| Rank |
Title |
Journal |
Year |
PubWeight™‹?› |
|
1
|
Stereochemistry of cooperative effects in haemoglobin.
|
Nature
|
1970
|
13.71
|
|
2
|
Three-dimensional Fourier synthesis of horse oxyhaemoglobin at 2.8 A resolution: the atomic model.
|
Nature
|
1968
|
5.44
|
|
3
|
Electrostatic effects in proteins.
|
Science
|
1978
|
5.02
|
|
4
|
The crystal structure of human deoxyhaemoglobin at 1.74 A resolution.
|
J Mol Biol
|
1984
|
4.49
|
|
5
|
Molecular pathology of human haemoglobin.
|
Nature
|
1968
|
4.31
|
|
6
|
Regulation of oxygen affinity of hemoglobin: influence of structure of the globin on the heme iron.
|
Annu Rev Biochem
|
1979
|
3.47
|
|
7
|
The rhombotin family of cysteine-rich LIM-domain oncogenes: distinct members are involved in T-cell translocations to human chromosomes 11p15 and 11p13.
|
Proc Natl Acad Sci U S A
|
1991
|
3.12
|
|
8
|
Aromatic rings act as hydrogen bond acceptors.
|
J Mol Biol
|
1988
|
2.77
|
|
9
|
An x-ray study of azide methaemoglobin.
|
J Mol Biol
|
1966
|
2.58
|
|
10
|
Structure and function of haemoglobin. 3. A three-dimensional fourier synthesis of human deoxyhaemoglobin at 5.5 Angstrom resolution.
|
J Mol Biol
|
1967
|
2.54
|
|
11
|
Stereochemical basis of heat stability in bacterial ferredoxins and in haemoglobin A2.
|
Nature
|
1975
|
2.53
|
|
12
|
Stereochemistry of iron in deoxyhaemoglobin.
|
Nature
|
1982
|
2.36
|
|
13
|
Structure of sickled erythrocytes and of sickle-cell hemoglobin fibers.
|
Proc Natl Acad Sci U S A
|
1973
|
2.32
|
|
14
|
Binding of carbon monoxide to isolated hemoglobin chains.
|
Biochemistry
|
1978
|
2.31
|
|
15
|
Three dimensional fourier synthesis of horse deoxyhaemoglobin at 2.8 Angstrom units resolution.
|
Nature
|
1970
|
2.28
|
|
16
|
Stereochemistry of cooperative effects in hemoglobin.
|
Cold Spring Harb Symp Quant Biol
|
1972
|
2.16
|
|
17
|
The structure of horse methaemoglobin at 2-0 A resolution.
|
J Mol Biol
|
1977
|
2.15
|
|
18
|
Heme-based sensors, exemplified by the kinase FixL, are a new class of heme protein with distinctive ligand binding and autoxidation.
|
Biochemistry
|
1994
|
2.01
|
|
19
|
Structure and mechanism of haemoglobin.
|
Br Med Bull
|
1976
|
1.98
|
|
20
|
Influence of globin structure on the state of the heme. I. Human deoxyhemoglobin.
|
Biochemistry
|
1974
|
1.96
|
|
21
|
The Croonian Lecture, 1968. The haemoglobin molecule.
|
Proc R Soc Lond B Biol Sci
|
1969
|
1.79
|
|
22
|
Oxygen binding properties of human mutant hemoglobins synthesized in Escherichia coli.
|
Proc Natl Acad Sci U S A
|
1985
|
1.62
|
|
23
|
Influence of globin structures on the state of the heme. Ferrous low spin derivatives.
|
Biochemistry
|
1976
|
1.51
|
|
24
|
Identification of residues responsible for the alkaline Bohr effect in haemoglobin.
|
Nature
|
1969
|
1.50
|
|
25
|
Structure of horse carbonmonoxyhaemoglobin.
|
J Mol Biol
|
1976
|
1.42
|
|
26
|
When to speak.
|
Nature
|
1994
|
1.40
|
|
27
|
Moleuclar pathology of human haemoglobin: stereochemical interpretation of abnormal oxygen affinities.
|
Nature
|
1971
|
1.40
|
|
28
|
Influence of globin structure on the state of the heme. II. Allosteric transitions in methemoglobin.
|
Biochemistry
|
1974
|
1.40
|
|
29
|
Structure of inositol hexaphosphate--human deoxyhaemoglobin complex.
|
Nature
|
1974
|
1.39
|
|
30
|
Myoglobin and haemoglobin: role of distal residues in reactions with haem ligands.
