23rd Feb - Components that recognise essential sequences at splice sites Flashcards

1
Q

Describe the U1 snRNP

A

Has 4 stem loops

2 stem loops are bound by 70K and U1-A proteins

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2
Q

How was it tested that the U1 snRNA would base pair with the 5’ss?

A

Injected U1 Ab into Xenopus oocytes –> U1 is required for splicing

In nuclear extracts:

  • -DNA oligo complementary to the 5’ end of U1 snRNA
  • -2’-O-methyl-oligo complementary to the 5’ end of U1 snRNA
  • -> The 5’ end of U1snRNA is required for splicing

In cells: Transfection of u1SNRNA genes expressing altered 5’end sequences can affect the choice between alternative 5’ss
–> It recognises potential sites and its base pairing affinity can affect splice site choice

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3
Q

How does U1 interact with the 5’ss?

A

Helix A of U1-C interacts with the minor groove of 5’ss-U1 5’ end duplex

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4
Q

What facilitates 5’ss-U1 base pairing?

A

70K and C proteins, but they don’t recognise specific bases

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5
Q

What is the function of U2AF 35 and U2AF65?

A

They recognise the 3’ss

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6
Q

What are UHMs?

A

RRM derived domains that interact with proteins and specifically with ULM motifs

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7
Q

Describe U2AF35

A

It binds AG at the 3’ss
The alpha helix of the UHM binds the ULM of U2AF65
The beta sheets side is blocked by 2 closely packed CCH Zn fingers preventing DNA binding

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8
Q

Describe U2AF65

A

Recognises the polypyrimidine tract

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9
Q

What recognises the branch site?

A

mBBP/SF1

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10
Q

How does SF1 detect the branch site?

A

Through a number of specific H bonds

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