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1
Insertional Inactivation of Branched-Chain α-Keto Acid Dehydrogenase in Staphylococcus aureus Leads to Decreased Branched-Chain Membrane Fatty Acid Content and Increased Susceptibility to Certain Stresses
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Insertional Inactivation of Branched-Chain α-Keto Acid Dehydrogenase in Staphylococcus aureus Leads to Decreased Branched-Chain Membrane Fatty Acid Content and Increased Susceptibility to Certain Stresses

Singh, Vineet K ; Hattangady, Dipti S ; Giotis, Efstathios S ; Singh, Atul K ; Chamberlain, Neal R ; Stuart, Melissa K ; Wilkinson, Brian J

Applied and Environmental Microbiology, 2008-10, Vol.74 (19), p.5882-5890 [Periódico revisado por pares]

Washington, DC: American Society for Microbiology

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2
An insight into the role of branched-chain α-keto acid dehydrogenase (BKD) complex in branched-chain fatty acid biosynthesis and virulence of Listeria monocytogenes
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An insight into the role of branched-chain α-keto acid dehydrogenase (BKD) complex in branched-chain fatty acid biosynthesis and virulence of Listeria monocytogenes

Kader Chowdhury, Q M Monzur ; Islam, Shamima ; Narayanan, Lakshmi ; Ogunleye, Seto C. ; Wang, Shangshang ; Thu, Dinh ; Freitag, Nancy E. ; Lawrence, Mark L. ; Abdelhamed, Hossam Federle, Michael J.

Journal of bacteriology, 2024-06, p.e0003324 [Periódico revisado por pares]

1752 N St., N.W., Washington, DC: American Society for Microbiology

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3
Insertional Inactivation of Branched-Chain [alpha]-Keto Acid Dehydrogenase in Staphylococcus aureus Leads to Decreased Branched-Chain Membrane Fatty Acid Content and Increased Susceptibility to Certain Stresses
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Artigo
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Insertional Inactivation of Branched-Chain [alpha]-Keto Acid Dehydrogenase in Staphylococcus aureus Leads to Decreased Branched-Chain Membrane Fatty Acid Content and Increased Susceptibility to Certain Stresses

Singh, Vineet K ; Hattangady, Dipti S ; Giotis, Efstathios S ; Singh, Atul K ; Chamberlain, Neal R ; Stuart, Melissa K ; Wilkinson, Brian J

Applied and Environmental Microbiology, 2008-10, Vol.74 (19), p.5882-5890 [Periódico revisado por pares]

Washington: American Society for Microbiology

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4
The Two Active Sites in Human Branched-chain α-Keto Acid Dehydrogenase Operate Independently without an Obligatory Alternating-site Mechanism
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The Two Active Sites in Human Branched-chain α-Keto Acid Dehydrogenase Operate Independently without an Obligatory Alternating-site Mechanism

Li, Jun ; Machius, Mischa ; Chuang, Jacinta L. ; Wynn, R. Max ; Chuang, David T.

The Journal of biological chemistry, 2007-04, Vol.282 (16), p.11904-11913 [Periódico revisado por pares]

United States: Elsevier Inc

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5
Tissue-specific and Nutrient Regulation of the Branched-chain α-Keto Acid Dehydrogenase Phosphatase, Protein Phosphatase 2Cm (PP2Cm)
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Tissue-specific and Nutrient Regulation of the Branched-chain α-Keto Acid Dehydrogenase Phosphatase, Protein Phosphatase 2Cm (PP2Cm)

Zhou, Meiyi ; Lu, Gang ; Gao, Chen ; Wang, Yibin ; Sun, Haipeng

The Journal of biological chemistry, 2012-07, Vol.287 (28), p.23397-23406 [Periódico revisado por pares]

United States: Elsevier Inc

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6
Precursor and temperature modulation of fatty acid composition and growth of Listeria monocytogenes cold-sensitive mutants with transposon-interrupted branched-chain α-keto acid dehydrogenase
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Precursor and temperature modulation of fatty acid composition and growth of Listeria monocytogenes cold-sensitive mutants with transposon-interrupted branched-chain α-keto acid dehydrogenase

KUN ZHU ; BAYLES, Darrell O ; ANMING XIONG ; JAYASWAL, R. K ; WILKINSON, Brian J

Microbiology (Society for General Microbiology), 2005-02, Vol.151 (Pt 2), p.615-623 [Periódico revisado por pares]

Reading: Society for General Microbiology

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7
191-OR: Hepatic Expression of the Branched-Chain Keto Acid Dehydrogenase Kinase Is Sufficient to Cause Glucose Intolerance in Lean Mice
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191-OR: Hepatic Expression of the Branched-Chain Keto Acid Dehydrogenase Kinase Is Sufficient to Cause Glucose Intolerance in Lean Mice

WALEJKO, JACQUELYN ; MCGARRAH, III, ROBERT W. ; WHITE, PHILLIP J.

Diabetes (New York, N.Y.), 2022-06, Vol.71 (Supplement_1) [Periódico revisado por pares]

New York: American Diabetes Association

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8
Cross-talk between thiamin diphosphate binding and phosphorylation loop conformation in human branched-chain alpha-keto acid decarboxylase/dehydrogenase
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Cross-talk between thiamin diphosphate binding and phosphorylation loop conformation in human branched-chain alpha-keto acid decarboxylase/dehydrogenase

Li, Jun ; Wynn, R Max ; Machius, Mischa ; Chuang, Jacinta L ; Karthikeyan, Subramanian ; Tomchick, Diana R ; Chuang, David T

The Journal of biological chemistry, 2004-07, Vol.279 (31), p.32968-32978 [Periódico revisado por pares]

United States

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9
Solution Structure and Dynamics of the Lipoic Acid-bearing Domain of Human Mitochondrial Branched-chain α-Keto Acid Dehydrogenase Complex
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Solution Structure and Dynamics of the Lipoic Acid-bearing Domain of Human Mitochondrial Branched-chain α-Keto Acid Dehydrogenase Complex

Chang, Chi-Fon ; Chou, Hui-Ting ; Chuang, Jacinta L. ; Chuang, David T. ; Huang, Tai-huang

The Journal of biological chemistry, 2002-05, Vol.277 (18), p.15865-15873 [Periódico revisado por pares]

United States: Elsevier Inc

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10
The C-terminal Hinge Region of Lipoic Acid-bearing Domain of E2b Is Essential for Domain Interaction with Branched-chain α-Keto Acid Dehydrogenase Kinase
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The C-terminal Hinge Region of Lipoic Acid-bearing Domain of E2b Is Essential for Domain Interaction with Branched-chain α-Keto Acid Dehydrogenase Kinase

Chuang, Jacinta L. ; Wynn, R. Max ; Chuang, David T.

The Journal of biological chemistry, 2002-10, Vol.277 (40), p.36905-36908 [Periódico revisado por pares]

United States: Elsevier Inc

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