IP Library Granted Patent US 7,256,321
Granted Patent B2
US 7,256,321 · App. 10/630,926 · Granted Aug 14, 2007

Intracellular modulators of apoptopic cell death pathways

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Quick Facts
Patent No.
US 7,256,321
App. No.
10/630,926
Granted
Aug 14, 2007
Kind
B2
Abstract

A DNA sequence encoding a glucocorticoid-induced leucine-zipper family related protein (GILR), isoforms, fragments or analogs thereof, said GILR, isoforms, fragments or analogs thereof capable of inhibiting apoptosis and stimulating lymphocyte activity, GILR proteins, isoforms, analogs, fragments and derivatives thereof encoded by the aforesaid DNA sequence, their preparation and uses.

Claims (11)

1. A transgenic mouse having integrated in its genome a nucleic acid construct, comprising a human CD2 promoter and a human CD2 locus control region operably linked to a mammalian Glucocorticoid Induced Leucine-Zipper (GILZ) cDNA sequence, wherein said transgenic mouse expresses GILZ in thymocytes at an elevated level compared to a non-transgenic mouse and wherein the elevated expression of GILZ results in a significant decrease in CD4 + CD8 + double positive cells and increase in CD4 − CD8 − double negative cells and CD8 + single positive cells when compared with a non-transgenic mouse.

2. A method for screening compounds which induce apoptosis in thymocytes, comprising:

administering a potential candidate compound to a transgenic mouse of claim 1 , and to a control non-transgenic mouse; and

determining whether said potential candidate compound induces apoptosis in thymocytes by comparing the effects of the administration of said potential candidate to said transgenic mouse and to said control non-transgenic mouse.

3. A method of producing a transgenic mouse whose genome comprises a nucleic acid construct, wherein said construct comprises a human CD2 promoter and a human CD2 locus control region operably linked to a mammalian Glucocorticoid Induced leucine-Zipper (GILZ) cDNA sequence, said method comprising:

transferring a nucleic acid construct comprising a human CD2 promoter and a human CD2 locus control region operably linked to a mammalian GILZ cDNA sequence to a fertilized mouse oocyte;

allowing the zygote resulting from the fertilized mouse oocyte to develop to term, thereby obtaining a transgenic mouse whose genome comprises the nucleic acid construct;

breeding said transgenic mouse with a non-transgenic mouse to generate offspring; and

selecting from the offspring a transgenic mouse whose genome comprises the nucleic acid construct, wherein said transgenic mouse expresses GILZ in thymocytes at an elevated level compared to a non-transgenic mouse and wherein the expression of GILZ results in a significant decrease in CD4 + CD8 + double positive cells and increase in CD4 − CD8 − double negative cells and CD8 + single positive cells when compared with a non-transgenic mouse.

4. The transgenic mouse of claim 1 , wherein said mammalian GILZ cDNA sequence is selected from the group consisting of mouse and human GILZ cDNA sequences.

5. The transgenic mouse according to claim 1 , wherein the elevated expression of GILZ results in an accelerated, increased caspase-3 activation.

Assignments (3)
CHANGE OF NAME Recorded Nov 25, 2009
From: LABORATOIRES SERONO SA
To: MERCK SERONO SA
Reel/Frame 023569/0120 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2007
From: APPLIED RESEARCH SYSTEMS ARS HOLDING N.V.
To: LABORATOIRES SERONO SA
Reel/Frame 019966/0026 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2004
From: RICCARDI, CAROL
To: APPLIED RESEARCH SYSTEMS ARS HOLDING N.V.
Reel/Frame 015520/0229 →