|
Trends Biochem Sci
|
1989
|
1.39
|
|
31
|
Three-dimensional Fourier synthesis of horse oxyhaemoglobin at 2.8 A resolution: (1) x-ray analysis.
|
Nature
|
1968
|
1.37
|
|
32
|
Structure of human foetal deoxyhaemoglobin.
|
J Mol Biol
|
1977
|
1.35
|
|
33
|
Equilibrium between six- and five-coordinated hemes in nitrosylhemoglobin: interpretation of electron spin resonance spectra.
|
Biochemistry
|
1976
|
1.31
|
|
34
|
The pKa values of two histidine residues in human haemoglobin, the Bohr effect, and the dipole moments of alpha-helices.
|
J Mol Biol
|
1985
|
1.25
|
|
35
|
Structure of hemoglobins Zürich [His E7(63)beta replaced by Arg] and Sydney [Val E11(67)beta replaced by Ala] and role of the distal residues in ligand binding.
|
Proc Natl Acad Sci U S A
|
1978
|
1.25
|
|
36
|
Stereochemistry of cooperative effects in fish an amphibian haemoglobins.
|
Nature
|
1982
|
1.25
|
|
37
|
Influence of globin structure on the state of the heme. 3. Changes in heme spectra accompanying allosteric transitions in methemoglobin and their implications for heme-heme interaction.
|
Biochemistry
|
1974
|
1.21
|
|
38
|
Kinase activity of oxygen sensor FixL depends on the spin state of its heme iron.
|
Biochemistry
|
1995
|
1.19
|
|
39
|
New effectors of human hemoglobin: structure and function.
|
Biochemistry
|
1990
|
1.19
|
|
40
|
Identification of residues contributing to the Bohr effect of human haemoglobin.
|
J Mol Biol
|
1980
|
1.17
|
|
41
|
Regulation of oxygen affinity of mammalian haemoglobins.
|
J Mol Biol
|
1980
|
1.14
|
|
42
|
Structure and subunit interaction of haemoglobin M Milwaukee.
|
Nat New Biol
|
1972
|
1.13
|
|
43
|
Formation of two hydrogen bonds from the globin to the heme-linked oxygen molecule in Ascaris hemoglobin.
|
Proc Natl Acad Sci U S A
|
1994
|
1.13
|
|
44
|
Hemoglobin structure and respiratory transport.
|
Sci Am
|
1978
|
1.13
|
|
45
|
Bezafibrate lowers oxygen affinity of haemoglobin.
|
Lancet
|
1983
|
1.12
|
|
46
|
Influence of quaternary structure of the globin on thermal spin equilibria in different methemoglobin derivatives.
|
Biochemistry
|
1978
|
1.10
|
|
47
|
Structure and function of haemoglobin. IV. A three-dimensional Fourier synthesis of horse deoxyhaemoglobin at 5.5 A resolution.
|
J Mol Biol
|
1968
|
1.08
|
|
48
|
Role of C-terminal histidine in the alkaline Bohr effect of human hemoglobin.
|
Biochemistry
|
1980
|
1.08
|
|
49
|
Noncooperativity of the dimer in the reaction of hemoglobin with oxygen (human-dissociation-equilibrium-sulfhydryl-absorption-x-ray analysis).
|
Proc Natl Acad Sci U S A
|
1972
|
1.06
|
|
50
|
Interactions between the quaternary structure of the globin and the spin state of the heme in ferric mixed spin derivatives of hemoglobin.
|
Biochemistry
|
1978
|
1.03
|
|
51
|
Structure of human fluoromethaemoglobin with inositol hexaphosphate.
|
J Mol Biol
|
1977
|
1.01
|
|
52
|
Crystal structure of a dimeric chymotrypsin inhibitor 2 mutant containing an inserted glutamine repeat.
|
Proc Natl Acad Sci U S A
|
1999
|
1.00
|
|
53
|
Structure and function of hemoglobin.
|
Harvey Lect
|
1969
|
0.99
|
|
54
|
Structure of hemoglobin M Boston, a variant with a five-coordinated ferric heme.
|
Proc Natl Acad Sci U S A
|
1973
|
0.97
|
|
55
|
Three dimensional structure of haemoglobin Rainier.
|
Nat New Biol
|
1971
|
0.96
|
|
56
|
Physiological and x-ray studies of potential antisickling agents.
|
Proc Natl Acad Sci U S A
|
1983
|
0.95
|
|
57
|
Allosteric mechanism of haemoglobin: rupture of salt-bridges raises the oxygen affinity of the T-structure.
