Subtle alterations of the native zinc finger structures have dramatic effects on the nucleic acid chaperone activity of human immunodeficiency virus type 1 nucleocapsid protein.
نویسندگان
چکیده
The nucleocapsid protein (NC) of human immunodeficiency virus type 1 has two zinc fingers, each containing the invariant CCHC zinc-binding motif; however, the surrounding amino acid context is not identical in the two fingers. Recently, we demonstrated that zinc coordination is required when NC unfolds complex secondary structures in RNA and DNA minus- and plus-strand transfer intermediates; this property of NC reflects its nucleic acid chaperone activity. Here we have analyzed the chaperone activities of mutants having substitutions of alternative zinc-coordinating residues, i.e., CCHH or CCCC, for the wild-type CCHC motif. We also investigated the activities of mutants that retain the CCHC motifs but have mutations that exchange or duplicate the zinc fingers (mutants 1-1, 2-1, and 2-2); these changes affect amino acid context. Our results indicate that in general, for optimal activity in an assay that measures stimulation of minus-strand transfer and inhibition of nonspecific self-priming, the CCHC motif in the zinc fingers cannot be replaced by CCHH or CCCC and the amino acid context of the fingers must be conserved. Context changes also reduce the ability of NC to facilitate primer removal in plus-strand transfer. In addition, we found that the first finger is a more crucial determinant of nucleic acid chaperone activity than the second finger. Interestingly, comparison of the in vitro results with earlier in vivo replication data raises the possibility that NC may adopt multiple conformations that are responsible for different NC functions during virus replication.
منابع مشابه
A single zinc finger optimizes the DNA interactions of the nucleocapsid protein of the yeast retrotransposon Ty3
Reverse transcription in retroviruses and retrotransposons requires nucleic acid chaperones, which drive the rearrangement of nucleic acid conformation. The nucleic acid chaperone properties of the human immunodeficiency virus type-1 (HIV-1) nucleocapsid (NC) protein have been extensively studied, and nucleic acid aggregation, duplex destabilization and rapid binding kinetics have been identifi...
متن کاملSpecific zinc-finger architecture required for HIV-1 nucleocapsid protein's nucleic acid chaperone function.
The nucleocapsid protein (NC) of HIV type 1 (HIV-1) is a nucleic acid chaperone that facilitates the rearrangement of nucleic acid secondary structure during reverse transcription. HIV-1 NC contains two CCHC-type zinc binding domains. Here, we use optical tweezers to stretch single lambda-DNA molecules through the helix-to-coil transition in the presence of wild-type and several mutant forms of...
متن کاملAbstract Title of dissertation: HUMAN IMMUNODEFICIENCY VIRUS NUCLEOCAPSID PROTEIN: ANALYSIS OF THE MECHANISM OF STRAND EXCHANGE AND THE ROLE OF THE ZINC FINGERS IN NUCLEIC ACID CHAPERONE ACTIVITY
Title of dissertation: HUMAN IMMUNODEFICIENCY VIRUS NUCLEOCAPSID PROTEIN: ANALYSIS OF THE MECHANISM OF STRAND EXCHANGE AND THE ROLE OF THE ZINC FINGERS IN NUCLEIC ACID CHAPERONE ACTIVITY. Megan Joy Heath, Doctor of Philosophy, 2004 Thesis directed by: Professor Jeffrey J. DeStefano Department of Cell Biology and Molecular Genetics The human immunodeficiency virus genome is coated by the nucleoc...
متن کاملDifferential contribution of basic residues to HIV-1 nucleocapsid protein’s nucleic acid chaperone function and retroviral replication
The human immunodeficiency virus type 1 (HIV-1) nucleocapsid (NC) protein contains 15 basic residues located throughout its 55-amino acid sequence, as well as one aromatic residue in each of its two CCHC-type zinc finger motifs. NC facilitates nucleic acid (NA) rearrangements via its chaperone activity, but the structural basis for this activity and its consequences in vivo are not completely u...
متن کاملAbstract Title of Dissertation: MUTATIONAL ANALYSIS OF HUMAN IMMUNODEFICIENCY VIRUS TYPE – 1 NUCLEOCAPSID PROTEIN TO EVALUATE ITS NUCLEIC ACID CHAPERONE ACTIVITY
Title of Dissertation: MUTATIONAL ANALYSIS OF HUMAN IMMUNODEFICIENCY VIRUS TYPE – 1 NUCLEOCAPSID PROTEIN TO EVALUATE ITS NUCLEIC ACID CHAPERONE ACTIVITY Nirupama Narayanan, Doctor of Philosophy, 2006 Thesis directed by: Professor Jeffrey J. DeStefano Department of Cell Biology and Molecular Genetics The highly basic 55 amino acid nucleocapsid protein (NC) that coats the HIV-1 genome has two zin...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Journal of virology
دوره 76 9 شماره
صفحات -
تاریخ انتشار 2002