[Ca2+]i signaling vs. eNOS expression as determinants of NO output in uterine artery endothelium: relative roles in pregnancy adaptation and reversal by VEGF165.
نویسندگان
چکیده
Pregnancy is a time of greatly increased uterine blood flow to meet the needs of the growing fetus. Increased uterine blood flow is also observed in the follicular phase of the ovarian cycle. Simultaneous fura-2 and 4,5-diaminofluoresceine (DAF-2) imaging reveals that cells of the uterine artery endothelium (UA Endo) from follicular phase ewes produce marginally more nitric oxide (NO) in response to ATP than those from luteal phase. However, this is paralleled by changes in NO in response to ionomycin, suggesting this is solely due to higher levels of endothelial nitric oxide synthase (eNOS) protein in the follicular phase. In contrast, UA Endo from pregnant ewes (P-UA Endo) produces substantially more NO (4.62-fold initial maximum rate, 2.56-fold overall NO production) in response to ATP, beyond that attributed to eNOS levels alone (2.07-fold initial maximum rate, 1.93-fold overall with ionomycin). The ATP-stimulated intracellular free calcium concentration ([Ca(2+)](i)) response in individual cells of P-UA Endo comprises an initial peak followed by transient [Ca(2+)](i) bursts that are limited in the luteal phase, not altered in the follicular phase, but are sustained in pregnancy and observed in more cells. Thus pregnancy adaptation of UA Endo NO output occurs beyond the level of eNOS expression and likely through associated [Ca(2+)](i) cell signaling changes. Preeclampsia is a condition of a lack of UA Endo adaptation and poor NO production/vasodilation and is associated with elevated placental VEGF(165). While treatment of luteal NP-UA Endo and P-UA Endo with VEGF(165) acutely stimulates a very modest [Ca(2+)](i) and NO response, subsequent stimulation of the same vessel with ATP results in a blunted [Ca(2+)](i) and an associated NO response, with P-UA Endo reverting to the response of luteal NP-UA Endo. This demonstrates the importance of adaptation of cell signaling over eNOS expression in pregnancy adaptation of uterine endothelial function and further implicates VEGF in the pathophysiology of preeclampsia.
منابع مشابه
Simultaneous imaging of [Ca2+]i and intracellular NO production in freshly isolated uterine artery endothelial cells: effects of ovarian cycle and pregnancy.
Pregnancy and the follicular phase of the ovarian cycle show elevation of uterine blood flow and associated increases in uterine artery endothelium (UAE) endothelial nitric oxide (NO) synthase (eNOS) expression. Nonetheless, a role for increased NO production during pregnancy and the follicular phase has only been inferred by indirect measures. The recent development of a uterine artery endothe...
متن کاملLocal effects of pregnancy on connexin proteins that mediate Ca2+-associated uterine endothelial NO synthesis.
UNLABELLED Uterine artery adaptations during gestation facilitate increases in uterine blood flow and fetal growth. HYPOTHESIS local expression and distribution of uterine artery connexins play roles in mediating in vivo gestational eNOS activation and NO production. We established an ovine model restricting pregnancy to a single uterine horn and measured uterine blood flow, uterine artery sh...
متن کاملCALL FOR PAPERS Fetal Physiological Programming Simultaneous imaging of [Ca ]i and intracellular NO production in freshly isolated uterine artery endothelial cells: effects of ovarian cycle and pregnancy
Yi, Fu-Xian, Ronald R. Magness, and Ian M. Bird. Simultaneous imaging of [Ca ]i and intracellular NO production in freshly isolated uterine artery endothelial cells: effects of ovarian cycle and pregnancy. Am J Physiol Regul Integr Comp Physiol 288: R140– R148, 2005. First published August 5, 2004; doi:10.1152/ajpregu. 00302.2004.—Pregnancy and the follicular phase of the ovarian cycle show ele...
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Pregnancy-Specific Changes in VEGF Ca2+ Signaling in Uterine Artery Endothelial Cells Derek S Boeldt* , Mary A Gummer, Fu-Xian Yi, Ian M Bird Pregnancy is a time of greatly increased blood flow in the uterus to meet the needs of the growing fetus. This is achieved through the mechanisms of vasodilation and angiogenesis. In diseased states, such as preeclampsia, proper flow to the fetus is not a...
متن کاملNitric oxide and the bioactivities
Nitric oxide (NO), previously known as Endothelium-Derived Relaxing Factor (EDRF) is involved in a wide range of physiological and pathophysiological mechanisms. It is synthesized endogenously by the enzymes Nitric Oxide Synthase (NOS) in specialized tissues from its precursor L-arginine, yielding L-citrulline as a byproduct. It is released by a family of isoenzymes, viz., the endothelial (eNOS...
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ورودعنوان ژورنال:
- American journal of physiology. Heart and circulatory physiology
دوره 300 4 شماره
صفحات -
تاریخ انتشار 2011