|
J Mol Biol
|
1998
|
0.93
|
|
58
|
Haemoglobin of the antarctic fish Pagothenia bernacchii. Amino acid sequence, oxygen equilibria and crystal structure of its carbonmonoxy derivative.
|
J Mol Biol
|
1992
|
0.93
|
|
59
|
Stereochemical mechanism of oxygen transport by haemoglobin.
|
Proc R Soc Lond B Biol Sci
|
1980
|
0.93
|
|
60
|
Haemoglobin Hiroshima and the mechanism of the alkaline Bohr effect.
|
Nat New Biol
|
1971
|
0.92
|
|
61
|
Haemoglobin Radcliffe (alpha2beta299(Gi)Ala): a high oxygen-affinity variant causing familial polycythaemia.
|
Br J Haematol
|
1977
|
0.92
|
|
62
|
Identity of structure of horse deoxy- and oxyhaemoglobin after reaction with bis(N-maleidomethyl)ether.
|
J Mol Biol
|
1967
|
0.92
|
|
63
|
A mutagenic study of the allosteric linkage of His(HC3)146 beta in haemoglobin.
|
J Mol Biol
|
1993
|
0.91
|
|
64
|
Allosteric regulation of crocodilian haemoglobin.
|
Nature
|
1981
|
0.91
|
|
65
|
The first Sir Hans Krebs lecture. X-ray analysis, structure and function of enzymes.
|
Eur J Biochem
|
1969
|
0.91
|
|
66
|
Haemoglobin: structure, function and synthesis.
|
Br Med Bull
|
1976
|
0.90
|
|
67
|
LR16, a compound with potent effects on the oxygen affinity of hemoglobin, on blood cholesterol, and on low density lipoprotein.
|
Proc Natl Acad Sci U S A
|
1988
|
0.89
|
|
68
|
Structure of deoxyhemoglobin Cowtown [His HC3(146) beta----Leu]: origin of the alkaline Bohr effect and electrostatic interactions in hemoglobin.
|
Proc Natl Acad Sci U S A
|
1984
|
0.89
|
|
69
|
Mechanism of denaturation of haemoglobin by alkali.
|
Nature
|
1974
|
0.88
|
|
70
|
Structure and function of haemoglobin Philly (Tyr C1 (35) beta replaced by Phe).
|
J Mol Biol
|
1976
|
0.87
|
|
71
|
Structure of deoxyhaemoglobin Zürich (HisE7(63 beta) - greater than Arg).
|
J Mol Biol
|
1981
|
0.85
|
|
72
|
Some molecular controls in biology.
|
Endeavour
|
1967
|
0.85
|
|
73
|
Amyloid fibrils. Mutations make enzyme polymerize.
|
Nature
|
1997
|
0.85
|
|
74
|
Species adaptation in a protein molecule.
|
Adv Protein Chem
|
1984
|
0.85
|
|
75
|
Structure of human deoxy cobalt haemoglobin.
|
J Mol Biol
|
1982
|
0.85
|
|
76
|
Iron distances in hemoglobin: comparison of x-ray crystallographic and extended x-ray absorption fine structure studies.
|
Proc Natl Acad Sci U S A
|
1987
|
0.85
|
|
77
|
Influence of anions and protons on the Adair coefficients of haemoglobins A and Cowtown (His HC3(146) beta----Leu).
|
J Mol Biol
|
1987
|
0.84
|
|
78
|
Hemoglobin Warsaw (Phe beta 42(CD1)----Val), an unstable variant with decreased oxygen affinity. Characterization of its synthesis, functional properties, and structure.
|
J Biol Chem
|
1990
|
0.81
|
|
79
|
Allosteric enzymes. Control by phosphorylation.
|
Nature
|
1988
|
0.80
|
|
80
|
Blood. Taking the pressure off.
|
Nature
|
1996
|
0.80
|
|
81
|
Structure and function of haemoglobin Barcelona Asp FG1(94) beta leads to His.
|
J Mol Biol
|
1983
|
0.80
|
|
82
|
Is there a Root effect in Xenopus hemoglobin?
|
FEBS Lett
|
1987
|
0.79
|
|
83
|
Stereochemical effects of amino acid substitution in abnormal human haemoglobin.
|
Biochem J
|
1970
|
0.79
|
|
84
|
Stereochemistry of ATP and GTP bound to fish haemoglobins. A transferred nuclear overhauser enhancement, 31P-nuclear magnetic resonance, oxygen equilibrium and molecular modelling study.
|
J Mol Biol
|
1984
|
0.79
|
|
85
|
Mechanism of charge compensation and impairment of co-operative functions in haemoglobin Tacoma (Arg B12(30)beta leads to Ser).
