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Dive into the research topics where Joyce P. Whitehead is active.

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Featured researches published by Joyce P. Whitehead.


Journal of Inorganic Biochemistry | 1991

Metal substitutions at the diiron sites of hemerythrin and myohemerythrin.

Ji-Hu Zhang; Donald M. Kurtz; Yao-Min Xia; Peter G. Debrunner; Joyce P. Whitehead; Michael J. Maroney

A general method is described for substitution of Mn(II) and Co(II) into the diiron sites of hemerythrin and myohemerythrin. Characterizations of these metal-substituted proteins show that their structures closely resemble those of the native proteins. In particular, the four-helix bundle structure appears to be maintained. The apomyohemerythrin retains most of the native helix content but is considerably less stable to denaturation than are the metal-containing proteins. The relative affinities of M(II) for apohemerythrin--namely, Co greater than Fe greater than Mn--parallel the stabilities of the M2myohemerythrins to denaturation by guanidinium chloride. These results indicate that for myohemerythrin (i) the majority of the helical structure found in the native protein does not require incorporation of M(II) and (ii) stabilization of the native structure relative to the fully unfolded structure appears to be due predominantly to M(II)-protein interactions, at least for M = Fe and Co. Incorporation of M(II) also generates unfolding cooperativity in myohemerythrin. This cooperativity can be attributed to interhelical interactions, which are prevented in the apoprotein by solvation of the seven metal ligand residues. The results are consistent with a minimal model for folding/unfolding of myohemerythrin and hemerythrin subunits consisting of the sequential equilibria, N in equilibrium with I in equilibrium with D, between native, intermediate, and fully unfolded states, respectively. The properties of apomyohemerythrin make it a candidate for the intermediate state, I.


Journal of the American Chemical Society | 1993

THE HYDROGEN BINDING-SITE IN HYDROGENASE - 35-GHZ ENDOR AND XAS STUDIES OF THE NI-C ACTIVE FORM AND THE NI-L PHOTOPRODUCT

Joyce P. Whitehead; Ryszard J. Gurbiel; Csaba Bagyinka; Brian M. Hoffman; Michael J. Maroney


Journal of the American Chemical Society | 1993

An X-ray absorption spectroscopic study of nickel redox chemistry in hydrogenase

Csaba Bagyinka; Joyce P. Whitehead; Michael J. Maroney


Archives of Biochemistry and Biophysics | 1995

INTERACTION OF CU,ZN SUPEROXIDE-DISMUTASE WITH HYDROGEN-SULFIDE

Dennis G. Searcy; Joyce P. Whitehead; Michael J. Maroney


Inorganic Chemistry | 2001

Electronic and structural variation among copper(II) complexes with substituted phenanthrolines.

Patrick M. Bush; Joyce P. Whitehead; Courtney C. Pink; Erin C. Gramm; Judith L. Eglin; Stephen P. Watton; Laura E. Pence


Inorganic Chemistry | 1992

X-RAY ABSORPTION-SPECTRA OF NICKEL-COMPLEXES WITH N3S2 CHROMOPHORES AND SPECTROSCOPIC STUDIES ON H- AND CO BINDING AT THESE NICKEL CENTERS - RELEVANCE TO THE REACTIVITY OF THE NICKEL SITE(S) IN [FENI] HYDROGENASES

Narayan Baidya; Marilyn M. Olmstead; Joyce P. Whitehead; Csaba Bagyinka; Michael J. Maroney; Pradip K. Mascharak


Inorganic Chemistry | 1989

Structural model for the binding of iron by anthracycline drugs

Michael J. Maroney; Roberta O. Day; Thomas Psyris; Lisa M. Fleury; Joyce P. Whitehead


Journal of the American Chemical Society | 1991

X-ray absorption spectroscopic study of the reductive activation of Thiocapsa roseopersicina hydrogenase

Joyce P. Whitehead; Gerard J. Colpas; Csaba Bagyinka; Michael J. Maroney


Inorganic Chemistry | 1992

Metal substitutions at the Diiron site of hemerythrin. A dicobalt(II) derivative

Ji Hu Zhang; Donald M. Kurtz; Michael J. Maroney; Joyce P. Whitehead


MECHANISTIC BIOINORGANIC CHEMISTRY | 1995

Insights into the role of nickel in hydrogenase

Michael J. Maroney; Michelle A. Pressler; Shaukat A. Mirza; Joyce P. Whitehead; Rj Gurbiel; Bm Hoffman

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Michael J. Maroney

University of Massachusetts Amherst

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Donald M. Kurtz

University of Texas at San Antonio

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Dennis G. Searcy

University of Massachusetts Amherst

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Judith L. Eglin

Mississippi State University

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Laura E. Pence

Massachusetts Institute of Technology

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