Showing 1 - 20 results of 33,961 for search '(((( 50 ((a decrease) OR (_ decrease)) ) OR ( 7 wt decrease ))) OR ( 12 mm decrease ))*', query time: 0.94s Refine Results
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    Simultaneous ablation of Syt1 and Syt7 decreases the RRP size at inhibitory synapses: Rescue by WT but not mutant Syt1 or Syt7. by Taulant Bacaj (803415)

    Published 2015
    “…Recordings were performed in the presence of 1 μM tetrodotoxin, 20 μM CNQX, and 50 μM AP5 to isolate inhibitory currents. <b>B.</b> Simultaneous ablation of Syt1 and Syt7 decreases the RRP size of inhibitory synapses in a manner that is rescued by WT Syt7 (Syt1<sup>WT</sup>) but not Syt7 with mutations in the top C2 domain sequences containing the Syt7 Ca<sup>2+</sup> binding sites (Syt7<sup>C2A</sup>*<sup>B</sup>*). …”
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    DHT increases whereas orchidectomy decreases the weight and cross sectional area of hindlimb muscles. by Young-Eun Yoo (323357)

    Published 2013
    “…<b>A:</b> In WT mice, DHT increased the GN weight by 7% (212.4±8.8 mg), whereas orchidectomy decreased it by 14% (171.4±9.0 mg) compared with control WT mice (198.4±5.5 mg). …”
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    Increased osteoblastic activity and decreased osteoclastogenesis in TgLRAP cells <i>in vitro</i>. by Naoto Haruyama (487384)

    Published 2021
    “…Compared with the co-culture of WT BMCs and WT calvarial cells (WT / WT), the number of osteoclasts were significantly decreased at 50% in the co-cultures of TgLRAP BMCs and TgLRAP calvarial cells (TgLRAP / TgLRAP) (graph). …”
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    Simultaneous ablation of Syt1 and Syt7 decreases the RRP size at excitatory synapses. by Taulant Bacaj (803415)

    Published 2015
    “…<p><b>A & B.</b> Ablation of both Syt1 and Syt7 in hippocampal neurons decreases the RRP size at excitatory synapses in a manner that is rescued by WT Syt7 (Syt7<sup>WT</sup>) or Syt1 (Syt1<sup>WT</sup>) but not by mutant Syt7 (Syt7<sup>C2A</sup>*<sup>B</sup>*) or Syt1 (Syt1<sup>C2A</sup>*<sup>B</sup>*) with altered top-loop sequences containing the Ca<sup>2+</sup>-binding sequences (A, Syt7 rescue; B, Syt1 rescue). …”
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