|
J Mol Biol
|
1977
|
0.78
|
|
86
|
Therapeutic agents for sickle cell disease.
|
Nature
|
1978
|
0.78
|
|
87
|
Structure-function relationships in the low-affinity mutant haemoglobin Aalborg (Gly74 (E18)beta----Arg).
|
J Mol Biol
|
1992
|
0.78
|
|
88
|
Comparison of histidine proton magnetic resonances of human carbonmonoxyhaemoglobin in different buffers.
|
J Mol Biol
|
1985
|
0.78
|
|
89
|
Stereochemical interpretation of high oxygen affinity of haemoglobin Little Rock ( 2 2 143His leads to Gln).
|
Nat New Biol
|
1973
|
0.78
|
|
90
|
Mechanism of deamidation of haemoglobin providence Asn.
|
J Mol Biol
|
1980
|
0.77
|
|
91
|
X-ray crystallographic and functional studies of human haemoglobin mutants produced in Escherichia coli.
|
Acta Haematol
|
1987
|
0.76
|
|
92
|
Stereochemical mechanism of cooperative effects in haemoglobin.
|
Biochimie
|
1972
|
0.76
|
|
93
|
Nature of the iron-oxygen bond and control of oxygen affinity of the haem by the structure of the globin in haemoglobin.
|
Adv Exp Med Biol
|
1982
|
0.75
|
|
94
|
State of methaemoglobin in normal adults and in patients with hereditary methaemoglobinaemia.
|
Biochem J
|
1981
|
0.75
|
|
95
|
Protein function below 220 K.
|
Nature
|
1992
|
0.75
|
|
96
|
Physics and the riddle of life.
|
Nature
|
1987
|
0.75
|
|
97
|
Molecular pathology of human haemoglobin.
|
Biochimie
|
1972
|
0.75
|
|
98
|
Fundamental research in molecular biology: relevance to medicine.
|
Nature
|
1976
|
0.75
|
|
99
|
Lattice constants of lamprey haemoglobin.
|
J Mol Biol
|
1966
|
0.75
|
|
100
|
Stereochemistry of iron in deoxyhaemoglobin.
|
Ultramicroscopy
|
1982
|
0.75
|
|
101
|
Site of the amino-acid substitution in haemoglobin Seattle ( 2 A 2 70 Asp ).
|
Nat New Biol
|
1973
|
0.75
|
|
102
|
Haemoglobin. Molecular inventiveness.
|
Nature
|
1990
|
0.75
|
|
103
|
Suggested interpretation of diminished Bohr effect in haemoglobin Hiroshima.
|
Nature
|
1969
|
0.75
|
|
104
|
Structure of haemoglobin M Milwaukee, a mutant form exhibiting interaction between ferrous and ferric subunits.
|
Adv Exp Med Biol
|
1972
|
0.75
|
|
105
|
Recognition of ligands by haem proteins.
|
Mol Biol Biochem Biophys
|
1980
|
0.75
|
|
106
|
Structure of sickle-cell haemoglobin.
|
Trans R Soc Trop Med Hyg
|
1974
|
0.75
|
|
107
|
Haemoglobin as a model of an allosteric protein.
|
Symp Soc Exp Biol
|
1973
|
0.75
|
|
108
|
Structure and function of hemoglobin variants at an internal hydrophobic site: consequences of mutations at the beta 27 (B9) position.
|
Biochemistry
|
1990
|
0.75
|
|
109
|
Sir Lawrence Bragg.
|
Nature
|
1971
|
0.75
|
|
110
|
Structure and function of human hemoglobin covalently labeled with periodate-oxidized adenosine triphosphate.
|
J Biol Chem
|
1989
|
0.75
|
|
111
|
The role of bound water in haemoglobin and myoblobin.
|
Biosystems
|
1977
|
0.75
|
|
112
|
[Not Available].
|
Kos
|
1996
|
0.75
|
|
113
|
DNA helix.
|
Science
|
1969
|
0.75
|
|
114
|
Structure of haemoglobins Zürich (his e7(63)beta leads to arg) and Sydney (val e11(67)beta leads to ala) and the role of the distal residues in ligand binding.
|
Prog Clin Biol Res
|
1978
|
0.75
|
|
115
|
Fundamental research in molecular biology: its relevance to medicine.
|
Ciba Found Symp
|
1976
|
0.75
|
|
116
|
Molecular adaptation in haemoglobin and thermophile bacteria.
|
Differentiation
|
1979
|
0.75
|
|
117
|
The Medical Research Council, laboratory of molecular biology.
|
Mol Med
|
1996
|
0.75
|