29
-
-
44249088564
-
The orphan nuclear receptor, NOR-1, a target of beta-adrenergic signaling, regulates gene expression that controls oxidative metabolism in skeletal muscle
-
Pearen M.A., Myers S.A., Raichur S., Ryall J.G., Lynch G.S., Muscat G.E.O. The orphan nuclear receptor, NOR-1, a target of beta-adrenergic signaling, regulates gene expression that controls oxidative metabolism in skeletal muscle. Endocrinology 2008, 149:2853-2865.
-
(2008)
Endocrinology
, vol.149
, pp. 2853-2865
-
-
Pearen, M.A.1
Myers, S.A.2
Raichur, S.3
Ryall, J.G.4
Lynch, G.S.5
Muscat, G.E.O.6
-
30
-
-
3042681042
-
Sirt1 promotes fat mobilization in white adipocytes by repressing PPAR-gamma
-
Picard F., Kurtev M., Chung N., Topark-Ngarm A., Senawong T., Machado De Oliveira R., Leid M., McBurney M.W., Guarente L. Sirt1 promotes fat mobilization in white adipocytes by repressing PPAR-gamma. Nature 2004, 429:771-776.
-
(2004)
Nature
, vol.429
, pp. 771-776
-
-
Picard, F.1
Kurtev, M.2
Chung, N.3
Topark-Ngarm, A.4
Senawong, T.5
Machado De Oliveira, R.6
Leid, M.7
McBurney, M.W.8
Guarente, L.9
-
31
-
-
0032549811
-
A cold-inducible coactivator of nuclear receptors linked to adaptive thermogenesis
-
Puigserver P., Wu Z., Park C.W., Graves R., Wright M., Spiegelman B.M. A cold-inducible coactivator of nuclear receptors linked to adaptive thermogenesis. Cell 1998, 92:829-839.
-
(1998)
Cell
, vol.92
, pp. 829-839
-
-
Puigserver, P.1
Wu, Z.2
Park, C.W.3
Graves, R.4
Wright, M.5
Spiegelman, B.M.6
-
32
-
-
10944270187
-
The NAD biosynthesis pathway mediated by nicotinamide phosphoribosyltransferase regulates Sir2 activity in mammalian cells
-
Revollo J.R., Grimm A.A., Imai S. The NAD biosynthesis pathway mediated by nicotinamide phosphoribosyltransferase regulates Sir2 activity in mammalian cells. J. Biol. Chem. 2004, 279:50754-50763.
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 50754-50763
-
-
Revollo, J.R.1
Grimm, A.A.2
Imai, S.3
-
33
-
-
14544282413
-
Nutrient control of glucose homeostasis through a complex of PGC-1alpha and SIRT1
-
Rodgers J.T., Lerin C., Haas W., Gygi S.P., Spiegelman B.M., Puigserver P. Nutrient control of glucose homeostasis through a complex of PGC-1alpha and SIRT1. Nature 2005, 434:113-118.
-
(2005)
Nature
, vol.434
, pp. 113-118
-
-
Rodgers, J.T.1
Lerin, C.2
Haas, W.3
Gygi, S.P.4
Spiegelman, B.M.5
Puigserver, P.6
-
34
-
-
58149202185
-
Phosphorylation regulates SIRT1 function
-
Sasaki T., Maier B., Koclega K.D., Chruszcz M., Gluba W., Stukenberg P.T., Minor W., Scrable H. Phosphorylation regulates SIRT1 function. PLoS ONE 2008, 3:e4020. 10.1371/journal.pone.0004020.
-
(2008)
PLoS ONE
, vol.3
-
-
Sasaki, T.1
Maier, B.2
Koclega, K.D.3
Chruszcz, M.4
Gluba, W.5
Stukenberg, P.T.6
Minor, W.7
Scrable, H.8
-
35
-
-
38649123072
-
Conserved metabolic regulatory functions of sirtuins
-
Schwer B., Verdin E. Conserved metabolic regulatory functions of sirtuins. Cell Metab. 2008, 7:104-112.
-
(2008)
Cell Metab.
, vol.7
, pp. 104-112
-
-
Schwer, B.1
Verdin, E.2
-
36
-
-
69249206539
-
A continuous microplate assay for sirtuins and nicotinamide-producing enzymes
-
Smith B.C., Hallows W.C., Denu J.M. A continuous microplate assay for sirtuins and nicotinamide-producing enzymes. Anal. Biochem. 2009, 394:101-109.
