Thomas H. Haines
American author, biochemist and academic
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Biology
Thomas H. Haines's Degrees
- PhD Biochemistry University of California, Berkeley
- Bachelors Chemistry University of California, Berkeley
Why Is Thomas H. Haines Influential?
(Suggest an Edit or Addition)According to Wikipedia, Thomas Henry Haines is an American author, social activist, biochemist and academic. He was a professor of chemistry at City College of New York and of Biochemistry at the Sophie Davis School of Biomedical Education. Until recently he was a visiting professor in the Laboratory of Thomas Sakmar at Rockefeller University. He also recently served on the board of the Graham School, a social services and foster care agency in New York City. His scientific research has focused on the structure and function of the living cell membrane. He is the father of Avril Haines, the seventh Director of National Intelligence.
Thomas H. Haines's Published Works
Published Works
- Permeation of protons, potassium ions, and small polar molecules through phospholipid bilayers as a function of membrane thickness. (1996) (494)
- Do sterols reduce proton and sodium leaks through lipid bilayers? (2001) (373)
- Cardiolipin: a proton trap for oxidative phosphorylation (2002) (364)
- Anionic lipid headgroups as a proton-conducting pathway along the surface of membranes: a hypothesis. (1983) (190)
- pH-dissociation characteristics of cardiolipin and its 2′-deoxy analogue (1993) (130)
- Cardiolipin binds nonyl acridine orange by aggregating the dye at exposed hydrophobic domains on bilayer surfaces (2001) (125)
- Squalane is in the midplane of the lipid bilayer: implications for its function as a proton permeability barrier. (2002) (102)
- Water transport across biological membranes (1994) (99)
- Reactive oxygen species inactivation of surfactant involves structural and functional alterations to surfactant proteins SP-B and SP-C. (2006) (94)
- A new look at Cardiolipin. (2009) (82)
- Localization of coenzyme Q10 in the center of a deuterated lipid membrane by neutron diffraction. (2005) (70)
- Relative stereochemistry determination and synthesis of the major chlorosulfolipid from Ochromonas danica. (2009) (69)
- The sterols of Ochromonas danica and Ochromonas malhamensis. (1968) (69)
- The elasticity of synthetic phospholipid vesicles obtained by photon correlation spectroscopy. (1991) (64)
- Modification of tryptophan and methionine residues is implicated in the oxidative inactivation of surfactant protein B. (2007) (63)
- Ultrastructure of intracellular and extracellular vesicles, membranes, and myelin figures produced by Ochromonas danica. (1971) (49)
- Halogen- and sulfur-containing lipids of Ochromonas. (1973) (47)
- Elasticity of synthetic phospholipid vesicles and submitochondrial particles during osmotic swelling. (1986) (44)
- Occurrence of Arachidonic and Related Acids in the Protozoon Ochromonas danica (1962) (42)
- Microbial sulpholipids: (R)-13-choro-1-(R)-14-docosanediol disulphate and polychlorosulpholipids in Ochromonas danica. (1969) (39)
- Microbial sulfolipids. 3. The disulfate of (+)-1,14-docosanediol in Ochromonas danica. (1969) (39)
- The chemistry of the sulfolipids (1971) (38)
- Preparation and characterization of monodisperse unilamellar phospholipid vesicles with selected diameters of from 300 to 600 nm. (1985) (31)
- Uniform preparations of large unilamellar vesicles containing anionic lipids. (1986) (30)
- The flagellar membrane of Ochromonas danica. Lipid composition. (1976) (29)
- The elasticity of uniform, unilamellar vesicles of acidic phospholipids during osmotic swelling is dominated by the ionic strength of the media. (1987) (28)
- Sulfur Metabolism in Algae. I. Synthesis of Metabolically Inert Chloroform‐Soluble Sulfate Esters by Two Chrysomonads and Chlorella pyrenoidosa* (1962) (27)
- A microbial sulfolipid. II. Structural studies. (1967) (27)
- The flagellar membrane of Ochromonas danica. Isolation and electrophoretic analysis of the flagellar membrane, axonemes, and mastigonemes. (1976) (24)
- CHAPTER 4 – Sulfolipids and Halosulfolipids (1973) (24)
- Direct incorporation of fatty acids into the halosulfatides of Ochromonas danica. (1972) (22)
- Chlorination and sulfation reactions in the biosynthesis of chlorosulfolipids in Ochromonas danica, in vivo. (1973) (19)
- Catalytic Performance and Reproducibility of Ni/Al2O3 and Co/Al2O3 Mesoporous Aerogel Catalysts for Methane Decomposition (2019) (18)
- A microbial sulfolipid. I. Isolation and physiological studies. (1965) (17)
- A proposal on the function of unsaturated fatty acids and ionic lipids: the role of potential compaction in biological membranes. (1979) (15)
- A model for transition state dynamics in bilayers: implications for the role of lipids in biomembrane transport. (1982) (9)
- Receptor pattern formation as a signal for the capture of lipoproteins. (1996) (5)
- A Molecular Mechanism for the Transport of Water Across Phospholipid Bilayers (2017) (3)
- The Halogenated Sulphatides (1974) (2)
- Algal Sulfolipids and Chlorosulfolipids (1970) (1)
- The reduction of alkyl sulfate to alkane with lithium aluminum hydride (2006) (1)
- “Anionic H-Bonds” Structure Two Simple Bilayers, One Natural (2016) (0)
- Strong H-Bonds Form Bilayers: Ochromonas Danica is an Extreme Example (2015) (0)
- Proton-Pumping As The Activity That Drives Living Systems (2009) (0)
- Correction to “Catalytic Performance and Reproducibility of Ni/Al2O3 and Co/Al2O3 Mesoporous Aerogel Catalysts for Methane Decomposition” (2020) (0)
- How Lipids use Short, Strong H-Bonds for Membrane Stability, Making ATP & More (2012) (0)
- Cardiolipin's (CLs) pK2 allows electron but not proton pumping during mitochondrial ATP synthesis (2007) (0)
- Anionic H-Bonds in the Chlorosulfolipid Surface Bilayer of O. danica the Strength of a Bacterial Cell Wall (2017) (0)
- Why we make cholesterol; why cholesterol deficiency is lethal (2009) (0)
- Are Phospholipids Stabilized by Short, Strong H-Bonds? (2013) (0)
- Bioenergetics Explains the Structures of Membrane Lipids: Cholesterol, Plant Sterols, Unusual Fatty Acid Chains and Polyisoprenes (2011) (0)
- Cardiolipin's Structure, ATP Synthesis & Barth'S Syndrome (2009) (0)
- Do polyisoprenes save ATP energy (2011) (0)
- Roles for Protons in Living Membranes: Cardiolipin (2014) (0)
- Cholesterol Deficiency, Statins and Rhabdomyolysis (2010) (0)
- The pK's of Cardiolipins Are Altered by the Number and Position of their Specific Fatty Acid Esters (2008) (0)
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