S3) Intracellular Calcium Regulation Flashcards

1
Q

Ca2+ concentration varies greatly inside and outside the cell.

What is the value for extracellular [Ca2+]?

A

Extracellular [Ca2+] = 1 x10-3 M

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2
Q

Ca2+ concentration varies greatly inside and outside the cell.

What is the value for intracellular [Ca2+]?

A

Cytoplasmic [Ca2+] = 1 x10-7 M

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3
Q

Ca2+ concentration varies greatly inside and outside the cell.

What is the value for ER/SR [Ca2+]?

A

ER/Sarcoplasmic reticulum [Ca2+] = 2 x10-4 M

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4
Q

Identify 2 processes which mediate increases in cytoplasmic Ca2+ concentration

A
  • Movement of Ca2+ across the plasma membrane
  • Release of Ca2+ from the ER/SR
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5
Q

Identify 3 factors which oppose increases in cytoplasmic Ca2+ concentration

A
  • Relative impermeability of the plasma membrane to Ca2+
  • Pumps and transporters that move Ca2+ out of the cytoplasm
  • Ca2+-binding proteins
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6
Q

Identify the 3 mechanisms that maintain low [Ca2+]i and reverse increases in [Ca2+]i

A
  • PMCA – pumps calcium out across plasma membrane (ATP)
  • SERCA – pumps calcium into SR/ER (ATP)
  • NCX (Na+, Ca2+ exchanger) - sodium enters cell and calcium exits
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7
Q

Identify the 4 mechanisms which increase intracellular [Ca2+]

A

- Calcium movement across plasma membrane:

I. Voltage operated Ca2+ channels (VOCC)

II. Ligand-gated ion channels (LGIC)

  • Calcium movement out of the ER/SR:

I. Ryanodine receptors (Ca2+-induced Ca2+ release)

II. IP3 receptors

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8
Q

In terms of signalling pathways in action, outline the inotropy of the heart

A

Both blood-borne adrenaline and sympathetically released noradrenaline can interact with ventricular β2-adrenoceptors to increase the force of contraction (+ve inotropy)

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9
Q

In terms of the Gq signalling pathway in action, outline smooth muscle contraction

A
  • Sympathetically released noradrenaline interacts with vascular smooth muscle α1-adrenoceptors to cause vasoconstriction

- Parasympathetically released acetylcholine interacts with bronchiolar smooth muscle M3-muscarinic receptors to cause bronchoconstriction

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