Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and physiological salt concentration in the pH range 4.5-9.5. At a salt concentration 50 mM cations promote Hb aggregation according to the order Rb+ > K+ ∼ Na+ > Cs + > Li+. The cation series changes if concentration is increased, becoming K+ > Rb+ > Na+ > Li+ > Cs+ at 150 mM. We interpret the puzzling series by assuming that the kosmotropic Li+ will bind to kosmotropic carboxylates groups - according to the law of matching water affinities (LMWA) - whereas the chaotropic Cs+ will bind to uncharged protein patches due to its high polarizability. In fact, both mechanisms can be rationalized by invoking previously neglected ionic nonelectrostatic for...
Changes in background salt and buffer are known to influence the properties of proteins. The reasons...
Changes in background salt and buffer are known to influence the properties of proteins. The reasons...
Specific interactions that depend on the nature of electrolytes are observed when proteins and other...
Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and phy...
Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and phy...
Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and phy...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
We examine Hofmeister specific ion effects of electrolytes added to protein solution under condition...
We examine Hofmeister specific ion effects of electrolytes added to protein solution under condition...
Although alkali halide salts play key roles in all living systems, the physical models used to descr...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
Changes in background salt and buffer are known to influence the properties of proteins. The reasons...
Changes in background salt and buffer are known to influence the properties of proteins. The reasons...
Specific interactions that depend on the nature of electrolytes are observed when proteins and other...
Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and phy...
Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and phy...
Turbidity titrations are used to study the ion specific aggregation of hemoglobin (Hb) below and phy...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
A theoretical model of haemoglobin is presented to explain an anomalous cationic Hofmeister effect o...
We examine Hofmeister specific ion effects of electrolytes added to protein solution under condition...
We examine Hofmeister specific ion effects of electrolytes added to protein solution under condition...
Although alkali halide salts play key roles in all living systems, the physical models used to descr...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
Changes in background salt and buffer are known to influence the properties of proteins. The reasons...
Changes in background salt and buffer are known to influence the properties of proteins. The reasons...
Specific interactions that depend on the nature of electrolytes are observed when proteins and other...