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51. DNA-binding mechanism and evolution of replication protein A.

52. "Helicase" Activity promoted through dynamic interactions between a ssDNA translocase and a diffusing SSB protein.

53. Variants in ATRIP are associated with breast cancer susceptibility in the Polish population and UK Biobank.

54. A DNA damage-induced phosphorylation circuit enhances Mec1 ATR Ddc2 ATRIP recruitment to Replication Protein A.

55. BRCA2 chaperones RAD51 to single molecules of RPA-coated ssDNA.

56. Loss of RPA1 Impairs Peripheral T Cell Homeostasis and Exacerbates Inflammatory Damage through Triggering T Cell Necroptosis.

57. SUMOylation of HNRNPA2B1 modulates RPA dynamics during unperturbed replication and genotoxic stress responses.

58. Interdomain dynamics in human Replication Protein A regulates kinetics and thermodynamics of its binding to ssDNA.

59. Competition for DNA binding between the genome protector replication protein A and the genome modifying APOBEC3 single-stranded DNA deaminases.

60. PRIMPOL competes with RAD51 to resolve G-quadruplex-induced replication stress via its interaction with RPA.

61. Replication Protein A Utilizes Differential Engagement of Its DNA-Binding Domains to Bind Biologically Relevant ssDNAs in Diverse Binding Modes.

62. Long non-coding RNA PCAT19 safeguards DNA in quiescent endothelial cells by preventing uncontrolled phosphorylation of RPA2.

63. A genome-wide screen identifies SCAI as a modulator of the UV-induced replicative stress response.

64. Bloom Syndrome Helicase Compresses Single-Stranded DNA into Phase-Separated Condensates.

65. Exporting Proteins Associated with Senescence Repair via Extracellular Vesicles May Be Associated with Early Pregnancy Loss.

66. Rtt105 regulates RPA function by configurationally stapling the flexible domains.

67. Two interaction surfaces between XPA and RPA organize the preincision complex in nucleotide excision repair.

68. Determinants of RPA megafoci localization to the nuclear periphery in response to replication stress.

69. The RPA inhibitor HAMNO sensitizes Fanconi anemia pathway-deficient cells.

70. WASp modulates RPA function on single-stranded DNA in response to replication stress and DNA damage.

71. Polymerase theta-helicase promotes end joining by stripping single-stranded DNA-binding proteins and bridging DNA ends.

72. Human HELB is a processive motor protein that catalyzes RPA clearance from single-stranded DNA.

73. Protein Phosphatase 2A-Dependent Mitotic hnRNPA1 Dephosphorylation and TERRA Formation Facilitate Telomere Capping.

74. SV40 T antigen helicase domain regions responsible for oligomerisation regulate Okazaki fragment synthesis initiation.

75. LAP2α preserves genome integrity through assisting RPA deposition on damaged chromatin.

76. Metabolic remodeling maintains a reducing environment for rapid activation of the yeast DNA replication checkpoint.

77. Probing Protein-DNA Conformational Dynamics in DNA Damage Recognition: Xeroderma Pigmentosum Group A Stabilizes the Damaged DNA-RPA14 Complex by Controlling Conformational Fluctuation Dynamics.

78. Deciphering the mechanism of processive ssDNA digestion by the Dna2-RPA ensemble.

79. Simultaneous Mechanical and Fluorescence Detection of Helicase-Catalyzed DNA Unwinding.

80. HELQ is a dual-function DSB repair enzyme modulated by RPA and RAD51.

81. RNA-DNA hybrids regulate meiotic recombination.

82. Replication protein A associates with nucleolar R loops and regulates rRNA transcription and nucleolar morphology.

83. DNA Damage-Induced Phosphorylation of Histone H2A at Serine 15 Is Linked to DNA End Resection.

84. DNA asymmetry promotes SUMO modification of the single-stranded DNA-binding protein RPA.

85. Distinct RPA domains promote recruitment and the helicase-nuclease activities of Dna2.

86. Crosstalk between CST and RPA regulates RAD51 activity during replication stress.

87. Replication protein A large subunit (RPA1a) limits chiasma formation during rice meiosis.

88. CDK2 phosphorylation of Werner protein (WRN) contributes to WRN's DNA double-strand break repair pathway choice.

89. Lamin A/C recruits ssDNA protective proteins RPA and RAD51 to stalled replication forks to maintain fork stability.

90. A basal-level activity of ATR links replication fork surveillance and stress response.

91. hSSB2 (NABP1) is required for the recruitment of RPA during the cellular response to DNA UV damage.

92. A novel lncRNA Discn fine-tunes replication protein A (RPA) availability to promote genomic stability.

93. ADAR-mediated RNA editing of DNA:RNA hybrids is required for DNA double strand break repair.

94. GGGCTA repeats can fold into hairpins poorly unfolded by replication protein A: a possible origin of the length-dependent instability of GGGCTA variant repeats in human telomeres.

95. Molecular and morphological findings in a sample of oral surgery patients: What can we learn for multivariate concepts for age estimation?

96. Rtt105 promotes high-fidelity DNA replication and repair by regulating the single-stranded DNA-binding factor RPA.

97. RPA shields inherited DNA lesions for post-mitotic DNA synthesis.

98. SETD2-mediated H3K14 trimethylation promotes ATR activation and stalled replication fork restart in response to DNA replication stress.

99. NSMF promotes the replication stress-induced DNA damage response for genome maintenance.

100. The meiosis-specific MEIOB-SPATA22 complex cooperates with RPA to form a compacted mixed MEIOB/SPATA22/RPA/ssDNA complex.

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