ATP binding equilibria of the Na(+),K(+)-ATPase.
نویسندگان
چکیده
Reported values of the dissociation constant, K(d), of ATP with the E1 conformation of the Na(+),K(+)-ATPase fall in two distinct ranges depending on how it is measured. Equilibrium binding studies yield values of 0.1-0.6 microM, whereas presteady-state kinetic studies yield values of 3-14 microM. It is unacceptable that K(d) varies with the experimental method of its determination. Using simulations of the expected equilibrium behavior for different binding models based on thermodynamic data obtained from isothermal titration calorimetry we show that this apparent discrepancy can be explained in part by the presence in presteady-state kinetic studies of excess Mg(2+) ions, which compete with the enzyme for the available ATP. Another important contributing factor is an inaccurate assumption in the majority of presteady-state kinetic studies of a rapid relaxation of the ATP binding reaction on the time scale of the subsequent phosphorylation. However, these two factors alone are insufficient to explain the previously observed presteady-state kinetic behavior. In addition one must assume that there are two E1-ATP binding equilibria. Because crystal structures of P-type ATPases indicate only a single bound ATP per alpha-subunit, the only explanation consistent with both crystal structural and kinetic data is that the enzyme exists as an (alphabeta)(2) diprotomer, with protein-protein interactions between adjacent alpha-subunits producing two ATP affinities. We propose that in equilibrium measurements the measured K(d) is due to binding of ATP to one alpha-subunit, whereas in presteady-state kinetic studies, the measured apparent K(d) is due to the binding of ATP to both alpha-subunits within the diprotomer.
منابع مشابه
بررسی غلظتهای مختلف یونهای سدیم و پتاسیم بر شدت فعالیت آنزیم Na/K-ATPase و شاخصهای کیفی لارو در مراحل مختلف لاروی میگوی بزرگ آب شیرین (Macrobrachium rosenbergii)
در مراحل اولیة لاروی میگوی بزرگ آب شیرین دستگاه تنظیم اسمزی هنوز شکل نگرفته است و تنظیم اسمزی و یونی بدن عمدتاً مربوط به فعالیتهای آنزیم Na/K-ATPase با مصرف ATP می باشد. به همین دلیل در چرخة زیست طبیعی، مراحل لاروی باید در آبهای لبشور نزدیک مناطق مصبی با شرایط مشابه اسمزی ایزوتونیک بدن لارو با حداقل مصرف ATP و حداکثر بازماندگی سپری شود. این تحقیق با هدف بررسی تأثیر غلظتهای مختلف سدیم و پتاسیم...
متن کاملO-10: A Marked Animal-Vegetal Polarity in The Localization of Na+,K+-ATPase Activity and Its Down-Regulation Following Progesterone-Induced Maturation
Background: Polarized cells are key to the process of differentiation. Xenopus oocyte is a polarized cell that has complete blue-print to differentiate 3 germ layers following fertilization, as key determinant molecules (Proteins and RNAs) are asymmetrically localized. The objective of this work was to localize Na+, K+-ATPase activity along animal-vegetal axis of polarized Xenopus oocyte and fo...
متن کاملComparative studies on the ATPase-binding sites in Ca2+-ATPase and (Na+ + K+)-ATPase by the use of ATP-analogues.
The effects of ATP-analogues on Ca2+-ATPase and (Na++ K+)-ATPase have been studied. The participation of sulfhydryl groups in the recognition of ATP by both transport ATPases is indicated by the fact, that the disulfide of thioinosine triphosphate inactivates both enzymes. The reactivity of rapidly and slowly reacting sulfhydryl groups in the ATP binding sites of both enzymes is altered by the ...
متن کاملThe amino acid sequence 442GDASE446 in Na/K-ATPase is an important motif in forming the high and low affinity ATP binding pockets.
A highly conserved amino acid sequence 442GDASE446 in the ATP binding pocket of rat Na/K-ATPase was mutated, and the resulting proteins, G442A, G442P, D443A, S445A, and E446A, were expressed in HeLa cells to investigate the effect of individual ligands on Na/K-ATPase. The apparent Km for the high and low affinity ATP effects was estimated by ATP concentration dependence for the formation of the...
متن کاملCritical role of γ-phosphate in structural transition of Na,K-ATPase upon ATP binding
Active transport of sodium and potassium ions by Na,K-ATPase is accompanied by the enzyme conformational transition between E1 and E2 states. ATP and ADP bind to Na,K-ATPase in the E1 conformation with similar affinity but the properties of enzyme in complexes with these nucleotides are different. We have studied thermodynamics of Na,K-ATPase binding with adenine nucleotides at different temper...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید
ثبت ناماگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید
ورودعنوان ژورنال:
- Biochemistry
دوره 47 49 شماره
صفحات -
تاریخ انتشار 2008