Dmitrii I. Levitsky

Mutations in the relay loop region result in dominant-negative inhibition of myosin II function in Dictyostelium (2002)

Tsiavaliaris,Georgios, Fujita-Becker,Setsuko, Batra,Renu, Levitsky,Dmitrii I., Kull,F. Jon, Geeves,Michael A., ...

Dominant-negative inhibition is a powerful genetic tool for the characterization of gene function in vivo, based on the specific impairment of a gene product by the coexpression of a mutant version...

Mutations in the relay loop region result in dominant-negative inhibition of myosin II function in Dictyostelium (2002)

Tsiavaliaris, Georgios, Fujita-Becker, Setsuko, Batra, Renu, Levitsky, Dmitrii I., Kull, F. Jon, Geeves, Michael A., ...

Dominant-negative inhibition is a powerful genetic tool for the characterization of gene function in vivo, based on the specific impairment of a gene product by the coexpression of a mutant version...

Charge changes in loop 2 affect the thermal unfolding of the myosin motor domain bound to F-actin (2000)

Ponomarev,Michael A., Furch,Marcus, Levitsky,Dmitrii I., Manstein,Dietmar J.

The thermal unfolding of Dictyostelium discoideum myosin head fragments with alterations in the actin-binding surface loop 2 was studied by differential scanning calorimetry. Lengthening of loop 2...

Charge changes in loop 2 affect the thermal unfolding of the myosin motor domain bound to F-actin (2000)

Ponomarev, Michael A., Furch, Marcus, Levitsky, Dmitrii I., Manstein, Dietmar J.

The thermal unfolding of Dictyostelium discoideum myosin head fragments with alterations in the actin-binding surface loop 2 was studied by differential scanning calorimetry. Lengthening of loop 2...

Effects of Two Familial Hypertrophic Cardiomyopathy Mutations in α-Tropomyosin, Asp175Asn and Glu180Gly, on the Thermal Unfolding of Actin-Bound Tropomyosin

Kremneva, Elena, Boussouf, Sabrina, Nikolaeva, Olga, Maytum, Robin, Geeves, Michael A., Levitsky, Dmitrii I.

Differential scanning calorimetry was used to investigate the thermal unfolding of native α-tropomyosin (Tm), wild-type α-Tm expressed in Escherichia coli and the wild-type α-Tm carrying either of...

Mutations in the relay loop region result in dominant-negative inhibition of myosin II function in Dictyostelium

Tsiavaliaris, Georgios, Fujita-Becker, Setsuko, Batra, Renu, Levitsky, Dmitrii I., Kull, F. Jon, Geeves, Michael A., ...

Dominant-negative inhibition is a powerful genetic tool for the characterization of gene function in vivo, based on the specific impairment of a gene product by the coexpression of a mutant version...

Effects of Two Familial Hypertrophic Cardiomyopathy Mutations in α-Tropomyosin, Asp175Asn and Glu180Gly, on the Thermal Unfolding of Actin-Bound Tropomyosin

Kremneva, Elena, Boussouf, Sabrina, Nikolaeva, Olga, Maytum, Robin, Geeves, Michael A., Levitsky, Dmitrii I.

Differential scanning calorimetry was used to investigate the thermal unfolding of native α-tropomyosin (Tm), wild-type α-Tm expressed in Escherichia coli and the wild-type α-Tm carrying either of...

Mutations in the relay loop region result in dominant-negative inhibition of myosin II function in Dictyostelium

Tsiavaliaris, Georgios, Fujita-Becker, Setsuko, Batra, Renu, Levitsky, Dmitrii I., Kull, F. Jon, Geeves, Michael A., ...

Dominant-negative inhibition is a powerful genetic tool for the characterization of gene function in vivo, based on the specific impairment of a gene product by the coexpression of a mutant version...