Search Results - "Welch, Amanda K"

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  1. 1

    Tissue-specific and time-dependent regulation of the endothelin axis by the circadian clock protein Per1 by Richards, Jacob, Welch, Amanda K., Barilovits, Sarah J., All, Sean, Cheng, Kit-Yan, Wingo, Charles S., Cain, Brian D., Gumz, Michelle L.

    Published in Life sciences (1973) (24-11-2014)
    “…The present study is designed to consider a role for the circadian clock protein Per1 in the regulation of the endothelin axis in mouse kidney, lung, liver and…”
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    Journal Article
  2. 2

    Endothelin-1 inhibits sodium reabsorption by ET(A) and ET(B) receptors in the mouse cortical collecting duct by Lynch, I Jeanette, Welch, Amanda K, Kohan, Donald E, Cain, Brian D, Wingo, Charles S

    “…The collecting duct (CD) is a major renal site for the hormonal regulation of Na homeostasis and is critical for systemic arterial blood pressure control. Our…”
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  3. 3

    Effect of mineralocorticoid treatment in mice with collecting duct-specific knockout of endothelin-1 by Lynch, I Jeanette, Welch, Amanda K, Gumz, Michelle L, Kohan, Donald E, Cain, Brian D, Wingo, Charles S

    “…Aldosterone increases blood pressure (BP) by stimulating sodium (Na) reabsorption within the distal nephron and collecting duct (CD). Aldosterone also…”
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  4. 4

    Aldosterone alters the chromatin structure of the murine endothelin-1 gene by Welch, Amanda K., Jeanette Lynch, I., Gumz, Michelle L., Cain, Brian D., Wingo, Charles S.

    Published in Life sciences (1973) (15-08-2016)
    “…Aldosterone increases sodium reabsorption in the renal collecting duct and systemic blood pressure. Paradoxically, aldosterone also induces transcription of…”
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  5. 5

    microRNA regulation of endothelin-1 mRNA in renal collecting duct cells by Jacobs, Mollie E., Jeffers, Lauren A., Welch, Amanda K., Wingo, Charles S., Cain, Brian D.

    Published in Life sciences (1973) (24-11-2014)
    “…Recently, microRNAs (miRNAs) have been implicated in control of Edn1 mRNA in several tissues. Here we examined the role of miRNA action on Edn1 mRNA expression…”
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    Journal Article
  6. 6

    Manipulations in the Peripheral Stalk of the Saccharomyces cerevisiae F1F0-ATP Synthase by Welch, Amanda K., Bostwick, Caleb J., Cain, Brian D.

    Published in The Journal of biological chemistry (25-03-2011)
    “…The Saccharomyces cerevisiae F1F0-ATP synthase peripheral stalk is composed of the OSCP, h, d, and b subunits. The b subunit has two membrane-spanning domains…”
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  7. 7

    Aldosterone: Renal Action and Physiological Effects by Johnston, Jermaine G, Welch, Amanda K, Cain, Brian D, Sayeski, Peter P, Gumz, Michelle L, Wingo, Charles S

    Published in Comprehensive Physiology (30-03-2023)
    “…Aldosterone exerts profound effects on renal and cardiovascular physiology. In the kidney, aldosterone acts to preserve electrolyte and acid-base balance in…”
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  8. 8

    The b arg36 contributes to efficient coupling in F1FO ATP synthase in Escherichia coli by Welch, Amanda K., Claggett, Shane B., Cain, Brian D.

    Published in Journal of bioenergetics and biomembranes (01-02-2008)
    “…In Escherichia coli, the F1FO ATP synthase b subunits house a conserved arginine in the tether domain at position 36 where the subunit emerges from the…”
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    Journal Article
  9. 9

    Circadian lnc to EDN1‐AS: A Novel, Long, Non‐Coding RNA Antisense to the EDN1 Gene by Solocinski, Kristen, Barilovits, Sarah J., Welch, Amanda K., Wingo, Charles S., Cain, Brian D., Gumz, Michelle L.

    Published in The FASEB journal (01-04-2016)
    “…Abstract only Endothelin‐1 (ET‐1) is a peptide signaling molecule that acts as a potent vasoconstrictor in the vasculature whereas in the kidney it has…”
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  10. 10

    The Effect of Aldosterone on the miRNA Content of a Murine Inner Medullary Collecting Duct Cell by Jacobs, Mollie Elizabeth, Jeffers, Lauren A., Welch, Amanda K., Wingo, Charles S., Cain, Brian D.

    Published in The FASEB journal (01-04-2013)
    “…Abstract only MicroRNAs (miRNAs) are a family of small noncoding RNAs that have been shown to regulate gene expression by inhibiting translation or targeting…”
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  14. 14

    The b sub(arg36) contributes to efficient coupling in F sub(1)F sub(O) ATP synthase in Escherichia coli by Welch, Amanda K, Claggett, Shane B, Cain, Brian D

    Published in Journal of bioenergetics and biomembranes (01-02-2008)
    “…In Escherichia coli, the F sub(1)F sub(O) ATP synthase b subunits house a conserved arginine in the tether domain at position 36 where the subunit emerges from…”
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    Journal Article
  15. 15

    The b (arg36) contributes to efficient coupling in F(1)F (O) ATP synthase in Escherichia coli by Welch, Amanda K, Claggett, Shane B, Cain, Brian D

    Published in Journal of bioenergetics and biomembranes (01-02-2008)
    “…In Escherichia coli, the F(1)F(O) ATP synthase b subunits house a conserved arginine in the tether domain at position 36 where the subunit emerges from the…”
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    Journal Article
  16. 16

    The barg36 contributes to efficient coupling in F1FO ATP synthase in Escherichia coli by Welch, Amanda K., Claggett, Shane B., Cain, Brian D.

    “…In Escherichia coli , the F 1 F O ATP synthase b subunits house a conserved arginine in the tether domain at position 36 where the subunit emerges from the…”
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    Journal Article