-
(2009)
Anal. Biochem.
, vol.394
, pp. 101-109
-
-
Smith, B.C.1
Hallows, W.C.2
Denu, J.M.3
-
38
-
-
33646124709
-
Complementary action of the PGC-1 coactivators in mitochondrial biogenesis and brown fat differentiation
-
Uldry M., Yang W., St-Pierre J., Lin J., Seale P., Spiegelman B.M. Complementary action of the PGC-1 coactivators in mitochondrial biogenesis and brown fat differentiation. Cell Metab. 2006, 3:333-341.
-
(2006)
Cell Metab.
, vol.3
, pp. 333-341
-
-
Uldry, M.1
Yang, W.2
St-Pierre, J.3
Lin, J.4
Seale, P.5
Spiegelman, B.M.6
-
39
-
-
0035913903
-
HSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase
-
Vaziri H., Dessain S.K., Ng Eaton E., Imai S.I., Frye R.A., Pandita T.K., Guarente L., Weinberg R.A. hSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase. Cell 2001, 107:149-159.
-
(2001)
Cell
, vol.107
, pp. 149-159
-
-
Vaziri, H.1
Dessain, S.K.2
Ng Eaton, E.3
Imai, S.I.4
Frye, R.A.5
Pandita, T.K.6
Guarente, L.7
Weinberg, R.A.8
-
40
-
-
77952180745
-
SirT1 in muscle physiology and disease: lessons from mouse models
-
Vinciguerra M., Fulco M., Ladurner A., Sartorelli V., Rosenthal N. SirT1 in muscle physiology and disease: lessons from mouse models. Dis. Model Mech. 2010, 3:298-303.
-
(2010)
Dis. Model Mech.
, vol.3
, pp. 298-303
-
-
Vinciguerra, M.1
Fulco, M.2
Ladurner, A.3
Sartorelli, V.4
Rosenthal, N.5
-
41
-
-
80053134340
-
Regulation of Caenorhabditis elegans lifespan by sir-2.1 transgenes
-
Viswanathan M., Guarente L. Regulation of Caenorhabditis elegans lifespan by sir-2.1 transgenes. Nature 2011, 477:E1-E2.
-
(2011)
Nature
, vol.477
-
-
Viswanathan, M.1
Guarente, L.2
-
42
-
-
27644585190
-
A role for SIR-2.1 regulation of ER stress response genes in determining C. elegans life span
-
Viswanathan M., Kim S.K., Berdichevsky A., Guarente L. A role for SIR-2.1 regulation of ER stress response genes in determining C. elegans life span. Dev. Cell 2005, 9:605-615.
-
(2005)
Dev. Cell
, vol.9
, pp. 605-615
-
-
Viswanathan, M.1
Kim, S.K.2
Berdichevsky, A.3
Guarente, L.4
-
43
-
-
28544438180
-
PGC-1alpha coactivates PDK4 gene expression via the orphan nuclear receptor ERRalpha: a mechanism for transcriptional control of muscle glucose metabolism
-
Wende A.R., Huss J.M., Schaeffer P.J., Giguère V., Kelly D.P. PGC-1alpha coactivates PDK4 gene expression via the orphan nuclear receptor ERRalpha: a mechanism for transcriptional control of muscle glucose metabolism. Mol. Cell. Biol. 2005, 25:10684-10694.
-
(2005)
Mol. Cell. Biol.
, vol.25
, pp. 10684-10694
-
-
Wende, A.R.1
Huss, J.M.2
Schaeffer, P.J.3
Giguère, V.4
Kelly, D.P.5
-
44
-
-
34250897968
-
SIRT1 regulates the function of the Nijmegen breakage syndrome protein
-
Yuan Z., Zhang X., Sengupta N., Lane W.S., Seto E. SIRT1 regulates the function of the Nijmegen breakage syndrome protein. Mol. Cell 2007, 27:149-162.
-
(2007)
Mol. Cell
, vol.27
, pp. 149-162
-
-
Yuan, Z.1
Zhang, X.2
Sengupta, N.3
Lane, W.S.4
Seto, E.5
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